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Propolis (bee glue): a promising natural feed additive for poultry and rabbits – a review


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Abbas R.J. (2014). Effect of dietary supplementation with differing levels of propolis on productivity and blood parameters in broiler chicks. Basrah J. Vet. Res., 13: 164–179. Search in Google Scholar

Abd Alsahib Z.A. (2011). The effects of honey on phagocytic activity against Staphylococcus aureus. J. Karbala Univ., 9: 335–339. Search in Google Scholar

Abd El-Ati M.N., Hussein N.A., Mohamed M.E. (2023). Propolis effect on growing rabbits as natural health product. Assiut J. Agric. Sci., 54: 156–169. Search in Google Scholar

Abd El-Aziz A., Abo Ghanima M., Mota-Rojas D., Sherasiya A., Ciani F., El-Sabrout K. (2023). Bee products for poultry and rabbits: Current challenges and perspectives. Animals, 13: 3517. Search in Google Scholar

Abd El-Ghany W.A. (2020 a). Paraprobiotics and postbiotics: Contemporary and promising natural antibiotics alternatives and their applications in the poultry field. Open Vet. J., 10: 323–330. Search in Google Scholar

Abd El-Ghany W.A. (2020 b). Microalgae in poultry field: A comprehensive perspectives. Adv. Anim. Vet. Sci., 8: 888–897. Search in Google Scholar

Abd El-Ghany WA (2021). Uses of immunoglobulins as an antimicrobials alternative in Veterinary Medicine. World Vet. J., 11: 16–22. Search in Google Scholar

Abd El-Ghany W.A., Eraky R. (2019). Influence of dietary Moringa oleifera on broilers performance, intestinal microbial population and humoral immune competence. J. Hellenic Vet. Med. Soc., 70: 1805–1810. Search in Google Scholar

Abd El-Ghany W.A., Abdel-Latif M.A., Hosny F., Alatfeehy N.M., Noreldin A.E., Quesnell R.R., Chapman R., Sakai L., Elbestawy A.R. (2022 a). Comparative efficacy of postbiotic, probiotic, and antibiotic against necrotic enteritis in broiler chickens. Poultry Sci., 101: 101988. Search in Google Scholar

Abd El-Ghany W.A., Fouad H., Quesnell R., Sakai L. (2022 b). The effect of a postbiotic produced by stabilized non-viable Lactobacilli on the health, growth performance, immunity, and gut status of colisepticaemic broiler chickens. Trop. Anim. Health Prod., 54: 286. Search in Google Scholar

Abd El Latif M. (2023). Evaluation of feed additives supplementation on growth measurements, digestibility, blood metabolites and economical efficiency of growing rabbits. Egypt. Poult. Sci. J., 43: 197–216. Search in Google Scholar

Abdel-Maksoud E.M., Daha A.A.E.F., Taha N.M., Lebda M.A., Sadek K.M., Alshahrani M.Y., Ahmed A.E., Shukry M., Fadl S.E., Elfeky A. (2023). M. Effects of ginger extract and/or propolis extract on immune system parameters of vaccinated broilers. Poultry Sci., 102: 102903. Search in Google Scholar

Abdel-Mohsein H.S., Mahmoud M.A.M., Mahmoud U.T. (2014). Influence of propolis on intestinal microflora of Ross broilers exposed to hot environment. Adv. Anim. Vet. Sci., 2: 204–211. Search in Google Scholar

Abdel-Rahman M.A., Mosaad G.M.M. (2013). Effect of propolis as additive on some behavioral patterns, performance and blood parameters in Muscovy broiler ducks. J. Adv. Vet. Res., 3: 64–68. Search in Google Scholar

Açikgöz Z., Yücel B., Altan Ö. (2005). The effects of propolis supplementation on broiler performance and feed digestibility. Arch. Geflugelkd., 69: 117–122. Search in Google Scholar

Aghel S., Pouramir M., Moghadamnia A.A., Moslemi D., Molania T., Ghassemi L., Motallebnejad M. (2014). Effect of Iranian propolis on salivary total antioxidant capacity in gamma-irradiated rats. J. Dent. Res. Dent. Clin. Dent. Prospects, 8: 235. Search in Google Scholar

Ahangari Z., Naseri M., Vatandoost F. (2018). Propolis: Chemical composition and its applications in endodontics. Iran. Endod. J., 13: 285–292. Search in Google Scholar

Ahn M.R., Kumazawa S., Hamasaka T., Bang K.S., Nakayama T. (2004). Antioxidant activity and constituents of propolis collected in various areas of Korea. J. Agric. Food Chem., 52: 7286–7292. Search in Google Scholar

Al-Ani I., Zimmermann S., Reichling J., Wink M. (2018). Antimicrobial activities of European propolis collected from various geographic origins alone and in combination with antibiotics. Medicines, 5: 2. Search in Google Scholar

Al-Homidan I., Fathi M., Abdelsalam M., Ebeid T., Abou-Emera O., Mostafa M., El-Razik M.A., Shehab-El-Deen M. (2022). Effect of propolis supplementation and breed on growth performance, immunity, blood parameters and cecal microbiota in growing rabbits. Anim. Biosci., 35: 1606–1615. Search in Google Scholar

Al-Kahtani S.N., Alaqil A.A., Abbas A.O. (2022). Modulation of antioxidant defense, immune response, and growth performance by inclusion of propolis and bee pollen into broiler diets. Animals, 12: 1658. Search in Google Scholar

Alkhaldy A., Edwards C.A., Combet E. (2019): The urinary phenolic acid profile varies between younger and older adults after a polyphenol-rich meal despite limited differences in in vitro colonic catabolism. Eur. J. Nutr., 58: 1095–1111. Search in Google Scholar

Alvareda E., Miranda P., Espinosa V., Pardo H., Aguilera S., Paulino Zunini M. (2015). Antiinflamatory activity of phenolic compounds extracted from Uruguayan propolis and grape. J. Biomol. Struct. Dyn., 33: 129. Search in Google Scholar

Ansorge S., Reinhold D., Lendeckel U. (2003). Propolis and some of its constituents down-regulate DNA synthesis and inflammatory cytokine production but induce TGF-beta1 production of human immune cells. Z. Naturforsch. C., 58: 580–589. Search in Google Scholar

Araujo M.A.R., Libério S.A., Guerra R.N.M., Ribeiro M.N.S., Nascimento F.R.F. (2012). Mechanisms of action underlying the anti-inflammatory and immunomodulatory effects of propolis: A brief review. Rev. Bras. Farmacogn., 22: 208–219. Search in Google Scholar

Arslan A.S., Seven P.T., Yilmaz S., Seven I. (2014). The effects of propolis on performance, carcass and antioxidant status characteristics in quails reared under different stocking density. European Poult. Sci., 78. Search in Google Scholar

Astani A., Zimmermann S., Hassan E., Reichling J., Sensch K.H., Schnitzler P. (2013). Antimicrobial activity of propolis special extract GH 2002 against multidrug-resistant clinical isolates. Pharmazie, 68: 695–701. Search in Google Scholar

