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Ahmadi M.R., Bazyar A.A., Safi S., Ytrestøyl T., Bjerkeng B. (2006). Effects of dietary astaxanthin supplementation on reproductive characteristics of rainbow trout (Oncorhynchus mykiss). J. Appl. Ichthyol., 22: 388–394. Search in Google Scholar

Akiba Y., Sato K., Takahashi K., Matsushita K., Komiyama H., Tsunekawa H., Nagao H. (2001). Meat color modification in broiler chickens by feeding yeast Phaffia rhodozyma containing high concentrations of astaxanthin. J. Appl. Poult. Res., 10: 154–161. Search in Google Scholar

Alishahi M., Karamifar M., Mesbah M. (2015). Effects of astaxanthin and Dunaliella salina on skin carotenoids, growth performance and immune response of Astronotus ocellatus. Aquac. Int., 23: 1239–1248. Search in Google Scholar

Amar E.C., Kiron V., Satoh S., Watanabe T. (2001). Influence of various dietary synthetic carotenoids on bio-defence mechanisms in rainbow trout, Oncorhynchus mykiss (Walbaum). Aquac. Res., 32: 162–173. Search in Google Scholar

Amar E.C., Kiron V., Akutsu T., Satoh S., Watanabe T. (2012). Resistance of rainbow trout Oncorhynchus mykiss to infectious hematopoietic necrosis virus (IHNV) experimental infection following ingestion of natural and synthetic carotenoids. Aquaculture, 330–333: 148– 155. Search in Google Scholar

Ambati R.R., Phang S.-M., Ravi S., Aswathanarayana R.G. (2014). Astaxanthin: sources, extraction, stability, biological activities and its commercial applications – a review. Mar. Drugs., 12: 128–152. Search in Google Scholar

Angeles Jr I.P., Chien Y.-H., Tayamen M.M. (2009). Effects of different dosages of astaxanthin on giant freshwater prawn Macrobrachium rosenbergii (De Man) challenged with Lactococcus garvieae. Aquac. Res., 41: 70–77. Search in Google Scholar

Bazyar Lakeh A.A., Ahmadi M.R., Safi S., Ytrestøyl T., Bjerkeng B. (2010). Growth performance, mortality and carotenoid pigmentation of fry offspring as affected by dietary supplementation of astaxanthin to female rainbow trout (Oncorhynchus mykiss) broodstock. J. Appl. Ichthyol., 26: 35–39. Search in Google Scholar

Bhuvaneswari S., Arunkumar E., Viswanathan P., Anuradha C.V. (2010). Astaxanthin restricts weight gain, promotes insulin sensitivity and curtails fatty liver disease in mice fed a obesity-promoting diet. Proc. Biochem., 45: 1406–1414. Search in Google Scholar

Bogan-Brown K., Nkrumah-Elie Y., Ishtiaq Y., Redpath P., Shao A. (2021). Potential efficacy of nutrient supplements for treatment or prevention of COVID-19. J. Diet. Suppl., 1–29. Search in Google Scholar

Bolarin D.M., Ekpe E.L., Saidu K., Eyam E.S. (2016). Overview of foods with antioxidant effects – clinical relevance. Eur. Food Res. Technol., 4: 1–9. Search in Google Scholar

Breithaupt D.E. (2007). Modern application of xanthophylls in animal feeding – a review. Trends Food Sci. Technol., 18: 501–506. Search in Google Scholar

Brendler T., Al-Harrasi A., Bauer R., Gafner S., Hardy M.L., Heinrich M., Hosseinzadeh H., Izzo A.A., Michaelis M., Nassiri-Asl M., Panossian A., Wasser S.P., Williamson E.M. (2021). Botanical drugs and supplements affecting the immune response in the time of COVID-19: Implications for research and clinical practice. Phytother. Res., 35: 3013–3031. Search in Google Scholar

Brotosudarmo T.H.P., Limantara L., Setiyono E. (2020). Structures of astaxanthin and their consequences for therapeutic application. Int. J. Food Sci., 2156582.10.1155/2020/2156582739109632775406 Search in Google Scholar

Butters D., Whitehouse M. (2021). COVID-19 and nutriceutical therapies, especially using zinc to supplement antimicrobials. Inflammopharmacology, 29: 101–105. Search in Google Scholar

