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热应激恢复对循环生物能量学和炎症生物标志物的影响。

The effect of recovery from heat stress on circulating bioenergetics and inflammatory biomarkers.

机构信息

Department of Animal Science, Iowa State University, Ames, IA.

Department of Animal Production, The University of Jordan, Amman, Jordan.

出版信息

J Anim Sci. 2018 Nov 21;96(11):4599-4610. doi: 10.1093/jas/sky345.

Abstract

Heat stress (HS) jeopardizes animal productivity and health. The intestinal barrier is sensitive to HS and heat-induced hyperpermeability plays a key role in its pathophysiology. However, the biology of recovery following HS is less understood. Thus, study objectives were to determine the temporal pattern of metabolic, inflammatory, and intestinal histological parameters during HS recovery. Female pigs (n = 32; 19.5 ± 0.5 kg BW) were sacrificed following exposure to 1 of 4 environmental treatments: 1) constant thermoneutral (TN) conditions (TNC; 24.2 ± 0.5°C), 2) no TN recovery post HS (0D), 3) 3 d of TN recovery post HS (3D), and 4) 7 d of TN recovery post HS (7D). The HS protocol was cyclical (33.6 ± 1.8 to 37.4 ± 2.1°C) and lasted for 3 d for all HS treatments. During the 3 d of HS, rectal temperature, skin temperature, and respiration rates were increased (1.3°C, 4.8°C, and 77 breaths/min, respectively; P < 0.01) and ADFI was decreased (27%; P < 0.01) compared to TNC pigs. Skin temperature tended to be decreased 0.6°C in 3D pigs during days 1-3 of recovery (P = 0.06) and was decreased 1.6 and 0.7°C during days 1-3 and 4-7 of recovery, respectively, in 7D pigs (P ≤ 0.03) compared to TNC. Relative to TNC pigs, ADFI remained 14% decreased during days 1-3 of recovery in both 3D and 7D pigs, and 17% decreased during days 4-7 in 7D pigs (P ≤ 0.01). Plasma glucose was decreased (10%; P = 0.03) for 0D and 3D relative to TNC pigs. Circulating lipopolysaccharide-binding protein was increased in 3D and 7D vs. TNC pigs (110 and 147%, respectively; P = 0.01) and tended to increase linearly with increasing recovery time (P = 0.08). Circulating tumor necrosis factor alpha was decreased (15%) in 0D pigs and increased linearly with advancing recovery time (P < 0.01). Jejunum and ileum villus height were reduced 17 and 11% in 0D vs. TNC pigs and increased linearly with progressive recovery time (P < 0.01). Jejunum and ileum mucosal surface areas were reduced 17 and 9% in 0D pigs and remained decreased in the jejunum while the ileum recovered to TNC levels by day 3 of recovery. Relative to TNC pigs, goblet cell area was similar in jejunum and colon of 0D pigs but was reduced in the ileum of 0D pigs and in jejunum, ileum, and colon of 3D and 7D relative to TNC pigs (P < 0.01). In summary, HS has deleterious effects on intestinal morphology that seem to improve with recovery time. In contrast, feed consumption remained suppressed and inflammatory biomarkers indicative of leaky gut increased following the heat load.

摘要

热应激(HS)危害动物的生产力和健康。肠道屏障对 HS 敏感,热诱导的通透性增加在其病理生理学中起着关键作用。然而,对于 HS 恢复后的生物学过程知之甚少。因此,本研究的目的是确定 HS 恢复过程中代谢、炎症和肠道组织学参数的时间模式。将 32 头雌性猪(19.5 ± 0.5kgBW)暴露于以下 4 种环境处理之一后处死:1)恒热中性(TN)条件(24.2 ± 0.5°C),2)HS 后无 TN 恢复(0D),3)HS 后 3dTN 恢复(3D),4)HS 后 7dTN 恢复(7D)。HS 方案是周期性的(33.6 ± 1.8 至 37.4 ± 2.1°C),所有 HS 处理均持续 3d。在 3d 的 HS 期间,直肠温度、皮肤温度和呼吸率分别升高(1.3°C、4.8°C 和 77 次/分钟;P<0.01),采食量降低(27%;P<0.01)与 TNC 猪相比。与 TNC 猪相比,3D 猪在恢复第 1-3 天皮肤温度降低了 0.6°C(P=0.06),在恢复第 1-3 天和第 4-7 天,7D 猪的皮肤温度分别降低了 1.6°C 和 0.7°C(P≤0.03)。与 TNC 猪相比,3D 和 7D 猪在恢复第 1-3 天期间的 ADFI 仍分别降低了 14%,在 7D 猪中在恢复第 4-7 天期间降低了 17%(P≤0.01)。与 TNC 猪相比,0D 和 3D 猪的血浆葡萄糖降低了 10%(P=0.03)。3D 和 7D 猪的循环脂多糖结合蛋白分别比 TNC 猪增加了 110%和 147%(P=0.01),并且随着恢复时间的延长呈线性增加(P=0.08)。0D 猪的循环肿瘤坏死因子-α降低了 15%,并且随着恢复时间的延长呈线性增加(P<0.01)。0D 猪的空肠和回肠绒毛高度比 TNC 猪降低了 17%和 11%,并且随着恢复时间的延长呈线性增加(P<0.01)。0D 猪的空肠和回肠黏膜表面积比 TNC 猪降低了 17%和 9%,而在恢复第 3 天,空肠恢复到 TNC 水平,而回肠仍低于 TNC 水平。与 TNC 猪相比,0D 猪的空肠和结肠中的杯状细胞面积相似,但在 0D 猪的回肠中减少,在 3D 和 7D 猪的空肠、回肠和结肠中也减少(P<0.01)。总之,HS 对肠道形态有有害影响,似乎随着恢复时间的延长而改善。相比之下,采食量仍然受到抑制,并且指示肠道通透性增加的炎症生物标志物在热负荷后增加。

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