Attia Y.A., El-Hanoun A.M., Bovera F., Monastra G., El-Tahawy W.S., Habiba H.I. (2014 a). Growth performance, carcass quality, biochemical and haematological traits and immune response of growing rabbits as affected by different growth promoters. J. Anim. Physiol. Anim. Nutr. (Berl.), 98: 128–39. Search in Google Scholar

Attia Y.A., Abd Al-Hamid A.E., Ibrahim M.S., Al-Harthi M.A., Bovera F., El-Naggar A. (2014 b). Productive performance, biochemical and hematological traits of broiler chickens supplemented with propolis, bee pollen, and mannan oligosaccharides continuously or intermittently. Livest. Sci., 164: 87–95. Search in Google Scholar

Attia Y.A., Bovera F., EL-Tahawy, W.S., EL-Hanoun A.M., AL-Harthi M.A., Habiba H.I. (2015). Productive and reproductive performance of rabbits does as affected by bee pollen and/or propolis, inulin and/or mannan-oligosaccharides. World Rabbit Sci., 23: 273–282. Search in Google Scholar

Attia Y.A., Bovera F., Abd El-Hamid A.E., Calabrò S., Mandour M.A., Al-Harthi M.A., Hassan S.S. (2019 a). Evaluation of the carryover effect of antibiotic, bee pollen and propolis on growth performance, carcass traits and splenic and hepatic histology of growing rabbits. J. Anim. Physiol. Anim. Nutr., 103: 947–958. Search in Google Scholar

Attia Y.A., Bovera F., Abd E-lhamid A.E., Nagadi S.A., Mandour M.A., Hassan S.S. (2019 b). Bee pollen and propolis as dietary supplements for rabbit: Effect on reproductive performance of does and on immunological response of does and their offspring. J. Anim. Physiol. Anim. Nutr., 103: 959–968. Search in Google Scholar

Aygun A., Sert D., Copur G. (2012). Effects of propolis on eggshell microbial activity, hatchability and chick performance in Japanese quail (Coturnix coturnix japonica) eggs. Poultry Sci., 91: 1018–1025. Search in Google Scholar

Babińska I., Kleczek K., Szarek J., Makowski W. (2012). Modulating effect of propolis and bee pollen on chicken breeding parameters, pathomorphology of liver and kidneys in the course of natural infection with Salmonella enteritidis. Bull. Vet. Inst. Pulawy., 56: 3–8. Search in Google Scholar

Babińska I., Kleczek K., Makowski W., Szarek J. (2013). Effect of feed supplementation with propolis on liver and kidney morphology in broiler chickens. Pak. Vet. J., 33: 1–4. Search in Google Scholar

Bankova V. (2005). Recent trends and important developments in propolis research. Evid. Based Complement. Alternat. Med., 2: 29–32. Search in Google Scholar

Bankova V., Christov R., Kujumgiev A., Marcucci M.C., Popov S. (1995). Chemical composition and antibacterial activity of Brazilian propolis. Z. Naturforsch. C., 50: 167–172. Search in Google Scholar

Banskota A.H., Tezuka Y., Adnyana I.K., Midorikawa K., Matsushige K., Message D., Huertas A.A., Kadota S. (2000). Cytotoxic, hepato-protective and free radical scavenging effects of propolis from Brazil, Peru, the Netherlands and China. J. Ethnopharmacol., 72: 239–246. Search in Google Scholar

Banskota A.H., Tezuka Y., Kadota S. (2001 a). Recent progress in pharmacological research of propolis. Phytother. Res., 15: 561–571. Search in Google Scholar

Banskota A.H., Tezuka Y., Adnyana I.K., Ishii E., Midorikawa K., Matsushige K., Kadota S. (2001 b). Hepatoprotective and anti-Helicobacter pylori activities of constituents from Brazilian propolis. Phytomedicine, 8: 16–23. Search in Google Scholar

Basnet P., Matsuno T., Neidlein R. (1997). Potent free radical scavenging activity of propolis isolated from Brazilian propolis. Z. Naturforsch., 52: 828–833. Search in Google Scholar

Benzie I.F.F., Strain J.J. (1999). Ferric reducing/antioxidant power assay: Direct measure of total antioxidant activity of biological fluids and modified version for simultaneous measurement of total antioxidant power and ascorbic acid concentration. Methods Enzymol., 299: 15–27. Search in Google Scholar

Bhargava P., Mahanta D., Kaul A., Ishida Y., Terao K., Wadhwa R., Kaul S.C. (2021). Experimental evidence for therapeutic potentials of propolis. Nutrients, 13: 2528. Search in Google Scholar

Biavatti M.W., Bellaver M.H., Volpato L., Costa C., Bellaver C. (2003). Preliminary studies of alternative feed additives for broilers: Alternanthera brasiliana extract, propolis extract and linseed oil. Rev. Bras. Cienc. Avic., 5: 147–151. Search in Google Scholar

Bongiovanni G.A., Soria E.A., Eynard A.R. (2007). Effects of the plant flavonoids silymarin and quercetin on arsenite-induced oxidative stress in CHO-K1 cells. Food Chem. Toxicol., 45: 971–976. Search in Google Scholar

Bonomi A., Morletto F., Binachi M. (1976). Propolis in feeds for laying hens. Avicoltura, 45: 43–54. Search in Google Scholar

Bonomi A., Bonomi B.M., Sussi C. (2002 a). The use of propolis in rabbits feeding. Riv. Sci. Aliment., 31: 29–41. Search in Google Scholar

Bonomi A., Bonomi B.M., Quarantelli A., Sabbioni A., Superchi P. (2002 b). The use of propolis in duck feeding. Riv. Sci. Aliment., 31: 15–28. Search in Google Scholar

Borrelli F., Maffia P., Pinto L.A., Ianaro Russo A., Capasso F., Lalenti A. (2002). Phytochemical compounds involved in the anti-inflammatory effect of propolis extract. Fitoterapia, 73: 353–363. Search in Google Scholar

Boutabet K., Kebsa W., Alyane M., Lahouel M. (2011). Polyphenolic fraction of Algerian propolis protects rat kidney against acute oxidative stress induced by doxorubicin. Indian J. Nephrol., 21: 101–106. Search in Google Scholar

Braakhuis A. (2019). Evidence on the health benefits of supplemental propolis. Nutrients, 11: 2705. Search in Google Scholar

Canogullari S., Baylan M., Sahinler N., Sahin A. (2009). Effects of propolis and pollen supplementations on growth performance and body components of Japanese quails (Coturnixco turnix japonica). Arch. Geflugelkd., 73: 173–178. Search in Google Scholar

Castaldo S., Capasso F. (2002). Propolis, an old remedy used in modern medicine. Fitoterapia, 73: 1–6. Search in Google Scholar

Copur G., Camci O., Sahinler N., Gul A. (2008). The effect of propolis eggshell coatings on interior egg quality. Arch. Geflugelkd., 72: 35–40. Search in Google Scholar

