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慢性冷暴露导致左心室肥厚,这种肥厚似乎是生理性的。

Chronic cold exposure causes left ventricular hypertrophy that appears to be physiological.

机构信息

Department of Biology, Miami University, Oxford, OH 45056, USA.

出版信息

J Exp Biol. 2024 Oct 15;227(20). doi: 10.1242/jeb.247476. Epub 2024 Oct 17.

Abstract

Exposure to winter cold causes an increase in energy demands to meet the challenge of thermoregulation. In small rodents, this increase in cardiac output leads to a profound cardiac hypertrophy, 2-3 times that typically seen with exercise training. The nature of this hypertrophy and its relevance to winter mortality remains unclear. Our goal was to characterize cold-induced cardiac hypertrophy and to assess its similarity to either exercise-induced (physiological) hypertrophy or the pathological hypertrophy of hypertension. We hypothesized that cold-induced hypertrophy will most closely resemble exercise-induced hypertrophy, but be another unique pathway for physiological cardiac growth. We found that cold-induced hypertrophy was largely reversed after a return to warm temperatures. Further, metabolic rates were elevated while gene expression and mitochondrial enzyme activities indicative of pathology were absent. A gene expression panel comparing hearts of exercised and cold-exposed mice further suggests that these activities are similar, although not identical. In conclusion, we found that chronic cold led to a phenotype that most closely resembled physiological hypertrophy, with enhanced metabolic rate, without induction of fetal genes, but with decreased expression of genes associated with fatty acid oxidation, suggesting that heart failure is not a cause of winter mortality in small rodents and identifying a novel approach for the study of cardiac growth.

摘要

暴露于冬季寒冷会导致能量需求增加,以应对体温调节的挑战。在小型啮齿动物中,心输出量的增加会导致明显的心脏肥大,是运动训练通常导致的心脏肥大的 2-3 倍。这种肥大的性质及其与冬季死亡率的关系尚不清楚。我们的目标是描述冷诱导的心脏肥大,并评估其与运动诱导的(生理性)肥大或高血压的病理性肥大的相似性。我们假设冷诱导的肥大最接近运动诱导的肥大,但它是另一种生理性心脏生长的独特途径。我们发现,当温度恢复到温暖时,冷诱导的肥大在很大程度上得到了逆转。此外,代谢率升高,而表明病理学的基因表达和线粒体酶活性缺失。比较运动和冷暴露小鼠心脏的基因表达谱进一步表明,这些活性相似,尽管不完全相同。总之,我们发现慢性寒冷导致的表型最接近生理性肥大,表现为代谢率增强,未诱导胎儿基因,但与脂肪酸氧化相关的基因表达减少,提示心力衰竭不是小型啮齿动物冬季死亡的原因,并为心脏生长的研究确定了一种新方法。

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