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BNIP3表达下调可改善癌症恶病质中的肌肉萎缩。

BNIP3 Downregulation Ameliorates Muscle Atrophy in Cancer Cachexia.

作者信息

Fornelli Claudia, Beltrà Marc, Zorzano Antonio, Costelli Paola, Sebastian David, Penna Fabio

机构信息

Department of Clinical and Biological Sciences, University of Torino, 10043 Turin, Italy.

Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology, 08028 Barcelona, Spain.

出版信息

Cancers (Basel). 2024 Dec 11;16(24):4133. doi: 10.3390/cancers16244133.

Abstract

BACKGROUND AND AIMS

Cancer cachexia is a complex syndrome affecting most cancer patients and is directly responsible for about 20% of cancer-related deaths. Previous studies showed muscle proteolysis hyper-activation and mitophagy induction in tumor-bearing animals. While basal mitophagy is required for maintaining muscle mass and quality, excessive mitophagy promotes uncontrolled protein degradation, muscle loss and impaired function. BNIP3, a key mitophagy-related protein, is significantly increased in the muscles of both mice and human cancer hosts. This study aimed to define the potential of mitigating mitophagy via BNIP3 downregulation in preserving mitochondrial integrity, counteracting skeletal muscle loss in experimental cancer cachexia.

METHODS

Two in vivo gene delivery methods were performed to knock down muscle BNIP3: electroporation of a BNIP3-specific shRNA expression vector or adenovirus injection.

RESULTS

The electroporation effectively reduced muscle BNIP3 in healthy mice but was ineffective in C26 tumor-bearing mice. In contrast, adenovirus-mediated BNIP3 knockdown successfully decreased BNIP3 levels also in tumor hosts. Although BNIP3 knockdown did not impact overall on body or muscle mass, it improved muscle fiber size in C26-bearing miceh2, suggesting partial prevention of muscle atrophy. Mitochondrial respiratory chain complexes (OxPhos) and TOM20 protein levels were consistently rescued, indicating improvements in mitochondrial mass, while HO levels were unchanged among the groups, suggesting that BNIP3 downregulation does not impair the endogenous control of oxidative balance.

CONCLUSIONS

These findings suggest that a fine balance between mitochondrial disposal and biogenesis is fundamental for preserving muscle homeostasis and highlight a potential role for BNIP3 modulation against cancer-induced muscle wasting.

摘要

背景与目的

癌症恶病质是一种影响大多数癌症患者的复杂综合征,直接导致约20%的癌症相关死亡。先前的研究表明,荷瘤动物存在肌肉蛋白水解过度激活和线粒体自噬诱导现象。虽然基础线粒体自噬对于维持肌肉质量和功能是必需的,但过度的线粒体自噬会促进不受控制的蛋白质降解、肌肉流失和功能受损。BNIP3是一种关键的线粒体自噬相关蛋白,在小鼠和人类癌症宿主的肌肉中均显著增加。本研究旨在确定通过下调BNIP3减轻线粒体自噬在维持线粒体完整性、对抗实验性癌症恶病质中骨骼肌损失方面的潜力。

方法

采用两种体内基因传递方法来敲低肌肉中的BNIP3:电穿孔导入BNIP3特异性shRNA表达载体或注射腺病毒。

结果

电穿孔可有效降低健康小鼠肌肉中的BNIP3,但对荷C26肿瘤小鼠无效。相比之下,腺病毒介导的BNIP3敲低在肿瘤宿主中也成功降低了BNIP3水平。虽然BNIP3敲低对总体体重或肌肉质量没有影响,但改善了荷C26小鼠的肌纤维大小,提示部分预防了肌肉萎缩。线粒体呼吸链复合物(氧化磷酸化)和TOM20蛋白水平持续恢复,表明线粒体质量有所改善,而各组间HO水平未变,提示下调BNIP3不会损害氧化平衡的内源性控制。

结论

这些发现表明,线粒体清除与生物合成之间的精细平衡对于维持肌肉稳态至关重要,并突出了BNIP3调节在对抗癌症诱导的肌肉消瘦中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/614b/11674865/a2829d2f0113/cancers-16-04133-g0A1.jpg

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