Çetin E., Silici S., Çetin N., Güçlü B.K. (2010). Effects of diets containing different concentrations of propolis on hematological and immunological variables in laying hens. Poultry Sci., 89: 1703–1708. Search in Google Scholar

Chegini S., Kiani A., Rokni H. (2018). Alleviation of thermal and overcrowding stress in finishing broilers by dietary propolis supplementation. Ital. J. Anim. Sci., 17: 377–385. Search in Google Scholar

Chepulis L.M. (2007). The effects of honey compared with sucrose and a sugar-free diet on neutrophil phagocytosis and lymphocyte numbers after long-term feeding in rats. J. Complement. Integr. Med., 4: 8. Search in Google Scholar

Coloni R.D., Lui J.F., dos Santos E., Cavalcante-Neto A., Zanato J.A., da Silva L.G., Malheiros A.B. (2007). Effect of propolis alcohol extract on the weight gain, carcass traits and cecal pH of growing rabbits. Rev. Biotemas, 20: 59–64. Search in Google Scholar

Corazzin M., Del Bianco S., Bovolenta S., Piasentier E. (2019). Carcass characteristics and meat quality of sheep and goat. In: More than beef, pork and chicken – the production, processing, and quality traits of other sources of meat for human diet, Lorenzo J.M., Munekata P.E.S., Barba F., Toldrá F. (eds). Springer International Publishing: Cham, Switzerland, pp. 119–165. Search in Google Scholar

Cornara L., Biagi M., Xiao J., Burlando B. (2017). Therapeutic properties of bioactive compounds from different honeybee products. Front. Pharmacol., 8: 412. Search in Google Scholar

Cuong N.V., Kiet B.T., Hien V.B., Truong B.D., Phu D.H., Thwaites G., Choisy M., Carrique-Mas J. (2021). Antimicrobial use through consumption of medicated feeds in chicken flocks in the Mekong Delta of Vietnam: A three-year study before a ban on antimicrobial growth promoters. PLoS One, 16: e0250082. Search in Google Scholar

Cushnie T.P.T., Hamilton V.E.S., Lamb A.J. (2003). Assessment of the antibacterial activity of selected flavonoids and consideration of discrepancies between previous reports. Microbial Res., 158: 281–289. Search in Google Scholar

Cushnie T.P.T., Lamb A.J. (2005). Antimicrobial activity of flavonoids. Int. J. Antimicrob. Agents., 26: 343–356. Search in Google Scholar

Daneshmand A., Sadeghi G.H., Karimi A. (2012).The effects of a combination of garlic, oyster mushroom and propolis extract in comparison to antibiotic on growth performance, some blood parameters and nutrients digestibility of male broilers. Rev. Bras. Cienc. Avic., 14: 141–147. Search in Google Scholar

Daneshmand A., Sadeghi G.H., Karimi A., Vaziry A., Ibrahim S.A. (2015). Evaluating complementary effects of ethanol extract of propolis with the probiotic on growth performance, immune response and serum metabolites in male broiler chickens. Livest. Sci., 78: 195–201. Search in Google Scholar

da Silva L.M., de Souza P., Jaouni S.K.A., Harakeh S., Golbabapour S., de Andrade S.F. (2018). Propolis and its potential to treat gastrointestinal disorders. Evid. Based Complement Alternat. Med., 2018: 2035820. Search in Google Scholar

De Castro S.L. (2001). Propolis: Biological and pharmacological activities. Therapeutic uses of this bee-product. Annu. Rev. Biomed. Sci., 3: 49–83. Search in Google Scholar

De Moura S.A., Ferreira M.A., Andrade S.P., Reis M.L., Noviello Mde L., Cara D.C. (2011). Brazilian green propolis inhibits inflammatory angiogenesis in a murine sponge model. Evid. Based Complement. Alternat. Med., 2011: 182703. Search in Google Scholar

Denli M., Cankaya S., Silici S., Okan F., Uluocak A.N. (2005). Effect of dietary addition of Turkish propolis on the growth performance, carcass characteristics and serum variables of quail (Coturnix coturnix japonica). Asian-Austral. J. Anim. Sci., 18: 848–854. Search in Google Scholar

De Sousa J.P., Bueno P.C., Gregorio L.E., da Silva Filho A.A., Furtado N.A., de Sousa M.L., Bastos J.K. (2007). A reliable quantitative method for the analysis of phenolic compounds in Brazilian propolis by reverse phase high performance liquid chromatography. J. Sep. Sci., 30: 2656–2665. Search in Google Scholar

Dias D.M.B., de Oliveira M.C., da Silva D.M., Bonifácio N.P., da C. Claro D., Marchesin W.A. (2013). Bee pollen supplementation in diets for rabbit does and growing rabbits. Acta Scientiarum Anim. Sci. Maringá, 35: 425–430. Search in Google Scholar

Di Carlo G., Mascolo N., Izzo A.A., Capasso F. (1999). Flavonoids: Old and new aspects of a class of natural therapeutic drugs. Life Sci., 65: 337–353. Search in Google Scholar

Dimov V., Ivanovska N., Manolova N., Bankova V., Nikolov N., Popov S. (1991). Immunomodulatory action of propolis. Influence on anti-infectious protection and macrophage function. Apidologie, 22: 155–162. Search in Google Scholar

Dosoky W.M., Zeweil H., Farag S.A. (2016). Influence of dietary supplementation of propolis on productive performance, immunological and physiological parameters of growing Japanese quail. Egypt. J. Anim. Prod., 53: 117–127. Search in Google Scholar

Dosoky W.M., Abd El-Rahman M.H.A., AlRumaydh Z.I.K. (2022). Effect of propolis as natural supplement on productive and physiological performance of broilers. J. Adv. Agric. Res., 27: 674–685. Search in Google Scholar

Drago L., Mombelli B., Vecchi E.D., Tocalli M.F., Gismondo M.R. (2000). In vitro antimicrobial of propolis dry extract. Antimicrob. Chemother., 12: 390–395. Search in Google Scholar

Duarte C.R.A., Eyng C., Murakami A.E., Santos T.C. (2014). Intestinal morphology and activity of digestive enzymes in broilers fed crude propolis. Can. J. Anim. Sci., 94: 105–114. Search in Google Scholar

Eclache D., Besson M. (2004). Effect of the substitution of feed growth promoter by plant extracts on the performances of broilers. J. Anim. Sci., 81: 48–48. Search in Google Scholar

Echeverría J., Opazo J., Mendoza L., Urzúa A., Wilkens M. (2017). Structure-activity and lipophilicity relationships of selected antibacterial natural flavones and flavanones of Chilean flora. Molecules, 22: 608. Search in Google Scholar

El Hady F.K.A., Hegazi A.G. (2002). Egyptian propolis: 2. Chemical composition, antiviral and antimicrobial activities of East Nile Delta propolis. Z. Naturforsch. C., 57: 386–394. Search in Google Scholar

