Ryan Terence E, Schmidt Cameron A, Green Tom D, Brown David A, Neufer P Darrell, McClung Joseph M
Department of Physiology, Brody School of Medicine, East Carolina University Greenville, NC, USA ; East Carolina Diabetes and Obesity Institute, Brody School of Medicine, East Carolina University Greenville, NC, USA.
Front Physiol. 2015 Nov 18;6:336. doi: 10.3389/fphys.2015.00336. eCollection 2015.
Critical limb ischemia (CLI) is the most severe clinical presentation of peripheral arterial disease and manifests as chronic limb pain at rest and/or tissue necrosis. Current clinical interventions are largely ineffective and therapeutic angiogenesis based trials have shown little efficacy, highlighting the dire need for new ideas and novel therapeutic approaches. Despite a decade of research related to skeletal muscle as a determinant of morbidity and mortality outcomes in CLI, very little progress has been made toward an effective therapy aimed directly at the muscle myopathies of this disease. Within the muscle cell, mitochondria are well positioned to modulate the ischemic cellular response, as they are the principal sites of cellular energy production and the major regulators of cellular redox charge and cell death. In this mini review, we update the crucial importance of skeletal muscle to CLI pathology and examine the evolving influence of muscle and endothelial cell mitochondria in the complex ischemic microenvironment. Finally, we discuss the novelty of muscle mitochondria as a therapeutic target for ischemic pathology in the context of the complex co-morbidities often associated with CLI.
严重肢体缺血(CLI)是外周动脉疾病最严重的临床表现,表现为静息时慢性肢体疼痛和/或组织坏死。目前的临床干预大多无效,基于治疗性血管生成的试验显示疗效甚微,这凸显了对新想法和新治疗方法的迫切需求。尽管在过去十年中,人们对骨骼肌作为CLI发病率和死亡率结果的决定因素进行了研究,但在直接针对该疾病肌肉病变的有效治疗方面进展甚微。在肌肉细胞内,线粒体处于调节缺血细胞反应的有利位置,因为它们是细胞能量产生的主要场所,也是细胞氧化还原电荷和细胞死亡的主要调节因子。在这篇小型综述中,我们更新了骨骼肌对CLI病理的至关重要性,并研究了肌肉和内皮细胞线粒体在复杂缺血微环境中不断演变的影响。最后,我们在通常与CLI相关的复杂合并症背景下,讨论了肌肉线粒体作为缺血病理治疗靶点的新颖性。