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线粒体代谢:个性化肿瘤学的新维度。

Mitochondrial Metabolism: A New Dimension of Personalized Oncology.

作者信息

Behnam Babak, Taghizadeh-Hesary Farzad

机构信息

Department of Regulatory Affairs, Amarex Clinical Research, NSF International, Germantown, MD 20874, USA.

ENT and Head and Neck Research Center and Department, The Five Senses Health Institute, School of Medicine, Iran University of Medical Sciences, Tehran 1445613131, Iran.

出版信息

Cancers (Basel). 2023 Aug 11;15(16):4058. doi: 10.3390/cancers15164058.

Abstract

Energy is needed by cancer cells to stay alive and communicate with their surroundings. The primary organelles for cellular metabolism and energy synthesis are mitochondria. Researchers recently proved that cancer cells can steal immune cells' mitochondria using nanoscale tubes. This finding demonstrates the dependence of cancer cells on normal cells for their living and function. It also denotes the importance of mitochondria in cancer cells' biology. Emerging evidence has demonstrated how mitochondria are essential for cancer cells to survive in the harsh tumor microenvironments, evade the immune system, obtain more aggressive features, and resist treatments. For instance, functional mitochondria can improve cancer resistance against radiotherapy by scavenging the released reactive oxygen species. Therefore, targeting mitochondria can potentially enhance oncological outcomes, according to this notion. The tumors' responses to anticancer treatments vary, ranging from a complete response to even cancer progression during treatment. Therefore, personalized cancer treatment is of crucial importance. So far, personalized cancer treatment has been based on genomic analysis. Evidence shows that tumors with high mitochondrial content are more resistant to treatment. This paper illustrates how mitochondrial metabolism can participate in cancer resistance to chemotherapy, immunotherapy, and radiotherapy. Pretreatment evaluation of mitochondrial metabolism can provide additional information to genomic analysis and can help to improve personalized oncological treatments. This article outlines the importance of mitochondrial metabolism in cancer biology and personalized treatments.

摘要

癌细胞需要能量来维持生存并与周围环境进行交流。细胞代谢和能量合成的主要细胞器是线粒体。研究人员最近证明,癌细胞能够利用纳米级管道窃取免疫细胞的线粒体。这一发现表明癌细胞在生存和功能方面对正常细胞的依赖。它还表明了线粒体在癌细胞生物学中的重要性。新出现的证据表明,线粒体对于癌细胞在恶劣的肿瘤微环境中生存、逃避免疫系统、获得更具侵袭性的特征以及抵抗治疗至关重要。例如,功能性线粒体可以通过清除释放的活性氧来提高癌症对放疗的抵抗力。因此,根据这一观点,靶向线粒体可能会提高肿瘤治疗效果。肿瘤对抗癌治疗的反应各不相同,从完全缓解到治疗期间甚至癌症进展都有。因此,个性化癌症治疗至关重要。到目前为止,个性化癌症治疗一直基于基因组分析。有证据表明,线粒体含量高的肿瘤对治疗更具抗性。本文阐述了线粒体代谢如何参与癌症对化疗、免疫疗法和放疗的抗性。线粒体代谢的预处理评估可以为基因组分析提供额外信息,并有助于改善个性化肿瘤治疗。本文概述了线粒体代谢在癌症生物学和个性化治疗中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7d8/10452105/1d2ea28c84e3/cancers-15-04058-g001.jpg

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