El-Hanoun A.M., Kamel K.I., El-Sebaie M.S., Gad H.A.M. (2007). Effect of Egyptian propolis supplementation on productive, reproductive performance and some hematobiochemical parameters and steroid hormones of female rabbits during winter and summer seasons. Proc. 4th World Poultry Conference, 27–30.03.2007. Search in Google Scholar

El-Khatib A.S., Agha A.M., Mahran L.G., Khayyal M.T. (2002). Prophylactic effect of aqueous propolis extract against acute experimental hepatotoxicity in vivo. Z. Naturforsch. C., 57: 379–385. Search in Google Scholar

El-Sabrout K., Khalifah A., Ciani F. (2023 a). Current applications and trends in rabbit nutraceuticals. Agriculture, 13: 1424. Search in Google Scholar

El-Sabrout K., Tavares Dantas M.R., Souza-Junior J.B.F. (2023 b). Herbal and bee products as nutraceuticals for improving poultry health and production, World’s Poult. Sci. J., 79: 223–242. Search in Google Scholar

Eyng C., Murakami A.E., Santos T.C., Silveira1 T.G.V., Pedroso R.B., Lourenço A.L. (2015). Immune responses in broiler chicks fed propolis extraction residue-supplemented diets. Asian Australas. J. Anim. Sci., 28: 135–142. Search in Google Scholar

Falcao S.I., Vale N.P., Gomes E. (2013). Phenolic profiling of Portuguese propolis by LC-MS spectrometry: uncommon propolis rich in flavonoid glycosides. Phytochem. Anal., 24: 309–318. Search in Google Scholar

Fernandes A.A.H., Alves M.J.F., Boteon E.M., Rosa G.J.M., Silva C.E.F. (2002). Effect of ethanolic propolis on the cholesterol level in rabbits with induced hypercholesterolaemia. Rev. Bras. de Plantas. Medicinais, 4: 1–5. Search in Google Scholar

Fokt H., Pereira A., Ferreira A., Cunha A., Aguiar C. (2010). How do bees prevent hive infections? The antimicrobial properties of propolis. In: Current research, technology and education. Topics in applied microbiology and microbial biotechnology. Vol 1. World Scientific, Singapore, pp. 481–493. Search in Google Scholar

Fokt H., Pereira A., Ferreira A., Cunha A., Aguiar C. (2012). How do bees prevent hive infections? The antimicrobial properties of propolis. Current Research, Technology and Search in Google Scholar

Education Topics in Applied Microbiology and Microbial Biotechnology, Mendez-Vilas, (ed.). Microbiology Book Series, 1: 481–493. Search in Google Scholar

Franchin M., Cólon D.F., Castanheira F.V., da Cunha M.G., Bueno-Silva B., Alencar S.M., Cunha T.M., Rosalen P.L. (2016). Vestitol isolated from Brazilian red propolis inhibits neutrophils migration in the inflammatory process: elucidation of the mechanism of action. J. Nat. Prod., 79: 954–960. Search in Google Scholar

Freitas J.A., Vanat N., Pinheiro J.W., Balarin M.R., Sforcin J.M., Venancio E.J. (2011). The effects of propolis on antibody production by laying hens. Poultry Sci., 90: 1227–1233. Search in Google Scholar

Fuliang H.U., Hepburn H.R., Xuan H. (2005). Effects of propolis on blood glucose, blood lipid and free radicals in rats with Diabetes mellitus. Pharmacol. Res., 51: 147–152. Search in Google Scholar

Galal A., Abd El-Motaal A.M., Ahmed A.M.H., Zaki T.G. (2008). Productive performance and immune response of laying hens as affected by dietary propolis supplementation. Int. J. Poult. Sci., 7: 272–278. Search in Google Scholar

Gardana C., Scaglianti M., Pietta P., Simonetti P. (2007). Analysis of the polyphenolic fraction of propolis from different sources by liquid chromatography-tandem mass spectrometry. J. Pharm. Biomed. Anal., 45: 390–399. Search in Google Scholar

Girgin G., Baydar T., Ledochowski M., Schennach H., Bolukbasi D.N., Sorkun K., Salih B., Sahin G., Fuchs D. (2009). Immunomodulatory effects of Turkish propolis: changes in neopterin release and tryptophan degradation. Immunobiology, 214: 129–134. Search in Google Scholar

Gomez-Romero M., Arraez-Roman D., Moreno-Torres R., Garcia-Salas P., Segura-Carretero A., Fernandez-Gutierrez A. (2007). Antioxidant compounds of propolis determined by capillary electrophoresis-mass spectrometry. J. Sep. Sci., 30: 595–603. Search in Google Scholar

Haddadin M., Nazer I., Jamal S., Raddad A., Robinson R. (2008). Effect of propolis on two bacterial species with probiotic potential. Pak. J. Nutr., 7: 391–394. Search in Google Scholar

Hafez H.M., Shehata A.A. (2021). Turkey production and health: current challenges. Ger. J. Vet. Res., 1: 3–14. Search in Google Scholar

Haile K., Kebede T., Dekebo A. (2012). A Comparative study of volatile components of propolis (bee glue) collected from Haramaya University and Assela Beekeeping Centers, Ethiopia. Bull. Chem. Soc. Ethiop., 26: 353–360. Search in Google Scholar

Hausen B., Wollenweber E., Senff H., Post B. (1987). Propolis allergy. (II). The sensitizing properties of 1, 1-dimethylallyl caffeic acid ester. Contact Dermatitis, 17: 171–177. Search in Google Scholar

Horakova K., Sovcikova A., Seemannova Z., Syrova D., Busanyova K., Drobna Z., Ferencik M. (2001). Detection of drug-induced, superoxide-mediated cell damage and its prevention by antioxidants. Free Radic. Biol. Med., 30: 650–664. Search in Google Scholar

Haro A., Lopez-Aliaga F., Lisbona M., Barrionuevo M.J., Alferez M., Campos M.S. (2000). Beneficial effect of pollen and propolis on the metabolism of iron, calcium, phosphorous, and magnesium in rats with nutritional ferric anemia. J. Agric. Food Chem., 48: 5715–5722. Search in Google Scholar

Hashem N.M., Abd El-Hady A.M., Hassan O.A. (2017). Inclusion of phytogenic feed additives comparable to vitamin E in diet of growing rabbits: effects on metabolism and growth. Ann. Agric. Sci., 62: 161–167. Search in Google Scholar

Hashem M.A., Mahmoud E.A., Farag M.F.M. (2018). Clinicopathological and immunological effects of using formalized killed vaccine alone or in combination with propolis against Pasteurella multocida challenge in rabbits. Slov. Vet. Res., 55: 59–71. Search in Google Scholar

Haščík P., Elimam I.O., Kročko M., Bobko M., Kačániová M., Garlík J., Šimko M., Saleh A.A. (2015). The influence of propolis as supplement diet on broiler meat growth performance, carcass body weight, chemical composition and lipid oxidation stability. Acta Univ. Agric. Silvic. Mendel. Brun., 63: 411–418. Search in Google Scholar

