The Journal of Toxicological Sciences
Online ISSN : 1880-3989
Print ISSN : 0388-1350
ISSN-L : 0388-1350
Research Letter
Potential involvement of the endoplasmic reticulum stress response in the development of cisplatin-induced muscle atrophy
Shinki SogaHayato NanriHiroyasu SakaiRyunosuke IchikawaYuya ChigusaYui UraseShiori YonamineTakayuki OgiwaraRisako KonNobutomo IkarashiYoshihiko ChibaTomoo HosoeKumiko Ogawa
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Supplementary material

2026 Volume 51 Issue 2 Pages 123-130

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Abstract

Cancer cachexia, characterized by progressive skeletal muscle loss, is common in advanced malignancies and correlates with poor prognosis. Cisplatin, a widely used chemotherapeutic, is linked to muscle atrophy, but its mechanisms remain unclear. Recent studies implicate endoplasmic reticulum (ER) stress in muscle disorders; however, its role in chemotherapy-induced muscle atrophy is unknown. This study examined the effects of five anticancer agents—cisplatin, 5-fluorouracil, vincristine, irinotecan, and cyclophosphamide—on mouse skeletal muscle. Quadriceps muscle mass, gene expression related to protein synthesis (IGF-1), degradation (MuRF1, atrogin-1), ER stress (Ddit3/CHOP, Atf4, sXbp-1), and inflammation (TNF-α, IL-1β, COX2) were analyzed. Despite similar body weight loss, cisplatin-treated mice showed a significant reduction in muscle mass compared to dietary-restricted controls. Only cisplatin upregulated MuRF1 and atrogin-1 and downregulated IGF-1. Inflammatory markers were unaffected. Notably, cisplatin induced ER stress genes Ddit3, Atf4, and sXbp1. These findings suggest cisplatin promotes muscle atrophy via ER stress activation and protein degradation, independently of reduced food intake or inflammation. Targeting ER stress may help prevent chemotherapy-induced muscle wasting. Further studies are needed to clarify mechanisms and develop protective strategies.

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This article is licensed under a Creative Commons [Attribution 4.0 International] license.
https://creativecommons.org/licenses/by/4.0/
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