畜牧与饲料科学 ›› 2024, Vol. 45 ›› Issue (5): 71-76.doi: 10.12160/j.issn.1672-5190.2024.05.009
蒋鹏程1, 何鹏2, 刘兴伟3
收稿日期:
2024-06-17
出版日期:
2024-09-30
发布日期:
2024-11-29
通讯作者:
刘兴伟(1993—),男,畜牧师,硕士,主要从事畜牧生产、动物营养与饲料技术推广工作。
作者简介:
蒋鹏程(1994—),男,畜牧师,主要从事基层畜牧兽医技术推广工作。
JIANG Pengcheng1, HE Peng2, LIU Xingwei3
Received:
2024-06-17
Online:
2024-09-30
Published:
2024-11-29
摘要: 硒是动物必需的微量元素之一,在机体内参与抗氧化、免疫、繁殖、肠道菌群调节等生物学过程。近年来,在不同来源的硒制剂中,纳米硒因其具有毒性低、生物利用度高、安全性好、抗氧化性强等优点而备受国内外动物营养研究者的关注,成为饲料添加剂研究领域的热点。综述了纳米硒的性质和特点、吸收代谢机制、生物学功能及其在不同动物生产中的应用研究进展,以期为纳米硒饲料添加剂的开发及其在动物生产中的科学应用提供参考。
中图分类号:
蒋鹏程, 何鹏, 刘兴伟. 纳米硒及其在动物生产中的应用研究进展[J]. 畜牧与饲料科学, 2024, 45(5): 71-76.
JIANG Pengcheng, HE Peng, LIU Xingwei. Research Progress on Nano-selenium and Its Application in Animal Production[J]. Animal Husbandry and Feed Science, 2024, 45(5): 71-76.
[1] | 王霞,谢晓方,张卓忆,等.纳米硒的合成技术、生物学功能及其在畜禽生产中的应用研究进展[J].饲料研究,2023,46(13):180-184. |
[2] | NGUYEN S H, HUYEN N T D. Selenium in animal nutrition:Metabolic pathways and animal responses[J].Journal of Animal Science and Technology,2019,96:1-13. |
[3] | SUN H Y, CHEN J, XIONG D W, et al.Detoxification of selenium yeast on mycotoxins and heavy metals: A review[J].Biological Trace Element Research,2023,201(11):5441-5454. |
[4] | ZHENG L, FENG L, JIANG W D, et al.Selenium deficiency impaired immune function of the immune organs in young grass carp (Ctenopharyngodon idella)[J].Fish and Shellfish Immunology,2018,77:53-70. |
[5] | SHI L G, XUN W J, YUE W B, et al.Effect of sodium selenite, Se-yeast and nano-elemental selenium on growth performance, Se concentration and antioxidant status in growing male goats[J].Small Ruminant Research,2011,96(1):49-52. |
[6] | BANO I, SKALICKOVA S, ARBAB S, et al.Toxicological effects of nanoselenium in animals[J].Journal of Animal Science and Biotechnology,2022,13(1):72. |
[7] | KHALIL H S, MAULU S, VERDEGEM M, et al.Embracing nanotechnology for selenium application in aquafeeds[J].Reviews in Aquaculture,2023,15(1):112-129. |
[8] | ASHOURI S, KEYVANSHOKOOH S, SALATI A P, et al.Effects of different levels of dietary selenium nanoparticles on growth performance, muscle composition, blood biochemical profiles and antioxidant status of common carp (Cyprinus carpio)[J].Aquaculture,2015,446:25-29. |
[9] | ZHANG J S, GAO X Y, ZHANG L D, et al.Biological effects of a nano red elemental selenium[J].BioFactors,2001,15(1):27-38. |
[10] | 苏文,杨辉.纳米硒的生物学功能及在养殖中的应用研究进展[J].饲料研究,2020,43(1):104-106. |
[11] | 蔡超,曲湘勇,魏艳红,等.纳米硒的营养特点及其在鸡生产中的应用[J].动物营养学报,2013,25(12):2818-2823. |
[12] | 王振宇,魏凌峰,蔡杰,等.纳米硒的合成研究及其在食品与农业中的应用[J].食品科技,2021,46(12):26-33. |
[13] | COMBS G F, SU Q, LIU C H, et al.Effects of dietary selenite, copper, and zinc on tissue trace mineral levels in chicks[J].Biological Trace Element Research,1986,11(1):51-64. |
[14] | 王亮,单安山.纳米硒在动物营养中的研究进展[J].中国畜牧兽医,2011,38(4):38-42. |
[15] | 翟晓娜. 壳聚糖纳米硒体系的制备及其物化特性和生物活性的研究[D].北京:中国农业大学,2017. |
[16] | 严旭霞. 纳米硒的体内外生物效应研究[D].杭州:浙江工商大学,2013. |
[17] | 焦灏琳,高慧.微量元素硒在动物生产中的应用研究[J].现代农业科技,2011(4):313,315. |
[18] | 曾金红,张功臣,黄开勋.硒蛋白S的生物学功能[J].化学进展,2009,21(7):1494-1499. |
[19] | LIU X W, FENG L, JIANG W D, et al.Novel insights into the intestinal immune regulatory effects of (2-Carboxyethyl) dimethylsulfonium Bromide (Br-DMPT) in on-growing grass carp (Ctenopharyngodon idella)[J].Fish and Shellfish Immunology,2020,98:534-550. |
[20] | HUANG B, ZHANG J S, HOU J W, et al.Free radical scavenging efficiency of Nano-Se in vitro[J].Free Radical Biology and Medicine,2003,35(7):805-813. |
[21] | CHEN W W, LI Y F, YANG S, et al.Synthesis and antioxidant properties of chitosan and carboxymethyl chitosan-stabilized selenium nanoparticles[J].Carbohydrate Polymers,2015,132:574-581. |
