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急性热应激激活了猪氧化型骨骼肌中的炎症信号通路。

Acute heat stress activated inflammatory signaling in porcine oxidative skeletal muscle.

作者信息

Ganesan Shanthi, Volodina Olga, Pearce Sarah C, Gabler Nicholas K, Baumgard Lance H, Rhoads Robert P, Selsby Joshua T

机构信息

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

Department of Animal and Poultry Sciences, Virginia Tech, Blacksburg, Virginia.

出版信息

Physiol Rep. 2017 Aug;5(16). doi: 10.14814/phy2.13397.

Abstract

Despite well-studied clinical manifestations, intracellular mechanisms of prolonged hyperthermic injury remain unclear, especially in skeletal muscle. Given muscle's large potential to impact systemic inflammation and metabolism, the response of muscle cells to heat-mediated injury warrants further investigation. We have previously reported increased activation of NF-B signaling and increased NF-B and AP-1-driven transcripts in oxidative skeletal muscle following 12 h of heat stress. The purpose of this investigation was to examine early heat stress-induced inflammatory signaling in skeletal muscle. We hypothesized that heat stress would increase NF-B and AP-1 signaling in oxidative skeletal muscle. To address this hypothesis, 32 gilts were randomly assigned to one of four treatment groups ( = 8/group): control (0 h: 21°C) or exposed to heat stress conditions (37°C) for 2 h ( = 8), 4 h ( = 8), or 6 h ( = 8). Immediately following environmental exposure pigs were euthanized and the red portion of the semitendinosus muscle (STR) was harvested. We found evidence of NF-B pathway activation as indicated by increased protein abundance of NF-B activator IKK- following 4 h and increased total NF-B protein abundance following 6 h of heat stress. Heat stress also stimulated AP-1 signaling as AP-1 protein abundance was increased in nuclear fractions following 4 h of heat stress. Interleukin-6 protein abundance and activation of the JAK/STAT pathway were decreased in heat stressed muscle. These data indicate that heat stress activated inflammatory signaling in the porcine STR muscle via the AP-1 pathway and early activation of the NF-B pathway.

摘要

尽管高温损伤的临床表现已得到充分研究,但其细胞内机制仍不清楚,尤其是在骨骼肌中。鉴于肌肉对全身炎症和代谢有巨大影响潜力,肌肉细胞对热介导损伤的反应值得进一步研究。我们之前报道过,热应激12小时后,氧化型骨骼肌中NF-κB信号的激活增加,以及NF-κB和AP-1驱动的转录本增加。本研究的目的是检查热应激早期在骨骼肌中诱导的炎症信号。我们假设热应激会增加氧化型骨骼肌中NF-κB和AP-1信号。为验证这一假设,32头小母猪被随机分配到四个处理组之一(每组n = 8):对照组(0小时:21°C)或暴露于热应激条件(37°C)2小时(n = 8)、4小时(n = 8)或6小时(n = 8)。环境暴露后立即对猪实施安乐死,并采集半腱肌(STR)的红色部分。我们发现,热应激4小时后NF-κB激活剂IKK-的蛋白质丰度增加,热应激6小时后总NF-κB蛋白质丰度增加,这表明存在NF-κB途径激活的证据。热应激还刺激了AP-1信号,因为热应激4小时后核部分中AP-1蛋白质丰度增加。热应激肌肉中白细胞介素-6蛋白质丰度和JAK/STAT途径的激活减少。这些数据表明,热应激通过AP-1途径和NF-κB途径的早期激活,激活了猪STR肌肉中的炎症信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/854d/5582270/8687f6fc52a4/PHY2-5-e13397-g001.jpg

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