[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. |