Carballo D.E., Giráldez F.J., Andrés S., Caro I., Fernández-Gutiérrez M., Mateo J. (2019). Effects of dietary astaxanthin supplementation on the oxidative stability of meat from suckling lambs fed a commercial milk-replacer containing butylated hydroxytoluene. Meat Sci., 156: 68–74. Search in Google Scholar

Chatterjee M., Roy K., Janarthan M., Das S., Chatterjee M. (2012). Biological activity of carotenoids: its implications in cancer risk and prevention. Curr. Pharm. Biotechnol., 13: 180– 190. Search in Google Scholar

Chien Y.-H., Shiau W.-C. (2005). The effects of dietary supplementation of algae and synthetic astaxanthin on body astaxanthin, survival, growth, and low dissolved oxygen stress resistance of kuruma prawn, Marsupenaeus japonicus Bate. J. Exp. Mar. Biol. Ecol., 318: 201–211. Search in Google Scholar

Chien Y.-H., Pan C.-H., Hunter B. (2003). The resistance to physical stresses by Penaeus monodon juveniles fed diets supplemented with astaxanthin. Aquaculture, 216: 177–191. Search in Google Scholar

Chowdhury A., Sajid M., Jahan N., Adelusi T.I., Maitra P., Yin G., Wu X., Gao Y., Wang S. (2021). A secondary approach with conventional medicines and supplements to recuperate current COVID-19 status. Biomed. Pharmacother., 142: 111956. Search in Google Scholar

Coral-Hinostroza G.N., Ytrestøyl T., Ruyter B., Bjerkeng B. (2004). Plasma appearance of unesterified astaxanthin geometrical E/Z and optical R/S isomers in men given single doses of a mixture of optical 3 and 3′ R/S isomers of astaxanthin fatty acyl diesters. Comp. Biochem. Physiol. Part C: Toxicol. Pharmacol., 139: 99–110. Search in Google Scholar

Daly B., Swingle J.S., Eckert G.L. (2013). Dietary astaxanthin supplementation for hatchery-cultured red king crab, Paralithodes camtschaticus, juveniles. Aquac. Nutr., 19: 312–320. Search in Google Scholar

Dawood M.A.O. (2021). Nutritional immunity of fish intestines: important insights for sustainable aquaculture. Rev. Aquac., 13: 642–663. Search in Google Scholar

Dawood M.A.O., Basuini M.F.E., Yilmaz S., Abdel-Latif H.M.R., Kari Z.A., Abdul Razab M.K., Ahmed H.A., Alagawany M., Gewaily M.S. (2021 a). Selenium nanoparticles as a natural antioxidant and metabolic regulator in aquaculture: A review. Antioxidants, 10.10.3390/antiox10091364847132134572996 Search in Google Scholar

Dawood M.A.O., El Basuini M.F., Zaineldin A.I., Yilmaz S., Hasan M.T., Ahmadifar E., El Asely A.M., Abdel-Latif H.M.R., Alagawany M., Abu-Elala N.M., Van Doan H., Sewilam H. (2021 b). Antiparasitic and antibacterial functionality of essential oils: An alternative approach for sustainable aquaculture. Pathogens, 10.10.3390/pathogens10020185791441733572193 Search in Google Scholar

Devine D.A., Hancock R.E.W. (2002). Cationic peptides: distribution and mechanisms of resistance. Curr. Pharm. Des., 8: 703–714. Search in Google Scholar

Domınguez-Bocanegra A.R., Legarreta I.G., Jeronimo F.M., Campocosio A.T. (2004). Influence of environmental and nutritional factors in the production of astaxanthin from Haematococcus pluvialis. Bioresour. Technol., 92: 209–214. Search in Google Scholar

Donoso A., González-Durán J., Muñoz A.A., González P.A., Agurto-Muñoz C. (2021). Therapeutic uses of natural astaxanthin: An evidence-based review focused on human clinical trials. Pharmacol. Res., 166: 105479. Search in Google Scholar

Dufossé L., Galaup P., Yaron A., Arad S.M., Blanc P., Chidambara Murthy K.N., Ravishankar G.A. (2005). Microorganisms and microalgae as sources of pigments for food use: a scientific oddity or an industrial reality? Trends Food Sci. Technol., 16: 389–406. Search in Google Scholar

Ekpe L., Inaku K., Ekpe V. (2018). Antioxidant effects of astaxanthin in various diseases: a review. J. Mol. Pathophysiol., 7: 1–6. Search in Google Scholar