Hassan M.G., Abdulla T.A. (2011). The effect of propolis feed supplementation on hygiene and performance of broiler chickens. Iraq. J. Vet. Sci., 25: 77–82. Search in Google Scholar

Hassan R.I.M., Mosaad G.M.M., Abd El-wahab H.Y. (2018). Effect of feeding propolis on growth performance of broilers. J. Adv. Vet. Res., 8: 66–72. Search in Google Scholar

Hassan S.H., Al-Saadi M.A.K. (2019). Study the bactericidal activity of propolis in rabbit model. IOP Conf. Series: J. Physics: Conf. Series 1294 (2019) 062010. Search in Google Scholar

Hegazi A., Abdou A.M., Abd Allah F. (2012). Egyptian propolis 9- its effect on chicken productivity and immune response against Newcastle disease vaccine. Br. J. Poult. Sci., 1: 25–30. Search in Google Scholar

Hegazi A.G., Altahtawy R.H.M., Abdou A.M., Allah F.A. (2014). Egyptian propolis 10 : Its effect on hematological changes and bacterial load in mice-bearing Ehrlich ascites carcinoma and concurrently infected with Staphylococcus aureus. Acad. J. Cancer Res., 7: 215–223. Search in Google Scholar

Hosseini S.M., Afshar M., Ahani S., Azghandi M.V. (2015). Heat shock protein 70 mRNA expression and immune response of heat-stressed finishing broilers fed propolis (bee glue) supplementation. Archiv. Anim. Breed., 58: 407. Search in Google Scholar

Hosseini S.M., Vakili Azghandi M., Ahani S., Nourmohammadi R. (2016). Effect of bee pollen and propolis (bee glue) on growth performance and biomarkers of heat stress in broiler chickens reared under high ambient temperature. J. Anim. Feed Sci., 25: 41–50. Search in Google Scholar

Hu F., Hepburn H.R., Li Y., Chen M., Radloff S.E., Daya S. (2005). Effects of ethanol and water extracts of propolis (bee glue) on acute inflammatory animal models. J. Ethnopharmacol., 100: 276–283. Search in Google Scholar

Huang S.S., Liu S.M., Lin S.M., Liao P.H., Lin R.H., Chen Y.C., Chih C.L., Tsai S.K. (2005). Antiarrhythmic effect of caffeic acid phenethyl ester (CAPE) on myocardial ischemia/reperfusion injury in rats. Clin. Biochem., 38: 943–947. Search in Google Scholar

Izuta H., Narahara Y., Shimazawa M., Mishima S., Kondo S., Hara H. (2009). 1,1-Diphenyl-2-picrylhydrazyl radical scavenging activity of bee products and their constituents determined by ESR. Biol. Pharma. Bull., 32: 1947–1951. Search in Google Scholar

Jeon S.M., Bok S.H., Jang M.K., Kim Y.H., Nam K.T., Jeong T.S., Park Y.B., Choi M.S. (2002). Comparison of antioxidant effects of naringin and probucol in cholesterol-fed rabbits. Clin. Chim. Acta., 317: 181–190. Search in Google Scholar

Kačániová M., Hascik P., Hleba L., Pochop J., Melich, M., Knazovicka, V., Lejkova, J., Arpasova H. (2011). Bee products effect to microbial colonization of chickens gastrointestinal tract. Potravinarstvo, 5: 372–337. Search in Google Scholar

Kačániová M., Rovná K., Arpášová H., Cuboň J., Hleba L., Pochop J., Kunová S., Haščík P. (2012). In vitro and in vivo antimicrobial activity of propolis on the microbiota from gastrointestinal tract of chickens. J. Environ. Sci. Health – Toxic/Hazard., 47: 1665–1671. Search in Google Scholar

Kadhim M.J., Los A., Olszewski K., Borsuk G. (2018). Propolis in livestock nutrition. Entomol. Ornithol. Herpetol., 7: 207. Search in Google Scholar

Kamboh A.A., Arain M., Mughal M., Zaman A., Arain Z., Soomro A. (2015). Flavonoids: Health promoting phytochemicals for animal production – a review. J. Anim. Health Prod., 3: 6–13. Search in Google Scholar

Klarić I., Domaćinović M., Šerić V., Miškulin I., Pavić M., Paradinović K. (2018). Effects of bee pollen and propolis on performance, mortality, and some haematological blood parameters in broiler chickens. Slov. Vet. Res., 55: 23–34. Search in Google Scholar

Khayyal M.T., El-Ghazaly M.A., El-Khatib A.S. (1993). Mechanisms involved in the antiinflammatory effect of propolis extract. Drugs Exp. Clin. Res., 19: 197–203. Search in Google Scholar

Khodanazary A., Tatar A., Khezri M. (2011). Effects of different dietary levels of propolis on performance, carcass characteristics and immunity response of broiler chickens. J. Ethnopharm., 2: 80–83. Search in Google Scholar

Kumazawa S., Hamaska T., Nakayama T. (2004). Antioxidant activity of propolis of various geographic origins. Food Chem., 84: 329. Search in Google Scholar

Kupczyński R., Piasecki T., Bednarski M., Śpitalniak K., Budny-Walczak A. (2016). Application of herbs and propolis in rabbits with chronic diarrhea. Turk. J. Vet. Anim. Sci., 40: 344–351. Search in Google Scholar

Li Z., Zhang Z. (2002). Effects of ration supplemented with propolis on live weight gain of broilers. China Poult., 24: 22. Search in Google Scholar

Lin S.C., Lin Y.H., Chen C.F., Chung C.Y, Hsu S.H. (1997). The hepatoprotective and therapeutic effects of propolis ethanol extract on chronic alcohol-induced liver injuries. Am. J. Chin. Med., 25: 325–332. Search in Google Scholar

Loke W.M., Hodgson J.M., Proudfoot J.M., McKinley A.J., Puddey I.B., Croft K.D. (2008). Pure dietary flavonoids quercetin and (−)-epicatechin augment nitric oxide products and reduce endothelin-1 acutely in healthy men. Am. J. Clin. Nutr., 88: 1018–1025. Search in Google Scholar

Mahmoud U.T., Abdel-Rahman, M.A., Darwish, M.H. (2013). The effect of Chinese propolis supplementation on Ross broiler performance and carcass characteristics. J. Adv. Vet. Res., 3: 154–160. Search in Google Scholar

Mahmoud M.A.M., Abdelmohsein H.S., Farghali M.R.F. (2015). Antioxidant properties of Chinese propolis in Ross broilers exposed to heat stress in Egypt. Open J. Vet. Med., 5: 197–209. Search in Google Scholar

Martinotti S., Ranzato E. (2015). Propolis: a new frontier for wound healing? Burns Trauma, 3: 9. Search in Google Scholar

Marcucci M.C., Ferreres F., Custodio A.R., Ferreira M.M.C., Bankova V.S., Garcia-Viguera C., Bretz W.A. (2000). Evalution of phenolic compounds in Brazilian propolis from different geographic regions. Z. Naturforsch. C. J. Biosci., 55: 76–81. Search in Google Scholar