[22] | CAI S J, WU C X, GONG L M, et al.Effects of nano-selenium on performance, meat quality, immune function, oxidation resistance, and tissue selenium content in broilers[J].Poultry Science,2012,91(10):2532-2539. |
[23] | NADERI M, KEYVANSHOKOOH S, SALATI A P, et al.Proteomic analysis of liver tissue from rainbow trout (Oncorhynchus mykiss) under high rearing density after administration of dietary vitamin E and selenium nanoparticles[J].Comparative Biochemistry and Physiology Part D: Genomics and Proteomics,2017,22:10-19. |
[24] | RATHORE S S, MURTHY H S, MAMUN M A A, et al. Nano-selenium supplementation to ameliorate nutrition physiology, immune response, antioxidant system and disease resistance against Aeromonas hydrophila in monosex Nile Tilapia (Oreochromis niloticus)[J].Biological Trace Element Research,2021,199(8):3073-3088. |
[25] | LIU C L, LI Y F, LI H Y, et al.Nano-selenium and Macleaya cordata extracts improved immune functions of intrauterine growth retardation piglets under maternal oxidation stress[J].Biological Trace Element Research,2022,200(9):3975-3982. |
[26] | 黄小红,曹岩,江俊勇,等.饲料中添加纳米硒对草鱼生长性能、免疫器官指数和抗氧化性能的影响[J].中国饲料,2017(16):30-34. |
[27] | 李宝春,朱磊.不同硒源对蛋雏鸡生长性能和免疫器官发育的影响[J].畜牧与饲料科学,2009,30(2):15-17. |
[28] | NGUYEN T H D, VARDHANABHUTI B, LIN M S, et al. Antibacterial properties of selenium nanoparticles and their toxicity to Caco-2 cells[J].Food Control,2017,77:17-24. |
[29] | ALAGAWANY M, QATTAN S Y A, ATTIA Y A, et al. Use of chemical nano-selenium as an antibacterial and antifungal agent in quail diets and its effect on growth, carcasses, antioxidant, immunity and caecal microbes[J].Animals,2021,11(11):3027. |
[30] | ZHU Y Y, KONG X P, WU E J, et al.Biosynthesis of spherical selenium nanoparticles with halophilic Bacillus subtilis subspecies stercoris strain XP for inhibition of strawberry pathogens[J].Chinese Journal of Biotechnology,2021,37(8):2825-2835. |
[31] | KONG L, YUAN Q, ZHU H R, et al.The suppression of prostate LNCaP cancer cells growth by Selenium nanoparticles through Akt/Mdm2/AR controlled apoptosis[J].Biomaterials,2011,32(27):6515-6522. |
[32] | LI Y H, LIN Z F, ZHAO M Q, et al.Multifunctional selenium nanoparticles as carriers of HSP70 siRNA to induce apoptosis of HepG2 cells[J].International Journal of Nanomedicine,2016,11: 3065-3076. |
[33] | 白云,成温玉,杨芳.硒在雄性动物繁殖中的作用[J].中国畜牧杂志,2020,56(8):26-31. |
[34] | REZVANFAR M A, ALI REZVANFAR M, SHAHVERDI A R, et al.Protection of cisplatin-induced spermatotoxicity, DNA damage and chromatin abnormality by selenium nano-particles[J].Toxicology and Applied Pharmacology,2013,266(3):356-365. |
[35] | EL-KAZAZ S E, ABO-SAMAHA M I, HAFEZ M H, et al. Dietary supplementation of nano-selenium improves reproductive performance, sexual behavior and deposition of selenium in the testis and ovary of Japanese quail[J].Journal of Advanced Veterinary and Animal Research,2020,7(4):597-607. |
[36] | LIU Y, ZHANG W, ZHAO J T, et al.Using nanoselenium to combat Minamata disease in rats:The regulation of gut microbes[J].Environmental Science:Nano,2021,8(5):1437-1445. |
[37] | GAN X Q, ZHANG X T, QIANNAN E, et al.Nano-selenium attenuates nickel-induced testosterone synthesis disturbance through inhibition of MAPK pathways in Sprague-Dawley rats[J].Environmental Toxicology,2019,34(8):968-978. |
[38] | SADEK K M, LEBDA M A, ABOUZED T K, et al.Neuro- and nephrotoxicity of subchronic cadmium chloride exposure and the potential chemoprotective effects of selenium nanoparticles[J].Metabolic Brain Disease,2017,32(5):1659-1673. |
