1,823
Views
3
CrossRef citations to date
0
Altmetric
Papers

The impact of dietary inclusion of silver nanoparticles on growth performance, intestinal morphology, caecal microflora, carcass traits and blood parameters of broiler chickens

, , , , &
Pages 967-978 | Received 22 Mar 2022, Accepted 25 May 2022, Published online: 07 Jun 2022

References

  • Abdelsalam M, Al-Homidan I, Ebeid T, Abou-Emera O, Mostafa M, El-Razik A, Shehab-El-Deen M, Abdel Ghani S, Fathi M. 2019. Effect of silver nanoparticle administration on productive performance, blood parameters, antioxidative status, and silver residues in growing rabbits under hot climate. Animals. 9(10):967.
  • Ahmadi F. 2012. Impact of different levels of silver nanoparticles (Ag-NPs) on performance, oxidative enzymes and blood parameters in broiler chicks. Pak Vet J. 32:325–328.
  • Ahmadi F, Kurdestany AH. 2010. The impact of silver nano particles on growth performance, lymphoid organs and oxidative stress indicators in broiler chicks. Glob Vet. 5(6):366–370.
  • Ahmadi F, Rahimi F. 2011. The effect of different levels of Nano Silver on performance and retention of silver in edible tissues of broilers. World Appl. Sci J. 12(1):1–4.
  • Al-Sultan SI, Abdel-Raheem SM, El-Ghareeb WR, Mohamed MH. 2016. Comparative effects of using prebiotic, probiotic, synbiotic and acidifier on growth performance, intestinal microbiology and histomorphology of broiler chicks. JPN J Vet Res. 64(Supplement 2):S187–S95.
  • Andi MA, Hashemi M, Ahmadi F. 2011. Effects of feed type with/without nanosil on cumulative performance, relative organ weight and some blood parameters of broilers. Glob Vet. 7(6):605–609.
  • Atiyeh BS, Costagliola M, Hayek SN, Dibo SA. 2007. Effect of silver on burn wound infection control and healing: review of the literature. Burns. 33(2):139–148.
  • Awaad MH, Moustafa KE, Zoulfakar SA, Elhalawany MS, Mohammed FF, El-Refay RM, Morsy EA. 2021. The role of silver nanoparticles in the reluctance of colisepticemia in broiler chickens. J Appl Poult Res. 30(2):100155.
  • Awad WA, Ghareeb K, Abdel-Raheem S, Böhm J. 2009. Effects of dietary inclusion of probiotic and synbiotic on growth performance, organ weights, and intestinal histomorphology of broiler chickens. Poult Sci. 88(1):49–56.
  • Banchroft JD, Stevens A, Turner DR. 1996. Theory and practice of histological techniques 4th ed. New York, London, San Francisco, Tokyo: Churchil Livingstone.
  • Bolandi N, Hashemi SR, Davoodi D, Dastar B, Hassani S, Ashayerizadeh A. 2021. Performance, intestinal microbial population, immune and physiological responses of broiler chickens to diet with different levels of silver nanoparticles coated on zeolite. Ital J Anim Sci. 20(1):497–504.
  • Bozzola JJ, Russell LD. 1999. Electron microscopy: principles and techniques for biologists. Boston: Jones and Bartlett. p. 670.
  • Chattopadhyay MK. 2014. Use of antibiotics as feed additives: a burning question. Front Microbiol. 5:334.
  • Chen Q, Xue Y, Sun J. 2014. Hepatotoxicity and liver injury induced by hydroxyapatite nanoparticles. J Appl Toxicol. 34(11):1256–1264.
  • Choi JE, Kim S, Ahn JH, Youn P, Kang JS, Park K, Yi J, Ryu DY. 2010. Induction of oxidative stress and apoptosis by silver nanoparticles in the liver of adult zebrafish. Aquat Toxicol. 100(2):151–159.
  • Dosoky WM, Fouda MM, Alwan AB, Abdelsalam NR, Taha AE, Ghareeb RY, El-Aassar MR, Khafaga AF. 2021. Dietary supplementation of silver-silica nanoparticles promotes histological, immunological, ultrastructural, and performance parameters of broiler chickens. Sci Rep. 11(1):1–15.