Matsui T., Ebuchi S., Fujise T., Abesundara K.J., Doi S., Yamada H., Matsumoto K. (2004). Strong antihyperglycemic effects of water-soluble fraction of Brazilian propolis and its bioactive constituent, 3,4,5-tri-O-caffeoylquinic acid. Biol. Pharm. Bull., 27: 1797–1803. Search in Google Scholar

Mathivanan V., Shah G.N., Manzoor Mudasar M.G.M. (2013). A review on propolis: As a novel folk medicine. Indian J. Sci., 2: 23–30. Search in Google Scholar

Melillo A. (2007). Rabbit clinical pathology. J. Exot. Pet Med., 16: 135–145. Search in Google Scholar

Mirzoeva O.K., Calder P.C. (1996). The effect of propolis and its components on eicosanoid production during the inflammatory response. Prostaglandins Leukot. Essent. Fatty Acids, 55: 441–449. Search in Google Scholar

Mirzoeva O.K., Grishanin R.N., Calder P.C. (1997). Antimicrobial action of propolis and some of its components: The effects on growth, membrane potential and motility of bacteria. Microbiol. Res., 152: 239–246. Search in Google Scholar

Molina M.F., Sanchez-Reus I., Iglesias I., Benedi J. (2003). Quercetin, a flavonoid antioxidant, prevents and protects against ethanol-induced oxidative stress in mouse liver. Biol. Pharmaceut. Bull., 26: 1398–1402. Search in Google Scholar

Nakanishi I., Uto Y., Ohkubo K., Miyazaki K., Yakumaru H., Urano S., Okuda H., Ueda J., Ozawa T., Fukuhara K., Fukuzumi S., Nagasawa H., Hori H., Ikota N. (2003). Efficient radical scavenging ability of artepillin C, a major component of Brazilian propolis, and the mechanism. Org. Biomol. Chem., 1: 1452–1454. Search in Google Scholar

Nam J.H., Shin D.H., Zheng H., Kang J.S., Kim W.K., Kim S.J. (2009). Inhibition of store-operated Ca 2+ entry channels and K+ channels by caffeic acid phenethylester in T lymphocytes. Europ. J. Pharmacol., 612: 153–160. Search in Google Scholar

Nagei T., Inoue R., Inoue H., Suzuki N. (2003). Preparation and antioxidant properties of water extract of propolis. Food Chem., 80: 29–33. Search in Google Scholar

Nassar S.A., Mohamed A.H., Soufy H., Nasr S.M., Mahran K.M. (2012). Immunostimulant effect of Egyptian propolis in rabbits. Sci. World J., 7: 2–9. Search in Google Scholar

Nassar S., Mohamed A., Soufy H., Nasr S. (2013). Protective effect of Egyptian propolis against rabbit pasteurellosis. BioMed. Res. Int., 163724: 1–9. Search in Google Scholar

Nolkemper S., Reichling J., Sensch K.H., Schnitzler P. (2010). Mechanism of herpes simplex virus type 2 suppression by propolis extracts. Phytomedicine, 17: 132–138. Search in Google Scholar

North M.K., Dalle Zotte A., Hoffman L.C. (2019). The use of dietary flavonoids in meat production: A review. Anim. Feed Sci. Technol., 257: 114291. Search in Google Scholar

Omar R.E.M., Mahmoud E.A., Karousa M.M., Randa S.A. (2003). Effect of additives propolis and Nigella sativa seed oil on some behavioral patterns, performance products and blood parameters in Sasso chickens. Egypt. Poult. Sci., 21: 140–151. Search in Google Scholar

Onlen Y., Duran N., Atik E., Savas L., Altug E., Yakan S., Aslantas O. (2007). Antibacterial activity of propolis against MRSA and synergism with topical mupirocin. J. Altern. Complement Med., 13: 713–718. Search in Google Scholar

Orsatti C.L., Missima F., Pagliarone A.C., Bachiega T.F., Bufalo M.C., Araujo J.P. Jr., Sforcin J.M. (2010). Propolis immunomodulatory action in vivo on Toll-like receptors 2 and 4 expression and on pro-inflammatory cytokines production in mice. Phytother. Res., 24: 1141–1146. Search in Google Scholar

Orsi R.O., Funari S.R.C., Soares, A.M.V.C., Calvi S.A., Oliveira S.L., Sforcin J.M., Bankova V. (2000). Immunomodulatory action of propolis on macrophage activation. J. Venom Anim. Toxins, 6: 205–219. Search in Google Scholar

Orsi R., Sforcin J., Rall V., Funari S., Barbosa L., Fernandes J. (2005). Susceptibility profile of Salmonella against the antibacterial activity of propolis produced in two regions of Brazil. J. Venom. Anim. Toxins Trop. Dis., 11: 109–116. Search in Google Scholar

Oršolić N., Bašić I. (2003). Immunomodulation by water-soluble derivative of propolis: A factor of antitumor reactivity. J. Ethnopharmacol., 84: 265–273. Search in Google Scholar

Oršolić N., Bašić I. (2005). Water-soluble derivative of propolis and its polyphenolic compounds enhance tumoricidal activity of macrophages. J. Ethnopharmacol., 102: 37–45. Search in Google Scholar

Orsolić N., Knezević A.H., Sver L., Terzić S., Basić I. (2004). Immunomodulatory and antimetastatic action of propolis and related polyphenolic compounds. J. Ethnopharmacol., 94: 307–315. Search in Google Scholar

Petruska P., Tusimová E., Kalafová A., Hascík P., Kolesárová A., Capcarová M. (2012). Effect of propolis in chicken diet on selected parameters of mineral profile. J. Microbiol. Biotechnol. Food Sci., 1: 593. Search in Google Scholar

Piccinelli A.L., Mencherini T., Celano R., Mouhoubi Z., Tamendjari A., Aquino R.P., Rastrelli L. (2013). Chemical composition and antioxidant activity of Algerian propolis. J. Agric. Food Chem., 61: 5080–5088. Search in Google Scholar

Piza P.C., Moreira B.L., Silva N.C., Sodré P.I., Fonseca L.S., Leite R.F. (2021). Effect of crude propolis on the performance and feed digestibility of New Zealand White rabbits. Acta Sci., 43: e52593. Search in Google Scholar

Pobiega K., Kraśniewska K., Przybył J.L., Bączek K., Żubernik J., Witrowa-Rajchert D., Gniewosz M. (2019 a). Growth biocontrol of foodborne pathogens and spoilage microorganisms of food by Polish propolis extracts. Molecules, 24: 2965. Search in Google Scholar

Pobiega K., Kraśniewska K., Gniewosz M. (2019 b). Application of propolis in antimicrobial and antioxidative protection of food quality: A review. Trends Food Sci. Technol., 83: 53–62. Search in Google Scholar

