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Papers

Antioxidant capacity of banana peel and its modulation of Nrf2-ARE associated gene expression in broiler chickens

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Pages 1394-1403 | Received 19 Jun 2019, Accepted 11 Sep 2019, Published online: 03 Oct 2019

References

  • Aboul-Enein AM, Salama ZA, Gaafar AA, Aly HF, Faten A, Ahmed H. 2016. Identification of phenolic compounds from banana peel (Musa paradaisica L.) as antioxidant and antimicrobial agents. J Chem Pharm Res. 8:46–55.
  • Androes GM, Singleton MF, Biggins J, Calvin M. 1963. Photo-induced electron paramagnetic resonance in mutant photosynthetic species lacking carotenoids or chlorophyll. Biochim Biophys Acta. 66:180–187.
  • Babatunde G, Machin D, Nyvold S, editors. 1992. Proceedings of the FAO Expert Consultation held in CIAT, Cali, Colombia; Jan 21–25; Roma, Italy.
  • Blois MS. 1958. Antioxidant Determinations by the use of a stable free radical. Nature. 181:1199–1200.
  • Chow JM, Shen SC, Huan SK, Lin HY, Chen YC. 2005. Quercetin, but not rutin and quercitrin, prevention of H2O2-induced apoptosis via anti-oxidant activity and heme oxygenase 1 gene expression in macrophages. Biochem Pharmacol. 69:1839–1851.
  • Emaga TH, Andrianaivo RH, Wathelet B, Tchango JT, Paquot M. 2007. Effects of the stage of maturation and varieties on the chemical composition of banana and plantain peels. Food Chem. 103:590–600.
  • Estevez I. 2007. Density allowances for broilers: where to set the limits? Poult Sci. 86:1265–1272.
  • Fuentes-Zaragoza E, Sánchez-Zapata E, Sendra E, Sayas E, Navarro C, Fernández-López J, Pérez-Alvarez JA. 2011. Resistant starch as prebiotic: a review. Starch. 63:406–415.
  • Ghazalah A, Ali A. 2008. Rosemary leaves as a dietary supplement for growth in broiler chickens. Int J Poult Sci. 7:234–239.
  • Gozzelino R, Jeney V, Soares MP. 2010. Mechanisms of cell protection by heme oxygenase-1. Annu Rev Pharmacol Toxicol. 50:323–354.
  • Heckert R, Estevez I, Russek-Cohen E, Pettit-Riley R. 2002. Effects of density and perch availability on the immune status of broilers. Poult Sci. 81:451–457.
  • Hori R, Kashiba M, Toma T, Yachie A, Goda N, Makino N, Soejima A, Nagasawa T, Nakabayashi K, Suematsu M. 2002. Gene transfection of H25A mutant heme oxygenase-1 protects cells against hydroperoxide-induced cytotoxicity. J Biol Chem. 277:10712–10718.
  • Huang CM, Lee TT. 2018. Immunomodulatory effects of phytogenics in chickens and pigs - A review. Asian-Australas J Anim Sci. 31:617–627.
  • Huang C, Jiao H, Song Z, Zhao J, Wang X, Lin H. 2015. Heat stress impairs mitochondria functions and induces oxidative injury in broiler chickens. J Anim Sci. 93:2144–2153.
  • Jiang Z, Jiang S, Lin Y, Xi P, Yu D, Wu T. 2007. Effects of soybean isoflavone on growth performance, meat quality, and antioxidation in male broilers. Poult Sci. 86:1356–1362.
  • Kanellos P, Kaliora A, Gioxari A, Christopoulou G, Kalogeropoulos N, Karathanos V. 2013. Absorption and bioavailability of antioxidant phytochemicals and increase of serum oxidation resistance in healthy subjects following supplementation with raisins. Plant Foods Hum Nutr. 68:411–415.
  • Karre L, Lopez K, Getty KJ. 2013. Natural antioxidants in meat and poultry products. Meat Sci. 94:220–227.
  • Lara L, Rostagno M. 2013. Impact of heat stress on poultry production. Animals (Basel). 3:356–369.
  • Lee MT, Lin WC, Lee TT. 2019. Potential crosstalk of oxidative stress and immune response in poultry through phytochemicals – A review. Asian-Australas J Anim Sci. 32:309–319.
  • Lee MT, Lin WC, Yu B, Lee TT. 2017. Antioxidant capacity of phytochemicals and their potential effects on oxidative status in animals – A review. Asian-Australas J Anim Sci. 30:299–308.