El Basuini M.F., Shahin S.A., Teiba I.I., Zaki M.A.A., El-Hais A.M., Sewilam H., Almeer R., Abdelkhalek N., Dawood M.A.O. (2021). The influence of dietary coenzyme Q10 and vitamin C on the growth rate, immunity, oxidative-related genes, and the resistance against Streptococcus agalactiae of Nile tilapia (Oreochromis niloticus). Aquaculture, 531: 735862– 735862. Search in Google Scholar

Fakhri S., Nouri Z., Moradi S.Z., Farzaei M.H. (2020) Astaxanthin, COVID-19 and immune response: Focus on oxidative stress, apoptosis and autophagy. Phytother. Res., 34: 2790–2792.10.1002/ptr.6797743686632754955 Search in Google Scholar

Feng Z., Yang J., Xu M., Lin R., Yang H., Lai L., Wang Y., Wahner-Roedler D.L., Zhou X., Shin K.-M., Salinas M., Mallory M.J., Tang C., Patchett D.C., Bauer B.A., Cui S. (2021). Dietary supplements and herbal medicine for COVID-19: A systematic review of randomized control trials. Clin. Nutr. ESPEN., 44: 50–60. Search in Google Scholar

Ferlay J., Ervik M., Lam F., Colombet M., Mery L., Piñeros M., Znaor A., Soerjomataram I., Bray F. (2020). Global cancer observatory: cancer today. International Agency for Research on Cancer, Lyon. Search in Google Scholar

Fitton J.H., Stringer D.N., Karpiniec S.S. (2015). Therapies from Fucoidan: An update. Mar. Drugs., 13.10.3390/md13095920458436126389927 Search in Google Scholar

Flaman Z., Pellechia-Clarke S., Bailey B., McGuigan M. (2001). Unintentional exposure of young children to camphor and eucalyptus oils. Paediatr. Child Health., 6: 80–83. Search in Google Scholar

Flores M., Díaz F., Medina R., Re A.D., Licea A. (2007). Physiological, metabolic and haematological responses in white shrimp Litopenaeus vannamei (Boone) juveniles fed diets supplemented with astaxanthin acclimated to low-salinity water. Aquac. Res., 38: 740–747. Search in Google Scholar

Foote C.J., Brown G.S., Hawryshyn C.W. (2004) Female colour and male choice in sockeye salmon: implications for the phenotypic convergence of anadromous and nonanadromous morphs. Anim. Behav., 67: 69–83.10.1016/j.anbehav.2003.02.004 Search in Google Scholar

Franceschelli S., Pesce M., Ferrone A., Lutiis M.A.D., Patruno A., Grilli A., Felaco M., Speranza L. (2014). Astaxanthin treatment confers protection against oxidative stress in U937 cells stimulated with lipopolysaccharide reducing O2 production. PLoS One, 9: 88359–88359. Search in Google Scholar

Galasso C., Corinaldesi C., Sansone C. (2017). Carotenoids from marine organisms: Biological functions and industrial applications. Antioxidants, 6: 96–96. Search in Google Scholar

Gao S., Li R., Heng N., Chen Y., Wang L., Li Z., Guo Y., Sheng X., Wang X., Xing K., Ni H., Qi X. (2020). Effects of dietary supplementation of natural astaxanthin from Haematococcus pluvialis on antioxidant capacity, lipid metabolism, and accumulation in the egg yolk of laying hens. Poultry Sci., 99: 5874–5882. Search in Google Scholar

Gao S., Heng N., Liu F., Guo Y., Chen Y., Wang L., Ni H., Sheng X., Wang X., Xing K., Xiao L., Qi X. (2021). Natural astaxanthin enhanced antioxidant capacity and improved semen quality through the MAPK/Nrf2 pathway in aging layer breeder roosters. J. Anim. Sci. Biotechnol., 12: 112. Search in Google Scholar

Ge X.-X., Xing M.-Y., Yu L.-F., Shen P. (2013). Carotenoid intake and esophageal cancer risk: a meta-analysis. Asian Pac. J. Cancer Prev., 14: 1911–1918. Search in Google Scholar

Gewaily M.S., Abdo S.E., Moustafa E.M., AbdEl-kader M.F., Abd El-Razek I.M., El-Sharnouby M., Alkafafy M., Raza S.H., El Basuini M.F., Van Doan H., Dawood M.A.O. (2021). Dietary synbiotics can help relieve the impacts of deltamethrin toxicity of Nile tilapia reared at low temperatures. Animals, 11.10.3390/ani11061790823258134203916 Search in Google Scholar