[39] | ABU-ELALA N M, SHAALAN M, ALI S E, et al. Immune responses and protective efficacy of diet supplementation with selenium nanoparticles against cadmium toxicity in Oreochromis niloticus[J].Aquaculture Research,2021,52(8):3677-3686. |
[40] | HE Y D, CHEN S Y, LIU Z X, et al.Toxicity of selenium nanoparticles in male Sprague-Dawley rats at supranutritional and nonlethal levels[J].Life Sciences,2014,115(1/2):44-51. |
[41] | SHAKIBAIE M, SHAHVERDI A R, FARAMARZI M A, et al.Acute and subacute toxicity of novel biogenic selenium nanoparticles in mice[J].Pharmaceutical Biology,2013,51(1):58-63. |
[42] | ZHANG J S, WANG X F, XU T W.Elemental selenium at nano size (nano-Se) as a potential chemopreventive agent with reduced risk of selenium toxicity:Comparison with Se-methylselenocysteine in mice[J].Toxicological Sciences,2008,101(1):22-31. |
[43] | 董改香,张勇刚,孙子龙,等.饲粮中添加不同硒源对仔猪血浆硒含量和血清抗氧化能力的影响[J].饲料研究,2019,42(6):38-41. |
[44] | ZHENG Y L, DAI W Z, HU X L, et al.Effects of dietary Glycine selenium nanoparticles on loin quality, tissue selenium retention, and serum antioxidation in finishing pigs[J].Animal Feed Science and Technology,2020,260:114345. |
[45] | BIEN D M, MICHALCZUK M, SZKOPEK D, et al.Changes in lipids metabolism indices as a result of different form of selenium supplementation in chickens[J].Scientific Reports,2022,12(1):13817. |
[46] | KHAJEH BAMI M, AFSHARMANESH M, ESPAHBODI M.Dietary supplementation with biosynthesised nano-selenium affects growth, carcass characteristics, meat quality and blood parameters of broiler chickens[J].Animal Production Science,2021,62(3):254-262. |
[47] | MENG T T, LIU Y L, XIE C Y, et al.Effects of different selenium sources on laying performance, egg selenium concentration, and antioxidant capacity in laying hens[J].Biological Trace Element Research,2019,189(2):548-555. |
[48] | 武晓英,曹贵东.饲料中添加纳米硒对岢岚绒山羊妊娠母羊免疫功能的影响[J].现代畜牧兽医,2010(12):34-37. |
[49] | SALAM A, EL-SHAMAA I, METWALLY A, et al.Effect of selenium adminstration on reproductive outcome and biochemical parameters to ewes and their lambs[J].Journal of Animal and Poultry Production,2021,12(12):379-386. |
[50] | 杨茹洁,施力光,岳文斌,等.纳米硒对性成熟前雄性波尔山羊生殖机能发育的影响[J].中国农业科学,2009,42(8):2923-2929. |
[51] | HAN L Q, PANG K, FU T, et al.Nano-selenium supplementation increases selenoprotein (sel) gene expression profiles and milk selenium concentration in lactating dairy cows[J].Biological Trace Element Research,2021,199(1):113-119. |
[52] | SULTAN I, FATIMA M, SHAH S Z H, et al. Effects of dietary nano-selenium concentration on growth, proximate chemical composition and antioxidant enzymes, and physiological responses to stressors by juvenile Catla catla[J].Aquaculture,2024,588:740914. |
[53] | SHARIF-KANANI H, KEYVANSHOKOOH S, MOHAMMADIAZARM H, et al.Nano-selenium (nano-Se) removes the detrimental impacts of plant-based diets on the production performance and well-being of common carp (Cyprinus carpio)[J].Aquaculture Reports,2024,36:102107. |
[54] | GHANIEM S, NASSEF E, ZAINELDIN A I, et al.A comparison of the beneficial effects of inorganic, organic, and elemental nano-selenium on Nile Tilapia:Growth, immunity, oxidative status, gut morphology, and immune gene expression[J].Biological Trace Element Research,2022,200(12):5226-5241. |
[55] | LIU S, YU H B, LI P J, et al.Dietary nano-selenium alleviated intestinal damage of juvenile grass carp (Ctenopharyngodon idella) induced by high-fat diet:Insight from intestinal morphology, tight junction, inflammation, anti-oxidization and intestinal microbiota[J].Animal Nutrition,2022,8:235-248. |
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