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The autophagic lysosomal system in outflow pathway physiology and pathophysiology

机译:自噬溶酶体系统在流出途径生理和病理生理中的作用

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Malfunction of the trabecular meshwork (TM)/schlemm's canal (SC) conventional outflow pathway is associated with elevated intraocular pressure (IOP) and, therefore, increased risk of developing glaucoma, a potentially blinding disease affecting more than 70 million people worldwide. This TM/SC tissue is subjected to different types of stress, including mechanical, oxidative, and phagocytic stress. Long-term exposure to these stresses is believed to lead to a progressive accumulation of damaged cellular and tissue structures causing permanent alterations in the tissue physiology, and contribute to the pathologic increase in aqueous humor (AH) outflow resistance. Autophagy is emerging as an essential cellular survival mechanism against a variety of stressors. In addition to performing basal functions, autophagy acts as a cellular survival pathway and represents an essential mechanism by which organisms can adapt to acute stress conditions and repair stress-induced damage. A decline in autophagy has been observed in most tissues with aging and has been considered responsible, at least in part, for the accumulation of damaged cellular components in almost all tissues of aging organisms. Dysfunction in the autophagy pathway is associated with several human diseases, from infectious diseases to cancer and neuro-degeneration. In this review, we will summarize our current knowledge of the emerging roles of autophagy in outflow tissue physiology and pathophysiology, including novel evidence suggesting compromised autophagy in the glaucomatous outflow pathway. (C) 2015 Elsevier Ltd. All rights reserved.
机译:小梁网(TM)/施勒姆管(SC)的常规流出途径功能异常与眼内压(IOP)升高有关,因此,患青光眼的风险增加,青光眼是一种潜在的致盲性疾病,影响全球超过7000万人。该TM / SC组织承受不同类型的压力,包括机械,氧化和吞噬压力。据信长期暴露于这些压力下会导致受损细胞和组织结构的逐步积累,从而导致组织生理学的永久改变,并导致房水(AH)流出阻力的病理性增加。自噬正在成为抵抗各种压力的重要细胞生存机制。除了执行基础功能外,自噬还充当细胞生存途径,并代表生物体可以适应急性应激条件并修复应激诱导的损伤的重要机制。在大多数具有衰老的组织中都观察到自噬的下降,并且被认为至少部分是造成衰老生物几乎所有组织中受损细胞成分积累的原因。自噬途径的功能障碍与几种人类疾病有关,从传染病到癌症和神经退行性变。在这篇综述中,我们将总结我们目前对自噬在流出组织生理学和病理生理学中新兴作用的认识,包括表明青光眼流出途径自噬受损的新证据。 (C)2015 Elsevier Ltd.保留所有权利。

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