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热应激需要高膳食锌来对抗氧化应激,并改善大鼠的细胞因子和免疫反应。

Heat stress demands high dietary zinc to combat oxidative stress, and improve cytokine and immune response in rats.

作者信息

Lokesha Eranna, Jadhav Sunil Ekanath, Aderao Ganesh Narayanrao, Chaudhary Pramod, Priyanka Kumari, Dutta Narayan, Singh Gyanendra

机构信息

Division of Animal Nutrition, ICAR-Indian Veterinary Research Institute, Izatnagar, 243122, India.

Division of Physiology and Climatology, ICAR-Indian Veterinary Research Institute, Izatnagar, 243122, India.

出版信息

J Trace Elem Med Biol. 2025 Jun;89:127662. doi: 10.1016/j.jtemb.2025.127662. Epub 2025 Apr 25.

Abstract

Heat stress (HS) adversely impacts livestock production, immune response, and antioxidant status. Zinc (Zn), a key component of metalloenzymes, plays a vital role in maintaining these functions, with increased Zn requirements likely under HS. This study determined the dietary Zn requirement of rats under HS. Seventy-two weaned Wistar rats were allocated into six groups in a 3 × 2 factorial design (3 Zn levels: 14.6 ppm (CON), 32.7 ppm (Zn1), and 48.9 ppm (Zn2); 2 environmental conditions: thermoneutral (TN) and HS. All groups received the same basal purified diet with varying dietary Zn supplied as zinc sulphate (ZnSO.7HO). Initially for 28 days all groups were maintained under TN condition, later three groups from each dietary Zn levels were exposed to HS (5 hr/d) for 14 days in a psychrometric chamber. Blood, serum, and organ samples were analyzed for biochemical, hormonal, immune, and mineral profiles. HS elevated stress markers (cortisol, malondialdehyde, cytokines, haptoglobin, alanine transaminase, and aspartate transaminase), while higher dietary Zn (48.9 ppm) significantly reduced these markers under HS. Antioxidant enzymes (superoxide dismutase and catalase) and humoral immune response were lower in control groups but improved with increased dietary Zn in both environments. The mineral concentrations of Zn, Cu, Mn, and Fe in serum were increased with higher dietary Zn levels in HS compared to TN groups. In conclusion, higher dietary Zn level at 48.9 ppm in a purified diet is effective in alleviating HS by lowering stress markers and bolstering antioxidant enzymes and humoral immune responses.

摘要

热应激(HS)对家畜生产、免疫反应和抗氧化状态产生不利影响。锌(Zn)作为金属酶的关键成分,在维持这些功能方面发挥着至关重要的作用,热应激条件下锌的需求量可能会增加。本研究确定了热应激条件下大鼠的日粮锌需求量。72只断奶的Wistar大鼠按3×2析因设计分为6组(3个锌水平:14.6 ppm(对照组)、32.7 ppm(Zn1)和48.9 ppm(Zn2);2种环境条件:热中性(TN)和热应激。所有组均接受相同的基础纯化日粮,以硫酸锌(ZnSO₄·7H₂O)提供不同水平的日粮锌。最初28天所有组均维持在热中性条件下,之后每个日粮锌水平的三组大鼠在一个干湿球温度计控制的实验箱中接受14天的热应激处理(每天5小时)。对血液、血清和器官样本进行生化、激素、免疫和矿物质分析。热应激会升高应激标志物(皮质醇、丙二醛、细胞因子、触珠蛋白、谷丙转氨酶和谷草转氨酶),而较高的日粮锌(48.9 ppm)能在热应激条件下显著降低这些标志物。对照组的抗氧化酶(超氧化物歧化酶和过氧化氢酶)和体液免疫反应较低,但在两种环境下日粮锌增加时均有所改善。与热中性组相比,热应激组中较高的日粮锌水平使血清中锌、铜、锰和铁的矿物质浓度升高。总之,纯化日粮中48.9 ppm的较高日粮锌水平可通过降低应激标志物、增强抗氧化酶和体液免疫反应来有效缓解热应激。

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