Goto S., Kogure K., Abe K., Kimata Y., Kitahama K., Yamashita E., Terada H. (2001). Efficient radical trapping at the surface and inside the phospholipid membrane is responsible for highly potent antiperoxidative activity of the carotenoid astaxanthin. Biochim. Biophys. Acta Biomembr., 1512: 251–258. Search in Google Scholar

Haines D.D., Varga B., Bak I., Juhasz B., Mahmoud F.F., Kalantari H., Gesztelyi R., Lekli I., Czompa A., Tosaki A. (2011). Summative interaction between astaxanthin, Ginkgo biloba extract (EGb761) and vitamin C in suppression of respiratory inflammation: a comparison with ibuprofen. Phytother. Res., 25: 128–136. Search in Google Scholar

Hamulka J., Jeruszka-Bielak M., Górnicka M., Drywień M.E., Zielinska-Pukos M.A. (2021) Dietary supplements during COVID-19 outbreak. Results of Google trends analysis supported by PLifeCOVID-19 online studies. Nutrients, 13. Search in Google Scholar

Hansen Ø.J., Puvanendran V., Bangera R. (2016). Broodstock diet with water and astaxanthin improve condition and egg output of brood fish and larval survival in Atlantic cod, Gadus morhua L. Aquac. Res., 47: 819–829. Search in Google Scholar

Higuera-Ciapara I., Felix-Valenzuela L., Goycoolea F.M. (2006). Astaxanthin: a review of its chemistry and applications. Crit. Rev. Food Sci. Nutr., 46: 185–196. Search in Google Scholar

Hormozi M., Ghoreishi S., Baharvand P. (2019). Astaxanthin induces apoptosis and increases activity of antioxidant enzymes in LS-180 cells. Artif. Cells Nanomed. Biotechnol., 47: 891– 895. Search in Google Scholar

Hosseindoust A., Oh S.M., Ko H.S., Jeon S.M., Ha S.H., Jang A., Son J.S., Kim G.Y., Kang H.K., Kim J.S. (2020). Muscle antioxidant activity and meat quality are altered by supplementation of astaxanthin in broilers exposed to high temperature. Antioxidants (Basel, Switzerland) 9.10.3390/antiox9111032769074933113990 Search in Google Scholar

Iwamoto T., Hosoda K., Hirano R., Kurata H., Matsumoto A., Miki W., Kamiyama M., Itakura H., Yamamoto S., Kondo K. (2000) Inhibition of low-density lipoprotein oxidation by astaxanthin. J. Atheroscler. Thromb., 7: 216–222. Search in Google Scholar

Jyonouchi H., Sun S., Gross M. (1995). Effect of carotenoids on in vitro immunoglobulin production by human peripheral blood mononuclear cells: Astaxanthin, a carotenoid without vitamin a activity, enhances in vitro immunoglobulin production in response to a t-dependent stimulant and antigen. Nutr. Cancer., 171–183.10.1080/016355895095143737644386 Search in Google Scholar

Kalinowski C.T., Robaina L.E., Fernández-Palacios H., Schuchardt D., Izquierdo M.S. (2005). Effect of different carotenoid sources and their dietary levels on red porgy (Pagrus pagrus) growth and skin colour. Aquaculture, 244: 223–231. Search in Google Scholar

Karppi R., Nyyssönen K., Olsson V., Salonen (2007) Effects of astaxanthin supplementation on lipid peroxidation. Int. J. Vitam. Nutr. Res., 77: 3–11. Search in Google Scholar

Kin Ting Kam R., Deng Y., Chen Y., Zhao H. (2012). Retinoic acid synthesis and functions in early embryonic development. Cell Biosci., 2: 11–11. Search in Google Scholar

Kiron V. (2012). Fish immune system and its nutritional modulation for preventive health care. Anim. Feed Sci. Technol., 173: 111–133. Search in Google Scholar

Kumar S., Singh S.V. (2019). Inhibition of NF-κB signaling pathway by astaxanthin supplementation for prevention of heat stress–induced inflammatory changes and apoptosis in Karan Fries heifers. Trop. Anim. Health Prod., 51: 1125–1134. Search in Google Scholar

