Cachexia is the wasting of skeletal muscle in cancer and is a major complication that impacts a person's quality of life. We hypothesized that cachexia is mediated by dysfunction of the vascular system, which is essential for maintaining perfusion and tempering inappropriate immune responses. Using transparent tissue topography, we discovered that loss of muscle vascular density precedes muscle wasting in multiple complementary tumor models, including pancreatic adenocarcinoma, colon carcinoma, lung adenocarcinoma and melanoma models. We also observed that persons suffering from cancer cachexia exhibit substantial loss of muscle vascular density. As tumors progress, increased circulating activin A remotely suppresses the expression of peroxisome proliferator-activated receptor-γ coactivator 1α (PGC1α) in the muscle endothelium, thus inducing vascular leakage. Restoring endothelial PGC1α activity preserved vascular density and muscle mass in tumor-bearing mice. Our study suggests that restoring muscle endothelial function could be a valuable therapeutic approach for cancer cachexia.
Skeletal muscle endothelial dysfunction through the activin A-PGC1α axis drives progression of cancer cachexia.
骨骼肌内皮功能障碍通过激活素 A-PGC1α 轴驱动癌症恶病质的进展
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作者:Kim Young-Mee, Sanborn Mark A, Vijeth Shaluah, Gajwani Priyanka, Wang Xinge, Jung Dahee, Valyi-Nagy Tibor, Chakraborty Sreeparna, Mancinelli Georgina, Toth Peter T, Phillips Evan H, Grippo Paul, Salahudeen Ameen A, Park Jooman, Yeon Su Yeon, Ananthanarayanan Vijayalakshmi, Jiang Yuwei, Lee Steve Seung-Young, Valyi-Nagy Klara, Rehman Jalees
| 期刊: | Nature Cancer | 影响因子: | 28.500 |
| 时间: | 2025 | 起止号: | 2025 Aug;6(8):1350-1369 |
| doi: | 10.1038/s43018-025-00975-6 | 研究方向: | 肿瘤 |
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