Popova M.P., Chinou I.B., Marekov I.N., Bankova V.S. (2009). Terpenes with antimicrobial activity from Cretan propolis. Phytochemistry, 70: 1262–1271. Search in Google Scholar

Premratanachai P., Chanchao C. (2014). Review of the anticancer activities of bee products. Asian Pac. J. Trop. Biomed., 4: 337–344. Search in Google Scholar

Rahman M.M., Richardson A., Sofian-Azirun M. (2010). Antibacterial activity of propolis and honey against Staphylococcus aureus and Escherichia coli. Afr. J. Microbiol. Res., 4: 1872–1878. Search in Google Scholar

Ramos A.F.N., Miranda J.L. (2007). Propolis: a review of its anti-inflammatory and healing actions. J. Venom. Anim. Toxins incl. Trop. Dis., 13: 697–710. Search in Google Scholar

Righi A.A., Negri G., Salatino A. (2013). Comparative chemistry of propolis from eight Brazilian localities. Evid. Based Complement. Altern. Med., 2013: 1–14. Search in Google Scholar

Roodsari M.H., Mehdizadeh M., Kasmani F.B., Lotfelahian H., Mosavi F., Abolghasemi A.H., (2004). Effects of oil extracted propolis on the performance of broiler chicks. Agric. Sci. Technol., 18: 57–65. Search in Google Scholar

Russo A., Acquaviva R., Campisi A, Sorrenti V., Di Giacomo C., Virgata G., Barcellona M.L., Vanella A. (2000). Bioflavonoids as antiradicals, antioxidants and DNA cleavage protectors. Cell Biol. Toxicol., 16: 91–98. Search in Google Scholar

Russo A., Cardile V., Sanchez F., Troncoso N., Vanella A., Garabino J. (2004). Chilean propolis: antioxidant activity and antiproliferative action in human tumor cell lines. Life Sci., 76: 545–558. Search in Google Scholar

Saeed M., Arain M.A., Kamboh A.A., Memon S.A., Umar M., Rashid M., Babazadeh D., El-Hack M.E.A., Alagawany M. (2017). Raw propolis as a promising feed additive in poultry nutrition: Trends and Advances. J. Anim. Health Prod., 5: 132–142. Search in Google Scholar

Santos F.A., Bastos E.M.A., Uzeda M., Carvalho M.A.R., Farias L.M., Moreira E.S.A., Braga F.C. (2002). Antibacterial activity of Brazilian propolis and fractions against oral anaerobic bacteria. J. Ethnopharmacol., 80: 1–7. Search in Google Scholar

Santos A.V., Teixeira A.S., Rodrigues P.B., Freitas R.T.F., Guimaraes A.M., Giacometti R.A. (2003). Nutritive value of propolis residue for broiler chickens. Cienc. Agrotecnologia, 27: 1152. Search in Google Scholar

Sayed M.A., Shahta M.A., Kotob M.H., Ali N.M., Mahmoud U.T., Mahmoud M.A.M., Amen O. (2023). Evaluate the effect of some phytobiotics on the control of necrotic enteritis in broilers chicken. Assiut Vet. Med. J., 69: 89–104. Search in Google Scholar

Seven P.T. (2008). The Effects of dietary Turkish propolis and vitamin C on performance, digestibility, egg production and egg quality in laying hens under different environmental temperatures. Asian-Austral. J. Anim. Sci., 21: 1164–1170. Search in Google Scholar

Serkedjieva J., Manolova N., Bankova V. (1992). Anti-influenza virus effect of some propolis constituents and their analogues (esters of substituted cinnamic acids). J. Natur. Prod., 55: 294–297. Search in Google Scholar

Seven T.P., Seven I., Yilmaz M., Şimşek Ü.G. (2008). The effects of Turkish propolis on growth and carcass characteristics in broilers under heat stress. Anim. Feed Sci. Technol., 146: 137–148. Search in Google Scholar

Seven I., Aksu T., Seven P.T. (2010). The effects of propolis on biochemical parameters and activity of antioxidant enzymes in broilers exposed to lead-induced oxidative stress. J. Anim. Sci., 11: 1482–1489. Search in Google Scholar

Seven I., Aksu T., Tatli S.P. (2012 a). The effects of propolis and vitamin c supplemented feed on performance, nutrient utilization and carcass characteristics in broilers exposed to lead. Livest. Sci., 148: 10–15. Search in Google Scholar

Seven P.T., Yilmaz S., Seven I., Kelestemur G.T. (2012 b). The effects of propolis in animals exposed oxidative stress. In: Oxidative stress – environmental induction and dietary antioxidants, Lushchak V.I. (ed.). InTech. Search in Google Scholar

Seven I., Simsek U.G., Gokce Z., Tatli Seven P., Arslan A., Yilmaz O. (2014). The effects of royal jelly on performance and fatty acid profiles of different tissues in quail (Coturnix coturnix japonica) reared under high stocking density. Turk. J. Vet. Anim. Sci., 38: 271–277. Search in Google Scholar

Sforcin J.M. (2007). Propolis and the immune system: a review. J. Ethnopharmacol., 113: 1–14. Search in Google Scholar

Shaddel-Tili A., Eshratkhah B., Kouzehgari H., Ghasemi-Sadabadi M. (2017). The effect of different levels of propolis in diets on performance, gastrointestinal morphology and some blood parameters in broiler chickens. Bulg. J. Vet. Med., 20: 215–224. Search in Google Scholar

Shalmany S.K., Shivazad M. (2006). The effect of diet propolis supplementation on Ross broiler chicks performance. Int. J. Poult. Sci., 5: 84–88. Search in Google Scholar

Shehata A.A., Attia Y., Khafaga A.F., Farooq M.Z., El-Seedi H.R., Eisenreich W., Tellez-Isaias G. (2022). Restoring healthy gut microbiome in poultry using alternative feed additives with particular attention to phytogenic substances: Challenges and prospects. Ger. J. Vet. Res., 2: 32–42. Search in Google Scholar

Shihab I.M., Ali B.H. (2012). Effect of propolis in diet supplementation on the immune response against Newcastle disease and hematological picture in broiler chicks. Al-Anbar J. Vet. Sci., 5: 40–46. Search in Google Scholar

Shimizu T., Hino A., Tsutsumi A., Park Y.K., Watanabe W., Kurokawa M. (2008). Anti-influenza virus activity of propolis in vitro and its efficacy against influenza infection in mice. Antiviral Chem. Chemotherap., 19: 7–13. Search in Google Scholar

Shreif E.Y., El-Saadany A.S. (2016). The effect of supplementing diet with propolis on bandrah laying performance. Egypt. Poult. Sci., 36: 481–499. Search in Google Scholar

Shreif E.Y., El-Saadany A.S. (2017). Effect of supplementing diet with propolis on bandarah chicks’ performance. Egypt. Poult. Sci., 37: 169–184. Search in Google Scholar