Kusdiyantini E., Gaudin P., Goma G., Blanc P.J. (1998). Growth kinetics and astaxanthin production of Phaffia rhodozyma on glycerol as a carbon source during batch fermentation. Biotechnol. Lett., 20: 929–934. Search in Google Scholar

Lauver D.A., Lockwood S.F., Lucchesi B.R. (2005). Disodium disuccinate astaxanthin (Cardax) attenuates complement activation and reduces myocardial injury following ischemia/reperfusion. J. Pharmacol. Exp., 314: 686–692. Search in Google Scholar

Liang J., Tian y.-X., Yang F., Zhang J.-P., Skibsted L.H. (2009). Antioxidant synergism between carotenoids in membranes. Astaxanthin as a radical transfer bridge. Food Chem., 115: 1437–1442. Search in Google Scholar

Lim K.C., Yusoff F.M., Shariff M., Kamarudin M.S. (2018). Astaxanthin as feed supplement in aquatic animals. Rev. Aquac., 10: 738–773. Search in Google Scholar

Liu F., Shi H.-Z., Guo Q.-S., Yu Y.-B., Wang A.-M., Lv F., Shen W.-B. (2016 a). Effects of astaxanthin and emodin on the growth, stress resistance and disease resistance of yellow catfish (Pelteobagrus fulvidraco). Fish Shellfish Immunol., 51: 125–135.10.1016/j.fsi.2016.02.02026899124 Search in Google Scholar

Liu X., Song M., Gao Z., Cai X., Dixon W., Chen X., Cao Y., Xiao H. (2016 b) Stereoisomers of astaxanthin inhibit human colon cancer cell growth by inducing G2/M cell cycle arrest and apoptosis. J. Agric. Food Chem., 64: 7750–7759.10.1021/acs.jafc.6b0363627726394 Search in Google Scholar

Lorenz R.T., Cysewski G.R. (2000). Commercial potential for Haematococcus microalgae as a natural source of astaxanthin. Trends Biotechnol., 18: 160–167. Search in Google Scholar

Lu Q., Li H., Zou Y., Liu H., Yang L. (2021). Astaxanthin as a microalgal metabolite for aquaculture: A review on the synthetic mechanisms, production techniques, and practical application. Algal Res., 54: 102178. Search in Google Scholar

Magnadottir B. (2010). Immunological control of fish diseases. Mar. Biotechnol., 12: 361–379. Search in Google Scholar

Manimala M.R., Murugesan R. (2014). In vitro antioxidant and antimicrobial activity of carotenoid pigment extracted from Sporobolomyces sp. isolated from natural source. J. Appl. Nat. Sci., 6: 649–653. Search in Google Scholar

McGuire S. (2016). World cancer report 2014. Geneva, Switzerland: World Health Organization, international agency for research on cancer, WHO Press, 2015. Adv. Nutr., 7: 418–419. Search in Google Scholar

Miyawaki Y., Uchida H., Yamashita O., Sato M.-A., Morito Y., Tanabe H.C., Sadato N., Kamitani Y. (2008). Visual image reconstruction from human brain activity using a combination of multiscale local image decoders. Neuron, 60: 915–929. Search in Google Scholar

Mohammadi G., Rafiee G., El Basuini M.F., Abdel-Latif H.M.R., Dawood M.A.O. (2020 a). The growth performance, antioxidant capacity, immunological responses, and the resistance against Aeromonas hydrophila in Nile tilapia (Oreochromis niloticus) fed Pistacia vera hulls derived polysaccharide. Fish Shellfish Immunol., 106: 36–43.10.1016/j.fsi.2020.07.06432739534 Search in Google Scholar

Mohammadi G., Rashidian G., Hoseinifar S.H., Naserabad S.S., Doan H.V. (2020 b). Ginger (Zingiber officinale) extract affects growth performance, body composition, haematology, serum and mucosal immune parameters in common carp (Cyprinus carpio). Fish Shellfish Immunol., 99: 267–273.10.1016/j.fsi.2020.01.03231981777 Search in Google Scholar

Nagao A. (2009). Absorption and function of dietary carotenoids. Forum Nutr., 61: 55–63. Search in Google Scholar

Naguib Y.M.A. (2000). Antioxidant activities of astaxanthin and related carotenoids. J. Agric. Food Chem., 48: 1150–1154. Search in Google Scholar

