School of Nutrition and Health Sciences, College of Nutrition, Taipei Medical University, Taipei, Taiwan.
Graduate Institute of Cancer Biology and Drug Discovery, College of Medical Science and Technology, Taipei Medical University, Taipei, Taiwan.
J Cachexia Sarcopenia Muscle. 2023 Feb;14(1):182-197. doi: 10.1002/jcsm.13120. Epub 2022 Nov 18.
Cisplatin (CP) is a widely used chemotherapeutic drug with subsequent adverse effects on different organs and tissues including skeletal muscle loss and atrophy as the most common clinical symptoms. The molecular mechanism of cisplatin-induced muscle atrophy is not clearly understood. However, recent significant advances indicate that it is related to an imbalance in both the protein status and apoptosis. Capsaicin (CAP) is one of the major ingredients in chilli peppers. It is a valuable pharmacological agent with several therapeutic applications in controlling pain and inflammation with particular therapeutic potential in muscle atrophy. However, the mechanisms underlying its protective effects against cisplatin-induced muscle loss and atrophy remain largely unknown. This study aims to investigate capsaicin's beneficial effects on cisplatin-induced muscle loss and atrophy in vitro and in vivo.
The anti-muscle-atrophic effect of capsaicin on cisplatin-induced muscle loss was investigated using in vivo and in vitro studies. By using the pretreatment model, pretreated capsaicin for 24 h and treated with cisplatin for 48 h, we utilized a C C myotube formation model where cell viability analysis, immunofluorescence, and protein expression were measured to investigate the effect of capsaicin in hampering cisplatin-induced muscle atrophy. C57BL/6 mice were administered capsaicin (10, 40 mg/kg BW) as a pretreatment for 5 weeks and cisplatin (3 mg/kg BW) for seven consecutively days to assess muscle atrophy in an animal model for protein and oxidative stress examination, and the grip strength was tested to evaluate the muscle strength.
Our study results indicated that cisplatin caused lower cell viability and showed a subset of hallmark signs typically recognized during atrophy, including severe reduction in the myotube diameter, repression of Akt, and mTOR protein expression. However, pretreatment with capsaicin could ameliorate cisplatin-induced muscle atrophy by up-regulating the protein synthesis in skeletal muscle as well as down-regulating the markers of protein degradation. Additionally, capsaicin was able to downregulate the protein expression of apoptosis-related markers, activated TRPV1 and autophagy progress modulation and the recovery of lysosome function. In vivo, capsaicin could relieve oxidative stress and cytokine secretion while modulating autophagy-related lysosome fusion, improving grip strength, and alleviating cisplatin-induced body weight loss and gastrocnemius atrophy.
These findings suggest that capsaicin can restore cisplatin-induced imbalance between protein synthesis and protein degradation pathways and it may have protective effects against cisplatin-induced muscle atrophy.
顺铂(CP)是一种广泛应用的化疗药物,随后会对不同的器官和组织产生不良反应,包括骨骼肌损失和萎缩,这是最常见的临床症状。顺铂诱导肌肉萎缩的分子机制尚不清楚。然而,最近的重大进展表明,它与蛋白质状态和细胞凋亡的失衡有关。辣椒素(CAP)是辣椒中的主要成分之一。它是一种具有多种治疗应用的有价值的药理学制剂,在控制疼痛和炎症方面具有特殊的治疗潜力,特别是在肌肉萎缩方面。然而,其对顺铂诱导的肌肉损失和萎缩的保护作用的机制在很大程度上仍然未知。本研究旨在探讨辣椒素对顺铂诱导的体外和体内肌肉损失和萎缩的有益作用。
采用体内和体外研究探讨辣椒素对顺铂诱导的肌肉损失的抗萎缩作用。通过预处理模型,用辣椒素预处理 24 小时,然后用顺铂处理 48 小时,我们利用 C2C12 肌管形成模型测量细胞活力分析、免疫荧光和蛋白质表达,以研究辣椒素在阻碍顺铂诱导的肌肉萎缩中的作用。C57BL/6 小鼠给予辣椒素(10、40mg/kgBW)预处理 5 周,顺铂(3mg/kgBW)连续 7 天,以评估动物模型中的肌肉萎缩,检查蛋白质和氧化应激,测试握力以评估肌肉力量。
我们的研究结果表明,顺铂导致细胞活力降低,并表现出萎缩过程中通常识别的一组标志性特征,包括肌管直径严重减小、Akt 和 mTOR 蛋白表达受到抑制。然而,辣椒素预处理可以通过上调骨骼肌中的蛋白质合成以及下调蛋白质降解标志物来改善顺铂诱导的肌肉萎缩。此外,辣椒素能够下调与细胞凋亡相关的标志物的蛋白表达、激活 TRPV1 和自噬进展调节以及溶酶体功能的恢复。在体内,辣椒素可以减轻氧化应激和细胞因子分泌,同时调节自噬相关溶酶体融合,提高握力,并缓解顺铂引起的体重减轻和腓肠肌萎缩。
这些发现表明,辣椒素可以恢复顺铂诱导的蛋白质合成和蛋白质降解途径之间的失衡,并且可能对顺铂诱导的肌肉萎缩具有保护作用。