Zitieren

Afifi M.A.A. (1987). Studies on some immunosuppressives interfering with vaccination in chickens. M.V.Sc. Thesis, Birds and rabbit diseases, Fac. Vet. Med., Cairo Univ., Egypt. Search in Google Scholar

Ahmed A.S. (2015). Assessment of maternal immunity against Newcastle Disease in offspring chicks as affected by parents genetic crossing. Asian J. Anim. Vet. Adv., 10: 35–42. Search in Google Scholar

Al-Natour M.Q., Ward L.A., Saif Y.M., Stewart-Brown B., Keck L.D. (2004). Effect of different levels of maternally derived antibodies on protection against infectious bursal disease virus. Avian Dis., 48: 177–182. Search in Google Scholar

Bar-Shira E., Friedman A. (2006). Development and adaptations of innate immunity in the gastrointestinal tract of the newly hatched chick. Dev. Comp. Immunol., 30: 930–941. Brudnicki A., Szymeczko R., Bednarczyk M., Głowińska B., Pietruszyńska D. (2015). Search in Google Scholar

Assessment of the effect of alpha-galactosides on yolk sac resorption rate in broiler chicken. J. Anim. Plant Sci., 25: 387–391. Search in Google Scholar

Buhr R.J., Northcutt J.K., Richardson L.J., Cox N.A., Fairchild B.D. (2006). Incidence of unabsorbed yolk sacs in broilers, broiler breeder roosters, white Leghorn hens, and Athens-Canadian randombred control broilers. Poultry Sci., 85: 1294–1297. Search in Google Scholar

Callewaert L., Michiels C.W. (2010). Lysozymes in the animal kingdom. J. Biosci., 35: 127–160. Search in Google Scholar

Chamblee T.N., Brake J.D., Schultz C.D., Thaxton J.P. (1992). Yolk sac absorption and initiation of growth in broilers. Poultry Sci., 71: 1811–1816. Search in Google Scholar

Chrząstek K., Wozniak A., Wieliczko A. (2011 a). Maternal antibodies in young birds. Med. Weter., 67: 250–252. Search in Google Scholar

Chrząstek K., Madej J.P., Mytnik E., Wieliczko A. (2011 b). The influence of antibiotics on B-cell number, percentage, and distribution in the bursa of Fabricius of newly hatched chicks. Poultry Sci., 90: 2723–2729. Search in Google Scholar

Chrząstek K., Wieliczko A. (2015). The influence of enrofloxacin, florfenicol, ceftiofur and E. coli LPS interaction on T and B cells subset in chicks. Vet. Res. Commun., 39: 53–60. Search in Google Scholar

Clem A.S. (2011). Fundamentals of vaccine immunology. J. Glob. Infect. Dis., 3: 73–78. Search in Google Scholar

Directive 2010/63/EU of the European Parliament and of the Council of 22 September 2010 on the protection of animals used for scientific purposes. OJEU L276, 20.10.2010, pp. 33–79. Search in Google Scholar

Ellakany H.F., Abu El-Azm I.M., Bekhit A.A., Shehawy M.M. (2007). Studies on the effects of enrofloxacin overdose on different health parameters in boiler chickens. Proc. 5th Scientific Conference, BS Vet. Med. J., pp. 176–186. Search in Google Scholar

Fernández-Sousa J.M., Gavilanes J.G., Municio A.M., Rodriguez R. (1977). On the inhibition of hen egg-white lysozyme activity by aminoglycosidic antibiotics. Biochem. Biophys. Res. Commun., 75: 895–900. Search in Google Scholar

Gharaibeh S., Mahmoud K., Al-Natour M. (2008). Field evaluation of maternal antibody transfer to a group of pathogens in meat-type chickens. Poultry Sci., 87: 1550–1555. Search in Google Scholar

Grindstaff J.L., Brodie E.D., Ketterson E.D. (2003). Immune function across generations: integrating mechanism and evolutionary process in maternal antibody transmission. Proc. Biol. Sci., 270: 2309–2319. Search in Google Scholar

Grondel J.L., Angenent G.C., Egberts E. (1985). The influence of antibiotics on the immune system III. Investigations on the cellular functions of chicken leukocytes in vitro. Vet. Immunol. Immunopathol., 10: 307–316. 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

Hamal K.R., Burgess S.C., Pevzner I.Y., Erf G.F. (2006). Maternal antibody transfer from dams to their egg yolks, egg whites, and chicks in meat lines of chickens. Poultry Sci., 85: 1364– 1372. Search in Google Scholar

Hybrid Turkeys. Commercial Management Guide and Nutrient Guidelines for Hybrid Turkeys. Accessed July 2021, http://www.hybridturkeys.com, 2020. Search in Google Scholar

Jamroz D., Wertelecki T., Wiliczkiewicz A., Orda J., Skorupinska J. (2004). Dynamics of yolk sac reabsorption and posthatching development of the gastrointestinal tract in chickens, ducks, and geese. J. Anim. Physiol. Anim. Nutr., 88: 239–250. Search in Google Scholar

Kaspers B., Schranner I., Lösch U. (1991). Distribution of immunoglobulins during embryogenesis in the chicken. Zbl. Vet. Med. A., 38: 73–79. Search in Google Scholar

Kennedy K.E., Teng C., Patek T.M., Frei C.R. (2020). Hypoglycemia associated with antibiotics alone and in combination with sulfonylureas and meglitinides: an epidemiologic surveillance study of the FDA Adverse Event Reporting System (FAERS). Drug Safety, 43: 363–369. Search in Google Scholar

Khalifeh M.S., Amawi M.M., Abu-Basha E.A., Yonis I.B. (2009). Assessment of humoral and cellular-mediated Immune response in chickens treated with tilmicosin, florfenicol, or enrofloxacin at the time of Newcastle disease vaccination. Poultry Sci., 88: 2118–2124. Search in Google Scholar