Ng Q.X., De Deyn M.L.Z.Q., Loke W., Foo N.X., Chan H.W., Yeo W.S. (2021). Effects of astaxanthin supplementation on skin health: a systematic review of clinical studies. J. Diet. Suppl., 18: 169–182. Search in Google Scholar

Nie X.-P., Zie J., Häubner N., Tallmark B., Snoeijs P. (2011). Why Baltic herring and sprat are weak conduits for astaxanthin from zooplankton to piscivorous fish. Limnol. Oceanogr., 56: 1155–1167. Search in Google Scholar

Nishigaki I., Rajendran P., Venugopal R., Ekambaram G., Sakthisekaran D., Nishigaki Y. (2010). Cytoprotective role of astaxanthin against glycated protein/iron chelate-induced toxicity in human umbilical vein endothelial cells. Phytother. Res., 24: 54–59. Search in Google Scholar

Niu J., Tian L.-X., Liu Y.-J., Yang H.-J., Ye C.-X., Gao W., Mai K.-S. (2009). Effect of dietary astaxanthin on growth, survival, and stress tolerance of postlarval shrimp, Litopenaeus vannamei. J. World Aquac. Soc., 40: 795–802. Search in Google Scholar

Niu J., Li C.-H., Liu Y.-J., Tian L.-X., Chen X., Huang Z., Lin H.-Z. (2012). Dietary values of astaxanthin and canthaxanthin in Penaeus monodon in the presence and absence of cholesterol supplementation: effect on growth, nutrient digestibility and tissue carotenoid composition. Br. J. Nutr., 108: 80–91. Search in Google Scholar

Niu J., Wen H., Li C.-H., Liu Y.-J., Tian L.-X., Chen X., Huang Z., Lin H.-Z. (2014). Comparison effect of dietary astaxanthin and β-carotene in the presence and absence of cholesterol supplementation on growth performance, antioxidant capacity and gene expression of Penaeus monodon under normoxia and hypoxia condition. Aquaculture, 422–423: 8–17. Search in Google Scholar

Nordeide J.T., Rudolfsen G., Egeland E.S. (2006). Ornaments or offspring? Female sticklebacks (Gasterosteus aculeatus L.) trade off carotenoids between spines and eggs. J. Evol. Biol., 19: 431–439. Search in Google Scholar

Okada Y., Ishikura M., Maoka T. (2009). Bioavailability of astaxanthin in Haematococcus algal extract: the effects of timing of diet and smoking habits. Biosci. Biotechnol. Biochem., 73: 1928–1932. Search in Google Scholar

Olson J.A. (1994). Absorption, transport and metabolism of carotenoids in humans. Pure Appl. Chem., 66: 1011–1016. Search in Google Scholar

Oslan S.N., Shoparwe N.F., Yusoff A.H., Rahim A.A., Chang C.S., Tan J.S., Oslan S.N., Arumugam K., Ariff A.B., Sulaiman A.Z., Mohamed M.S. (2021). A review on Haematococcus pluvialis bioprocess optimization of green and red stage culture conditions for the production of natural astaxanthin. Biomolecules, 11.10.3390/biom11020256791656433578851 Search in Google Scholar

Østerlie M., Bjerkeng B., Liaaen-Jensen S. (2000). Plasma appearance and distribution of astaxanthin E/Z and R/S isomers in plasma lipoproteins of men after single dose administration of astaxanthin. J. Nutr. Biochem., 11: 482–490. Search in Google Scholar

Paibulkichakul C., Piyatiratitivorakul S., Sorgeloos P., Menasveta P. (2008). Improved maturation of pond-reared, black tiger shrimp (Penaeus monodon) using fish oil and astaxanthin feed supplements. Aquaculture, 282: 83–89. Search in Google Scholar

Palma J., Andrade J.P., Bureau D.P. (2017). The impact of dietary supplementation with astaxanthin on egg quality and growth of long snout seahorse (Hippocampus guttulatus) juveniles. Aquac. Nutr., 23.10.1111/anu.12394 Search in Google Scholar

Palozza P., Torelli C., Boninsegna A., Simone R., Catalano A., Mele M.C., Picci N. (2009). Growth-inhibitory effects of the astaxanthin-rich alga Haematococcus pluvialis in human colon cancer cells. Cancer Lett., 283: 108–117. Search in Google Scholar

