Ma Shuang, Lu Ying, Sui Shang, Yang Jia-Shuo, Fu Bing-Bing, Tan Pei-Xin, Chai Yicheng, Lv Jiaqi, Kong Lingyu, Wu Xiaolin, Gao Yi-Bo, Yan Tao
School of Information Science and Engineering, Shenyang Ligong University, Shenyang, China.
St. John's Kilmarnock School, Breslau, ON, Canada.
Front Immunol. 2025 Apr 2;16:1572821. doi: 10.3389/fimmu.2025.1572821. eCollection 2025.
The intricate interaction between skeletal muscle biomechanics, the tumor microenvironment, and immunotherapy constitutes a pivotal research focus oncology. This work provides a comprehensive review of methodologies for evaluating skeletal muscle biomechanics, including handheld dynamometry, advanced imaging techniques, electrical impedance myography, elastography, and single-fiber experiments to assess muscle quality and performance. Furthermore, it elucidates the mechanisms, applications, and limitations of various immunotherapy modalities, including immune checkpoint inhibitors, adoptive cell therapy, cancer vaccines, and combined chemoimmunotherapy, while examining their effects on skeletal muscle function and systemic immune responses. Key findings indicate that although immunotherapy is effective in augmenting antitumor immunity, it frequently induces muscle-related adverse effects such as weakness, fatigue, or damage, primarily mediated by cytokine release and immune activation. This work underscores the significance of immune niches within the tumor microenvironment in influencing treatment outcomes and proposes strategies to optimize therapy through personalized regimens and combinatorial approaches. This review highlights the need for further research on the formation of immune niches and interactions muscle-tumor. Our work is crucial for advancing the efficacy of immunotherapy, reducing adverse effects, and ultimately improving survival rates and quality of life of patients with cancer.
骨骼肌生物力学、肿瘤微环境与免疫疗法之间复杂的相互作用构成了肿瘤学的一个关键研究重点。这项工作全面综述了评估骨骼肌生物力学的方法,包括手持测力计法、先进成像技术、电阻抗肌电图、弹性成像以及评估肌肉质量和性能的单纤维实验。此外,它阐明了各种免疫疗法的机制、应用和局限性,包括免疫检查点抑制剂、过继性细胞疗法、癌症疫苗和联合化学免疫疗法,同时研究了它们对骨骼肌功能和全身免疫反应的影响。主要研究结果表明,尽管免疫疗法在增强抗肿瘤免疫力方面有效,但它经常会引发与肌肉相关的不良反应,如虚弱、疲劳或损伤,主要由细胞因子释放和免疫激活介导。这项工作强调了肿瘤微环境中免疫龛在影响治疗结果方面的重要性,并提出了通过个性化方案和联合方法优化治疗的策略。这篇综述强调了对免疫龛的形成以及肌肉与肿瘤相互作用进行进一步研究的必要性。我们的工作对于提高免疫疗法的疗效、减少不良反应并最终提高癌症患者的生存率和生活质量至关重要。