Khan K.A., Khan S.A., Aslam A., Rabbanil M., Tipu M.Y. (2004). Factors contributing to yolk retention in poultry. A review. Pakistan Vet. J., 24: 46–51. Search in Google Scholar

Kovacs-Nolan J., Mine Y. (2004). Avian egg antibodies: basic and potential applications. Avian Poult. Biol. Rev., 15: 25–46. Search in Google Scholar

Kowalczyk J., Śmiałek M., Tykałowski B., Dziewulska D., Stenzel T., Koncicki A. (2019). Field evaluation of maternal antibody transfer from breeder turkey hens to egg yolks, egg whites, and poults. Poultry Sci., 98: 3150–3157. Search in Google Scholar

Li X., Nakano T., Sunwoo H.H., Paek B.H., Chae H.S., Sim J.S. (1998). Effects of egg and yolk weights on yolk antibody IgY. production in laying chickens. Poultry Sci., 77: 266– 270. Search in Google Scholar

Linden C.D., Roth T.F. (1978). IgG receptors on foetal chick yolk sac. J. Cell Sci., 33: 317–328. Search in Google Scholar

Lourens A., van den Brand H., Heetkamp M.J.W., Meijerhof R., Kemp B. (2007). Effects of eggshell temperature and oxygen concentration on embryo growth and metabolism during incubation. Poultry Sci., 86: 2194–2199. Search in Google Scholar

Marshall J.S., Warrington R., Watson W., Kim H.L. (2018). An introduction to immunology and immunopathology. Allergy Asthma Clin. Immunol., 14: 49. Search in Google Scholar

Mikec M., Biđin Z., Valentić A., Savić V., Amšel Zelenika T., Raguž Đurić R., Lukaè Novak I., Baleńovic M. (2006). Influence of environmental and nutritional stressors on yolk sac utilization, development of chicken gastrointestinal system and its immune status. World Poult. Sci. J., 62: 31–40. Search in Google Scholar

Munir K., Muneer M.A., Tiwari A., Chaudhry R.M., Muruganandan S. (2007). Effects of polyether ionophores on the protective immune responses of broiler chickens against Angara disease and Newcastle disease viruses. Vet. Res. Comm., 31: 909–929. Search in Google Scholar

Murai A. (2013). Maternal transfer of immunoglobulins into egg yolks of birds. J. Poult. Sci., 50: 185–193. Search in Google Scholar

Murai A., Hamano T., Kakiuchi M., Kobayashi M., Horio F. (2020). Evaluation of a receptor gene responsible for maternal blood IgY transfer into egg yolks using bursectomized IgY-depleted chickens. Poultry Sci., 99: 1914–1920. Search in Google Scholar

Nagi S.A., Sahin N., Wagnar G., Williams J. (1984). Adverse effects of antibiotics on the development of gut associated lymphoid tissues and serum immunoglobulins in chickens. Am. J. Vet. Res., 45: 1425–1429. Search in Google Scholar

Nile C.J., Townes C.L., Michailidis G., Hirst B.H., Hall J. (2004). Identification of chicken lysozyme g2 and its expression in the intestine. Cell. Mol. Life Sci., 61: 2760–2766. Search in Google Scholar

Panda A.K., Reddy M.R. (2007). Boosting the chicks immune system through early chick nutrition. Poult. Inter., 47: 22–26. Search in Google Scholar

Panigrahy B., Grumbles L.C., Millar D., Naqi S.A., Hall C.F. (1979). Antibiotic-induced immunosupression and levamisole-induced immunopotentiation in turkeys. Avian. Dis., 23: 401–408. Search in Google Scholar

Rose M.E., Orlans E. (1981). Immunoglobulins in the egg, embryo and young chick. Dev. Comp. Immunol., 5: 15–20. Search in Google Scholar

Ragland S.A., Criss A.K. (2017). From bacterial killing to immune modulation: Recent insights into the functions of lysozyme. PLoS Pathog., 13: e1006512. Search in Google Scholar

Rzedzicki J., Cybulska R., Trawinska B., Jaworska-Adamu J. (1991). Effect of some antibacterial agents on the immune response and intestinal mucosa of chickens (in Polish). Zesz. Nauk. Akad. Rol. Wrocław, Weterynaria, 49: 179–189. 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

Tokarzewski S. (2002). Influence of enrofloxacin and chloramphenicol on the level of IgY in serum and egg yolk after immunostimulation of hens with Salmonella Enteritidis antigens. Pol. J. Vet. Sci., 5: 151–158. Search in Google Scholar

Tykałowski B., Stenzel T., Śmiałek M., Pestka D., Choszcz D., Koncicki A. (2013). Influence of the oral administration of oxytetracycline on selected parameters of cellular immunity in turkeys (in Polish). Med. Weter., 69: 432–435. Search in Google Scholar

Ulmer-Franco A.M., Cherian G., Quezada N., Fasenko G.M., McMullen L.M. (2012). Hatching egg and newly hatched chick yolk sac total IgY content at 3 broiler breeder flock ages. Poultry Sci., 91: 758–764. Search in Google Scholar

van der Wagt I., de Jong I.C., Mitchell M.A., Molenaar R., van den Brand H. (2020). A review on yolk sac utilization in poultry. Poultry Sci., 99: 2162–2175. Search in Google Scholar

Ventola C.L. (2015). The antibiotic resistance crisis: part 1: causes and threats. Pharm. Therap., 40: 277. Search in Google Scholar

Wallach M. (2010). Role of antibody in immunity and control of chicken coccidiosis. Trends Parasitol., 26: 382–387. Search in Google Scholar

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