Pan C.-H., Chien Y.-H., Hunter B. (2003). The resistance to ammonia stress of Penaeus monodon Fabricius juvenile fed diets supplemented with astaxanthin. J. Exp. Mar. Biol. Ecol., 297: 107–118. Search in Google Scholar

Parisi V., Tedeschi M., Gallinaro G., Varano M., Saviano S., Piermarocchi S., Group C.S. (2008). Carotenoids and antioxidants in age-related maculopathy Italian study: multifocal electroretinogram modifications after 1 year. Ophthalmology, 115: 324–333. Search in Google Scholar

Park J.S., Chyun J.H., Kim Y.K., Line L.L., Chew B.P. (2010). Astaxanthin decreased oxidative stress and inflammation and enhanced immune response in humans. Nutr. Metab., 7: 1–10. Search in Google Scholar

Pham M.A., Byun H.-G., Kim K.-D., Lee S.-M. (2014). Effects of dietary carotenoid source and level on growth, skin pigmentation, antioxidant activity and chemical composition of juvenile olive flounder Paralichthys olivaceus. Aquaculture, 431: 65–72. Search in Google Scholar

Radice R.P., Limongi A.R., Viviano E., Padula M.C., Martelli G., Bermano G. (2021). Effects of astaxanthin in animal models of obesity-associated diseases: A systematic review and meta-analysis. Free Radic. Biol. Med., 171: 156–168. Search in Google Scholar

Rao A.R., Sindhuja H.N., Dharmesh S.M., Sankar K.U., Sarada R., Ravishankar G.A. (2013). Effective inhibition of skin cancer, tyrosinase, and antioxidative properties by astaxanthin and astaxanthin esters from the green alga Haematococcus pluvialis. J. Agric. Food Chem., 61: 3842–3851. Search in Google Scholar

Rather A.H., Singh S., Choudhary S. (2021). Antibacterial activity of Haematococcus pluvialis crude astaxanthin extract. J. Drug Deliv. Ther., 11: 28–30. Search in Google Scholar

Raza S.H.A., Naqvi S.R.Z., Abdelnour S.A., Schreurs N., Mohammedsaleh Z.M., Khan I., Shater A.F., Abd El-Hack M.E., Khafaga A.F., Quan G., Khan R., Wang S., Cheng G., Zan L. (2021). Beneficial effects and health benefits of astaxanthin molecules on animal production: A review. Res. Vet. Sci., 138: 69–78. Search in Google Scholar

Rüfer C.E., Moeseneder J., Briviba K., Rechkemmer G., Bub A. (2008). Bioavailability of astaxanthin stereoisomers from wild (Oncorhynchus spp.) and aquacultured (Salmo salar) salmon in healthy men: a randomised, double-blind study. Br. J. Nutr., 99: 1048–1054. Search in Google Scholar

Sawanboonchun J., Roy W.J., Robertson D.A., Bell J.G. (2008). The impact of dietary supplementation with astaxanthin on egg quality in Atlantic cod broodstock (Gadus morhua, L.). Aquaculture, 283: 97–101. Search in Google Scholar

Shekarabi S.P.H., Omidi A.H., Dawood M.A., Adel M., Avazeh A., Heidari F. (2020). Effect of black mulberry (Morus nigra) powder on growth performance, biochemical parameters, blood carotenoid concentration, and fillet color of rainbow trout. Ann. Anim. Sci., 20: 125– 136. Search in Google Scholar

Shevchenko L.V., Nedosekov V.V., Davydovych V.A., Rozhdestveskaya T.N., Drozdova E.I. (2021). Impact of lycopene and astaxanthin on hematological and immunological parameters of laying hens. IOP Conference Series: Earth and Environmental Science, 839: 042004. Search in Google Scholar

Spiller G.A., Dewell A. (2003). Safety of an astaxanthin-rich Haematococcus pluvialis algal extract: a randomized clinical trial. J. Med. Food., 6: 51–56. Search in Google Scholar

Stachowiak B., Szulc P. (2021). Astaxanthin for the food industry. Molecules, 26.10.3390/molecules26092666812544934063189 Search in Google Scholar

Suganya V., Asheeba S.T. (2015). Antioxidant and antimicrobial activity of astaxanthin isolated from three varieties of crabs. Int. J. Recent Sci. Res., 6: 6753–6758. Search in Google Scholar

Supamattaya K., Kiriratnikom S., Boonyaratpalin M., Borowitzka L. (2005). Effect of a Dunaliella extract on growth performance, health condition, immune response and disease resistance in black tiger shrimp (Penaeus monodon). Aquaculture, 248: 207–216. Search in Google Scholar