Sierra-Galicia M.I., Rodríguez-de Lara R., Orzuna-Orzuna J.F., LaraBueno A., García-Muñiz J.G., FallasLópez M., Hernández-García P.A. (2022). Supplying bee pollen and propolis to growing rabbits: Effects on growth performance, blood metabolites, and meat quality. Life J., 12: 1987. Search in Google Scholar

Sierra-Galicia M.I., Rodríguez-de Lara R., Orzuna-Orzuna J.F., Lara-Bueno A., Ramírez-Valverde R., Fallas-López M. (2023). Effects of supplementation with bee pollen and propolis on growth performance and serum metabolites of rabbits: A meta-analysis. Animals (Basel), 13: 439. Search in Google Scholar

Silici S., Kutluca S. (2005). Chemical composition and antibacterial activity of propolis collected by three different races of honey-bees in the same region. J. Ethnopharmacol., 99: 69–73. Search in Google Scholar

Silici S., Koç N.A., Ayangil D., Çankaya S. (2005). Antifungal activities of propolis collected by different races of honeybees against yeasts isolated from patients with superficial mycoses. J. Pharmacol. Sci., 99: 39–44. Search in Google Scholar

Silici S., Karabacak M., Balci, E., Cankaya S. (2007). Effect of the propolis on the performance and carcass characteristics of growing quail. Mellifera, 7: 20–26. Search in Google Scholar

Simoes L., Gregório L., da Silva Filho A., de Souza M., Azzolini A., Bastos J., Lucisano-Y. (2004). Effect of Brazilian green propolis on the production of reactive oxygen species by stimulated neutrophils. J. Ethnopharmacol., 94: 59–65. Search in Google Scholar

Seo K.W., Park M., Song Y.J., Kim S.J., Yoon K.R. (2003). The protective effects of propolis on hepatic injury and its mechanism. Phytother. Res., 17: 250253. Search in Google Scholar

Taheri H.R., Rahmani H.R., Pourreza J. (2005). Humoral immunity of broilers is affected by oil extracted propolis (OEP) in the diet. Int. J. Poult. Sci., 4: 414–417. Search in Google Scholar

Tao Y., Wang D., Hu Y., Huang Y., Yu Y., Wang D. (2014). The immunological enhancement activity of propolis flavonoids liposome in vitro and in vivo. Evid. Based Complement. Alternat. Med., 2014: 483513. Search in Google Scholar

Tatli Seven P., Yılmaz S., Seven I., Cercı H., Azmanand A., Yılmaz M. (2009). Effects of propolis on selected blood indicators and antioxidant enzyme activities in broilers under heat stress. Acta Vet., 78: 75–83. Search in Google Scholar

Tekeli A., Kutlu H.R., Celik L., Doran F. (2010). Determination of the effects of Z. officinale and propolis extracts on intestinal microbiology and histological characteristics in broilers. Int. J. Poult. Sci., 9: 898–906. Search in Google Scholar

Tekeli A., Kutlu H. R., Celik L. (2011). Effects of Z. officinale and propolis extracts on the performance, carcass and some blood parameters of broiler chicks. Curr. Res. Poult. Sci. 1: 12–23. Search in Google Scholar

Tosi A.E., Re’ E., Ortega M.E., Cazzoli A.F. (2007). Food preservative based on propolis: bacteriostatic activity of propolis polyphenols and flavonoids upon Escherichia coli. Food Chem., 104: 1025–1029. Search in Google Scholar

Umthong S., Puthong S., Chanchao C. (2009). Trigona laeviceps propolis from Thailand: antimicrobial, antiproliferative and cytotoxic activities. Am. J. Chinese Med., 37: 855–65. Search in Google Scholar

Wagh V.D. (2013). Propolis: a wonder bees product and its pharmacological potentials. Adv. Pharmacol. Sci., 2013: 308249. Search in Google Scholar

Waly A.H., Enayat H., Abo El-Azayem G.E., Younan A.H., El-Komy Z.H.M., Rehab A. (2021). Effect of propolis supplementation on growth performance, nutrients digestibility, carcass characteristics and meat quality of growing New-Zeeland rabbits. Egypt. J. Nutr. Feeds, 24: 65–73. Search in Google Scholar

Wang B.J., Lien Y.H., Yu Z.R. (2004). Supercritical fluid extractive fractionation study of the antioxidant activities of propolis. Food Chem., 86: 237–243. Search in Google Scholar

Wilson G. (2002). Kimia farmasi dan medisinal organik. 8th ed. Dirjen Dikti dan Kebudayaan. Jakarta, Indonesia, pp. 10–12. Search in Google Scholar

Wojtyczka R.D., Kępa M., Idzik D., Kubina R., Kabała-Dzik A., Dziedzic A., Wąsik T.J. (2013). In vitro antimicrobial activity of ethanolic extract of polish propolis against biofilm forming Staphylococcus epidermidis strains. Evid. Based Complement. Alternat. Med., 590703. Search in Google Scholar

Woo K.J., Jeong Y.J., Inoue H., Park J.W., Kwon T.K. (2005). Chrysin suppresses lipopolysaccharide‐induced cyclooxygenase‐2 expression through the inhibition of nuclear factor for IL‐6 (NF‐IL6) DNA‐binding activity. FEBS Letters, 579: 705–711. Search in Google Scholar

Yousef M.I., Kamel K.I., S. Hassan M., El-Morsy A.M.A. (2010). Protective role of propolis against reproductive toxicity of triphenyltin in male rabbits. Food Chem. Toxicol., 48: 1846–1852. Search in Google Scholar

Yilmaz L., Yilsay T.O., Bayazit A.A. (2003). Chemical composition of propolis, properties and biological effects on human health. Proc. II. Marmara Apiculture Congress, pp. 28–30. Search in Google Scholar

Zheng K., Wu L., He Z., Yang B., Yang Y. (2017). Measurement of the total protein in serum by biuret method with uncertainty evaluation. Measurement, 112: 16–21. Search in Google Scholar

Zhijiang Z., Sanfeng L., Ke P., Hongxiang W., Kaijie T. (2004). Effects of pollen and propolis on productive and immune performance in meat fowl. Zhongguo Nongye Kexue, 37: 751–755. Search in Google Scholar

Ziaran H.R., Rahmani H.R., Pourreza J. (2005). Effect of dietary oil extract of propolis on immune response and broiler performance. Pak. J. Biol. Sci., 8: 1485–1490. Search in Google Scholar

Zeweil H.S., Abd El-Rahman M.H.A., Dosoky W.M., Salma Abu Hafsa H., Abdulhamid A.B.A. (2016 a). Effects of ginger and bee propolis on the performance, carcass characteristics and blood constituents of growing Japanese quail. Egypt. Poult. Sci., 36: 143–159. Search in Google Scholar

Zeweil H.S., Zahran S.M., Abd El-Rahman M.H.A., Dosoky W.M., Salma Abu Hafsa H., Moktar A.A. (2016 b). Effect of using bee propolis as natural supplement on productive and physiological performance of Japanese quail. Egypt. Poult. Sci., 36: 161–175. Search in Google Scholar

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