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化疗诱导的周围神经病变的病理生理学

Pathophysiology of Chemotherapy-Induced Peripheral Neuropathy.

作者信息

Starobova Hana, Vetter Irina

机构信息

Centre for Pain Research, Institute for Molecular Bioscience, University of QueenslandSt Lucia, QLD, Australia.

School of Pharmacy, University of QueenslandSt Lucia, QLD, Australia.

出版信息

Front Mol Neurosci. 2017 May 31;10:174. doi: 10.3389/fnmol.2017.00174. eCollection 2017.

Abstract

Chemotherapy-induced neuropathy is a common, dose-dependent adverse effect of several antineoplastics. It can lead to detrimental dose reductions and discontinuation of treatment, and severely affects the quality of life of cancer survivors. Clinically, chemotherapy-induced peripheral neuropathy presents as deficits in sensory, motor, and autonomic function which develop in a glove and stocking distribution due to preferential effects on longer axons. The pathophysiological processes are multi-factorial and involve oxidative stress, apoptotic mechanisms, altered calcium homeostasis, axon degeneration and membrane remodeling as well as immune processes and neuroinflammation. This review focusses on the commonly used antineoplastic substances oxaliplatin, cisplatin, vincristine, docetaxel, and paclitaxel which interfere with the cancer cell cycle-leading to cell death and tumor degradation-and cause severe acute and chronic peripheral neuropathies. We discuss drug mechanism of action and pharmacokinetic disposition relevant to the development of peripheral neuropathy, the epidemiology and clinical presentation of chemotherapy-induced neuropathy, emerging insight into genetic susceptibilities as well as current understanding of the pathophysiology and treatment approaches.

摘要

化疗引起的神经病变是几种抗肿瘤药物常见的剂量依赖性不良反应。它可导致有害的剂量减少和治疗中断,并严重影响癌症幸存者的生活质量。临床上,化疗引起的周围神经病变表现为感觉、运动和自主神经功能缺损,由于对较长轴突的优先影响,呈手套和袜套样分布发展。其病理生理过程是多因素的,涉及氧化应激、凋亡机制、钙稳态改变、轴突变性和膜重塑以及免疫过程和神经炎症。本综述重点关注常用的抗肿瘤物质奥沙利铂、顺铂、长春新碱、多西他赛和紫杉醇,这些物质干扰癌细胞周期导致细胞死亡和肿瘤降解,并引起严重的急性和慢性周围神经病变。我们讨论了与周围神经病变发生相关的药物作用机制和药代动力学特性、化疗引起的神经病变的流行病学和临床表现、对遗传易感性的新认识以及对病理生理学和治疗方法的当前理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c12/5450696/6e8396a1ccc9/fnmol-10-00174-g0001.jpg

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