  • EFSA. 2016. Panel on Food Additives and Nutrient Sources added to Food (ANS), 2016. Scientific opinion on the re‐evaluation of silver (E 174) as food additive. EFSA J. 14(1):4364.
  • El Mahdy MM, Eldin TA, Aly HS, Mohammed FF, Shaalan MI. 2015. Evaluation of hepatotoxic and genotoxic potential of silver nanoparticles in albino rats. Exp Toxicol Pathol. 67(1):21–29.
  • Elkloub K, El Moustafa M, Ghazalah AA, Rehan AA. 2015. Effect of dietary nanosilver on broiler performance. Inter J Poultry Sci. 14(3):177–182.
  • Felehgari K, Ahmadi F, Rokhzadi A, Kurdestany AH, Khah MM. 2013. The effect of dietary silver nanoparticles and inorganic selenium supplementation on performance and digestive organs of broilers during starter period. Bull Env Pharmacol Life Sci. 2(8):104–108.
  • Fondevila M. 2010. Potential use of silver nanoparticles as an additive in animal feeding. In: David Pozo (Eds.), Silver Nanoparticles. Vol 1. Rijeka, Croatia: InTech. p. 325–334.
  • Hadrup N, Lam HR. 2014. Oral toxicity of silver ions, silver nanoparticles and colloidal silver-a review. Regul Toxicol Pharmacol. 68(1):1–7.
  • Hashemi SR. 2014. Meat quality attributes of broiler chickens fed diets supplemented with silver nanoparticles coated on zeolite. Poult Sci J. 2(2):183–193.
  • Hashemi SR, Davoodi D, Dastar B. 2017. Effect of clinoptilolite coated with silver nanoparticles on meat quality attributes of broiler chickens during frozen storage. Iran J Appl Anim Sci. 7(2):321–328.
  • Hassanpour H, Mirshokraei P, Sadrabad EK, Dehkordi AE, Layeghi S, Afzali A, Mohebbi A. 2015. In vitro effect of nanosilver on gene expression of superoxide dismutases and nitric oxide synthases in chicken Sertoli cells. Animal. 9(2):295–300.
  • Honikel, K.O. and R. Hamm. 1994. Measurement of water-holding capacity, and juiciness. In A.M. Pearson, and T.R. Dutson (Eds.), Quality attributes and their measurement in meat, poultry and fish products, Advances in Meat Research (Vol. 9, pp. 125-161). Blackie Academic, and Professional.
  • Hussain SM, Hess KL, Gearhart JM, Geiss KT, Schlager JJ. 2005. In vitro toxicity of nanoparticles in BRL 3A rat liver cells. Toxicol Vitro. 19(7):975–983.
  • Isaac RA, Johnson WC. J 1998. Elemental determination by inductively coupled plasma atomic emission spectrometry. I. In:Handbook of reference methods for Plant Analysis; Kalra, Y.P., (Eds.).; CRC Press: Boca Raton, FL, USA, pp. 165–170.
  • Kulak E, Ognik K, Stępniowska A, Sembratowicz I. 2018. The effect of administration of silver nanoparticles on silver accumulation in tissues and the immune and antioxidant status of chickens. J Anim Feed Sci. 27(1):44–54.
  • Kumar I, Bhattacharya J. 2019. Assessment of the role of silver nanoparticles in reducing poultry mortality, risk and economic benefits. Appl Nanosci. 9(6):1293–1307.
  • Kumar I, Bhattacharya J, Das BK, Lahiri P. 2020. Growth, serum biochemical, and histopathological responses of broilers administered with silver nanoparticles as a drinking water disinfectant. 3 Biotech. 10(3):1–12.
  • Leino V, Airaksinen R, Viluksela M, Vähäkangas K. 2021. Toxicity of colloidal silver products and their marketing claims in Finland. Toxicol Rep. 8:106–113.
  • Loghman A, Iraj SH, Naghi DA, Pejman M. 2012. Histopathologic and apoptotic effect of nanosilver in liver of broiler chickens. Afr. J. Biotechnol. 11(22):6207–6211.