Tizkar B., Kazemi R., Alipour A., Seidavi A., Naseralavi G., Ponce-Palafox J.T. (2015). Effects of dietary supplementation with astaxanthin and β-carotene on the semen quality of goldfish (Carassius auratus). Theriogenology, 84: 1111–1117. Search in Google Scholar

Uchiyama K., Naito Y., Hasegawa G., Nakamura N., Takahashi J., Yoshikawa T. (2002). Astaxanthin protects β-cells against glucose toxicity in diabetic db/db mice. Redox Rep., 7: 290–293. Search in Google Scholar

Udayan A., Arumugam M., Pandey A. (2017). Nutraceuticals from algae and cyanobacteria. Elsevier, pp. 65–89.10.1016/B978-0-444-63784-0.00004-7 Search in Google Scholar

Ushakumari U.N., Ramanujan R. (2013). Isolation of astaxanthin from marine yeast and study of its pharmacological activity. Int. Curr. Pharm., 2: 67–69. Search in Google Scholar

Wade N.M., Cheers S., Bourne N., Irvin S., Blyth D., Glencross B.D. (2017). Dietary astaxanthin levels affect colour, growth, carotenoid digestibility and the accumulation of specific carotenoid esters in the Giant Tiger Shrimp, Penaeus monodon. Aquac. Res., 48: 395– 406. Search in Google Scholar

Wang W., Ishikawa M., Koshio S., Yokoyama S., Dawood M.A.O., Zhang Y. (2018). Effects of dietary astaxanthin supplementation on survival, growth and stress resistance in larval and post-larval kuruma shrimp, Marsupenaeus japonicus. Aquac. Res., 49: 2225–2232. Search in Google Scholar

Wang W., Ishikawa M., Koshio S., Yokoyama S., Dawood M.A.O., Hossain M.S., Moss A.S. (2019 a). Effects of dietary astaxanthin and vitamin E and their interactions on the growth performance, pigmentation, digestive enzyme activity of kuruma shrimp (Marsupenaeus japonicus). Aquac. Res., 50: 1186–1197.10.1111/are.13993 Search in Google Scholar

Wang W., Ishikawa M., Koshio S., Yokoyama S., Dawood M.A.O., Hossain M.S., Zaineldin A.I. (2019 b). Interactive effects of dietary astaxanthin and cholesterol on the growth, pigmentation, fatty acid analysis, immune response and stress resistance of kuruma shrimp (Marsupenaeus japonicus). Aquac. Nutr., 25: 946–958.10.1111/anu.12913 Search in Google Scholar

Wang X., Willén R., Wadström T. (2000). Astaxanthin-rich algal meal and vitamin C inhibit Helicobacter pylori infection in BALB/cA mice. Antimicrob. Agents Chemother., 44: 2452– 2457. Search in Google Scholar

Weinberg R. (2013). The biology of cancer. Garland Science.10.1201/9780429258794 Search in Google Scholar

Woolfe J.A. (1992). Sweet potato: an untapped food resource. Cambridge University Press. Search in Google Scholar

Yi X., Xu W., Zhou H., Zhang Y., Luo Y., Zhang W., Mai K. (2014). Effects of dietary astaxanthin and xanthophylls on the growth and skin pigmentation of large yellow croaker Larimichthys croceus. Aquaculture, 433: 377–383. Search in Google Scholar

Zenteno-Savıń T., Clayton-Hernández E., Elsner R. (2002). Diving seals: are they a model for coping with oxidative stress? Comp. Biochem. Physiol. Part C: Toxicol. Pharmacol., 133: 527– 536. Search in Google Scholar

Zhang J., Liu Y.J., Tian L.X., Yang H.J., Liang G.Y., Yue Y.R., Xu D.H. (2013). Effects of dietary astaxanthin on growth, antioxidant capacity and gene expression in Pacific white shrimp Litopenaeus vannamei. Aquac. Nutr., 19: 917–927. Search in Google Scholar

Zou S., Tong Q., Liu B., Huang W., Tian Y., Fu X. (2020). Targeting STAT3 in cancer immunotherapy. Mol. Cancer, 19: 1–19. Search in Google Scholar

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Life Sciences, Biotechnology, Zoology, Medicine, Veterinary Medicine