肾纤维化和炎症中的性别特异性表观遗传学编程。

IF 3.7 2区 医学 Q1 PHYSIOLOGY
Prerna Kumar, Heddwen L Brooks
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引用次数: 0

摘要

随着人口老龄化,高血压、心脏病、糖尿病和肥胖的患病率不断上升,导致社会肾脏疾病的发病率上升。慢性肾脏疾病(CKD)的主要特征是持续的炎症、纤维化和肾功能逐渐丧失,导致肾功能衰竭。性别是CKD发病率和进展差异的一个已知因素。表观遗传学编程是肾脏生理学的重要调节因子,在肾损伤和纤维化的病理生理学中起着重要作用。表观遗传学信号将内在和外在信号整合到基因组上,以及各种环境和激素刺激,包括性激素,它们调节基因表达和下游细胞反应。研究最广泛的表观遗传学改变在肾损伤中起着关键作用,包括组蛋白修饰和DNA甲基化。值得注意的是,这些表观遗传学改变是可逆的,使其成为治疗肾脏疾病的潜在治疗靶点。在这里,我们将总结目前关于肾纤维化和炎症表观遗传学调节中性别差异的知识,并强调CKD治疗的一些可能的表观遗传学治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sex-specific epigenetic programming in renal fibrosis and inflammation.

The growing prevalence of hypertension, heart disease, diabetes, and obesity along with an aging population is leading to a higher incidence of renal diseases in society. Chronic kidney disease (CKD) is characterized mainly by persistent inflammation, fibrosis, and gradual loss of renal function leading to renal failure. Sex is a known contributor to the differences in incidence and progression of CKD. Epigenetic programming is an essential regulator of renal physiology and is critically involved in the pathophysiology of renal injury and fibrosis. Epigenetic signaling integrates intrinsic and extrinsic signals onto the genome, and various environmental and hormonal stimuli, including sex hormones, which regulate gene expression and downstream cellular responses. The most extensively studied epigenetic alterations that play a critical role in renal damage include histone modifications and DNA methylation. Notably, these epigenetic alterations are reversible, making them candidates for potential therapeutic targets for the treatment of renal diseases. Here, we will summarize the current knowledge on sex differences in epigenetic modulation of renal fibrosis and inflammation and highlight some possible epigenetic therapeutic strategies for CKD treatment.

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来源期刊
CiteScore
8.40
自引率
7.10%
发文量
154
审稿时长
2-4 weeks
期刊介绍: The American Journal of Physiology - Renal Physiology publishes original manuscripts on timely topics in both basic science and clinical research. Published articles address a broad range of subjects relating to the kidney and urinary tract, and may involve human or animal models, individual cell types, and isolated membrane systems. Also covered are the pathophysiological basis of renal disease processes, regulation of body fluids, and clinical research that provides mechanistic insights. Studies of renal function may be conducted using a wide range of approaches, such as biochemistry, immunology, genetics, mathematical modeling, molecular biology, as well as physiological and clinical methodologies.
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