  • Lichovnikova M, Kalhotka L, Adam V, Klejdus B, Anderle V. 2015. The effects of red grape pomace inclusion in grower diet on amino acid digestibility, intestinal microflora, and sera and liver antioxidant activity in broilers. Turk J Vet Anim Sci. 39:406–412.
  • Lin CC, Lin LJ, Wang SD, Chiang CJ, Chao YP, Lin J, Kao ST. 2014. The effect of serine protease inhibitors on airway inflammation in a chronic allergen-induced asthma mouse model. Mediators Inflamm. 2014:1.
  • Lin WC, Lee MT, Chang SC, Chang YL, Shih CH, Yu B, Lee TT. 2017. Effects of mulberry leaves on production performance and the potential modulation of antioxidative status in laying hens. Poult Sci. 96:1191–1203.
  • Lotito SB, Frei B. 2004. The increase in human plasma antioxidant capacity after apple consumption is due to the metabolic effect of fructose on urate, not apple-derived antioxidant flavonoids. Free Radic Biol Med. 37:251–258.
  • Ma Q. 2013. Role of Nrf2 in oxidative stress and toxicity. Annu Rev Pharmacol Toxicol. 53:401–426.
  • Mokbel MS, Hashinaga F. 2005. Antibacterial and antioxidant activities of banana (Musa, AAA cv. Cavendish) fruits peel. Am J Biochem Biotechnol. 1:125–131.
  • Morais DR, Rotta EM, Sargi SC, Schmidt EM, Bonafe EG, Eberlin MN, Sawaya A, Visentainer JV. 2015. Antioxidant activity, phenolics and UPLC–ESI(–)–MS of extracts from different tropical fruits parts and processed peels. Food Res Int. 77:392–399.
  • National Research Council. 1994. Nutrient requirements of poultry. 9th rev. ed. Washington D. C: National Academy Press.
  • Pereira A, Maraschin M. 2015. Banana (Musa spp) from peel to pulp: ethnopharmacology, source of bioactive compounds and its relevance for human health. J Ethnopharmacol. 160:149–163.
  • Ramli S, Alkarkhi AF, Shin Yong Y, Min-Tze L, Easa AM. 2009. Effect of banana pulp and peel flour on physicochemical properties and in vitro starch digestibility of yellow alkaline noodles. Int J Food Sci Nutr. 60:326–340.
  • Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C. 1999. Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free Radic Biol Med. 26:1231–1237.
  • Rebello LPG, Ramos AM, Pertuzatti PB, Barcia MT, Castillo-Muñoz N, Hermosín-Gutiérrez I. 2014. Flour of banana (Musa AAA) peel as a source of antioxidant phenolic compounds. Food Res Int. 55:397–403.
  • Shi X, Dalal N. 1991. Flavoenzymes reduce vanadium(V) and molecular oxygen and generate hydroxyl radical. Arch Biochem Biophys. 289:355–361.
  • Someya S, Yoshiki Y, Okubo K. 2002. Antioxidant compounds from bananas (Musa Cavendish). Food Chem. 79:351–354.
  • Surai PF. 2016. Antioxidant systems in poultry biology: superoxide dismutase. J Anim Res Nutr. 1:8.
  • Teng PY, Chang CL, Huang CM, Chang SC, Lee TT. 2017. Effects of solid-state fermented wheat bran by Bacillus amyloliquefaciens and Saccharomyces cerevisiae on growth performance and intestinal microbiota in broiler chickens. Ital J Anim Sci. 16:552–562.
  • van der Beek CM, Dejong CH, Troost FJ, Masclee AA, Lenaerts K. 2017. Role of short-chain fatty acids in colonic inflammation, carcinogenesis, and mucosal protection and healing. Nutr Rev. 75:286–305.
  • Vu HT, Scarlett CJ, Vuong QV. 2018. Phenolic compounds within banana peel and their potential uses: a review. J Func Food. 40:238–248.
  • Yuris A, Siow LF. 2014. A comparative study of the antioxidant properties of three pineapple (Ananas comosus L.) varieties. J Food Stud. 3:40–56.
  • Zhang H, Tsao R. 2016. Dietary polyphenols, oxidative stress and antioxidant and anti-inflammatory effects. Curr Opin Food Sci. 8:33–42.
  • Zhao M, Zhu D, Sun-Waterhouse D, Su G, Lin L, Wang X, Dong Y. 2014. In vitro and in vivo studies on adlay-derived seed extracts: phenolic profiles, antioxidant activities, serum uric acid suppression, and xanthine oxidase inhibitory effects. J Agric Food Chem. 62:7771–7778.