Department of Clinical and Biological Sciences, University of Torino, 10125 Torino, Italy.
Interuniversity Institute of Myology, 61029 Urbino, Italy.
Cells. 2021 Nov 12;10(11):3150. doi: 10.3390/cells10113150.
Cancer cachexia is a frequently neglected debilitating syndrome that, beyond representing a primary cause of death and cancer therapy failure, negatively impacts on patients' quality of life. Given the complexity of its multisystemic pathogenesis, affecting several organs beyond the skeletal muscle, defining an effective therapeutic approach has failed so far. Revamped attention of the scientific community working on cancer cachexia has focused on mitochondrial alterations occurring in the skeletal muscle as potential triggers of the complex metabolic derangements, eventually leading to hypercatabolism and tissue wasting. Mitochondrial dysfunction may be simplistically viewed as a cause of energy failure, thus inducing protein catabolism as a compensatory mechanism; however, other peculiar cachexia features may depend on mitochondria. On the one side, chemotherapy also impacts on muscle mitochondrial function while, on the other side, muscle-impaired regeneration may result from insufficient energy production from damaged mitochondria. Boosting mitochondrial function could thus improve the energetic status and chemotherapy tolerance, and relieve the myogenic process in cancer cachexia. In the present work, a focused review of the available literature on mitochondrial dysfunction in cancer cachexia is presented along with preliminary data dissecting the potential role of stimulating mitochondrial biogenesis via PGC-1α overexpression in distinct aspects of cancer-induced muscle wasting.
癌症恶病质是一种经常被忽视的使人虚弱的综合征,它不仅是死亡和癌症治疗失败的主要原因,还对患者的生活质量产生负面影响。鉴于其多系统发病机制的复杂性,影响到骨骼肌肉以外的多个器官,迄今为止,定义一种有效的治疗方法尚未成功。目前,致力于癌症恶病质研究的科学界重新关注了骨骼肌中发生的线粒体改变,这些改变可能是导致复杂代谢紊乱的潜在触发因素,最终导致过度分解代谢和组织消耗。线粒体功能障碍可以简单地看作是能量衰竭的原因,从而诱导蛋白质分解代谢作为一种代偿机制;然而,其他特殊的恶病质特征可能取决于线粒体。一方面,化疗也会影响肌肉线粒体功能,另一方面,肌肉受损的再生可能是由于受损线粒体产生的能量不足所致。因此,增强线粒体功能可以改善能量状态和化疗耐受性,并缓解癌症恶病质中的成肌过程。在目前的工作中,对癌症恶病质中线粒体功能障碍的现有文献进行了重点回顾,并初步分析了通过过表达 PGC-1α 刺激线粒体生物发生在癌症诱导的肌肉消耗的不同方面的潜在作用。