  • Małaczewska J. 2014. Impact of noble metal nanoparticles on the immune system of animals. Medycyna Weterynaryjna. 70(4):204–208.
  • Nabinejad AR, Noaman V, Khayyam Nekouiee M. 2016. Evaluation of silver residues accumulation in tissues of Broilers treated with nanosilver using MNSR (A Clinical Trial). Arch. Razi Inst. 71(1):51–55.
  • Nadworny PL, Wang J, Tredget EE, Burrell RE. 2010. Anti-inflammatory activity of nanocrystalline silver-derived solutions in porcine contact dermatitis. J Inflamm. 7(1):1–20.
  • NRC 1994. Nutrient requirements of poultry. 9th Rev ed. Washington, DC: National Academic Press.
  • Ognik K, Sembratowicz I, Cholewińska E, Wlazło Ł, Nowakowicz-Dębek B, Szlązak R, Tutaj K. 2016. The effect of chemically-synthesized silver nanoparticles on performance and the histology and microbiological profile of the jejunum in chickens. Ann Anim Sci. 16(2):439–450.
  • Pal A, Shah S, Devi S. 2009. Microwave-assisted synthesis of silver nanoparticles using ethanol as a reducing agent. Mater Chem Phys. 114(2-3):530–532.
  • Patra A, Lalhriatpuii M. 2020. Progress and prospect of essential mineral nanoparticles in poultry nutrition and feeding—A review. Biol Trace Elem Res. 197(1):233–253.
  • Percival SL, Bowler PG, Russell D. 2005. Bacterial resistance to silver in wound care. J Hosp Infect. 60(1):1–7.
  • Pineda L, Chwalibog A, Sawosz E, Lauridsen C, Engberg R, Elnif J, Hotowy A, Sawosz F, Gao Y, Ali A, et al. 2012. Effect of silver nanoparticles on growth performance, metabolism and microbial profile of broiler chickens. Arch Anim Nutr. 66(5):416–429.
  • Saleh AA, El-Magd MA. 2018. Beneficial effects of dietary silver nanoparticles and silver nitrate on broiler nutrition. Environ Sci Pollut Res Int. 25(27):27031–27038.
  • Salem HM, Ismael E, Shaalan M. 2021. Evaluation of the effects of silver nanoparticles against experimentally induced necrotic enteritis in broiler chickens. Int J Nanomed. 16:6783–6796.
  • Samani PY, Samani PY, Arabi M, Shadkhast M, Samani PY, Piraei E. 2018. Repeated-dose toxicity in mouse liver and kidney after skin exposure to silver nanoparticles. J Clin Diagnostic Res. 12(1):1–4.
  • Sawosz E, Grodzik M, Zielińska M, Niemiec T, Olszańska B, Chwalibog A. 2009. Nanoparticles of silver do not affect growth, development and DNA oxidative damage in chicken embryos. Arch. für Geflugelkunde. 73(3):208–213.
  • SCENIHR 2014. Opinion on Nanosilver: Safety, Health and Environmental Effects and Role in Antimicrobial Resistance, European commission.
  • SPSS 2010. IBM Corp. Released 2010. IBM SPSS statistics for windows, version 19.0. Armonk, NY: IBM Corp.
  • Steel RG, Torrie JH. 1980. Principles and procedures of statistics a biometrical approach. 2nd ed. New York, NY: Mc Grow- Hill Book Co.
  • Vadalasetty KP, Lauridsen C, Engberg RM, Vadalasetty R, Kutwin M, Chwalibog A, Sawosz E. 2018. Influence of silver nanoparticles on growth and health of broiler chickens after infection with Campylobacter jejuni. BMC Vet Res. 4(1):1–11.
  • Wang B, He X, Zhang Z, Zhao Y, Feng W. 2013. Metabolism of nanomaterials in vivo: blood circulation and organ clearance. Acc Chem Res. 46(3):761–769.
  • Wijnhoven SW, Peijnenburg WJ, Herberts CA, Hagens WI, Oomen AG, Heugens EH, Roszek B, Bisschops J, Gosens I, Van De Meent D, et al. 2009. Nano-silver–a review of available data and knowledge gaps in human and environmental risk assessment. Nanotoxicology. 3(2):109–138.