Exercise's impact on lung cancer molecular mechanisms: a current overview.

IF 3.5 3区 医学 Q2 ONCOLOGY Frontiers in Oncology Pub Date : 2024-11-01 eCollection Date: 2024-01-01 DOI:10.3389/fonc.2024.1479454
Annamaria Mancini, Francesca Maria Orlandella, Daniela Vitucci, Neila Luciano, Andreina Alfieri, Stefania Orrù, Giuliana Salvatore, Pasqualina Buono
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Abstract

Lung cancer is the major cause of cancer-related deaths worldwide with an estimated 1.8 million deaths and 2.4 million new cases in 2022. Poor cardiorespiratory fitness, dyspnea and fatigue are the common features in lung cancer patients, partially limiting the exercise prescription. Exercise improves cardiorespiratory and muscular fitness and reduces the risk of some types of cancer, including lung cancer. Recently, the American Society of Clinical Oncology has encouraged preoperative exercise for lung cancer patients. Nonetheless, only limited data, mostly obtained from mouse models of lung cancer, are available on the molecular effects of exercise in lung cancer. Thus, the present minireview aims to shed light on the molecular mechanisms induced by different type of exercise in lung cancer. In particular, the role of the exercise in tumor microenvironment remodeling, angiogenesis, gene expression, apoptosis and intermediate metabolism will be examined.

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运动对肺癌分子机制的影响:当前概述。
肺癌是全球癌症相关死亡的主要原因,预计 2022 年将有 180 万人死于肺癌,新增病例 240 万。心肺功能差、呼吸困难和疲劳是肺癌患者的共同特征,这在一定程度上限制了运动处方。运动可改善心肺功能和肌肉健康,降低包括肺癌在内的某些类型癌症的患病风险。最近,美国临床肿瘤学会鼓励肺癌患者进行术前锻炼。然而,关于运动对肺癌的分子影响,目前只有有限的数据,大部分数据来自肺癌小鼠模型。因此,本小节旨在阐明不同类型的运动对肺癌的分子机制。特别是将研究运动在肿瘤微环境重塑、血管生成、基因表达、细胞凋亡和中间代谢中的作用。
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来源期刊
Frontiers in Oncology
Frontiers in Oncology Biochemistry, Genetics and Molecular Biology-Cancer Research
CiteScore
6.20
自引率
10.60%
发文量
6641
审稿时长
14 weeks
期刊介绍: Cancer Imaging and Diagnosis is dedicated to the publication of results from clinical and research studies applied to cancer diagnosis and treatment. The section aims to publish studies from the entire field of cancer imaging: results from routine use of clinical imaging in both radiology and nuclear medicine, results from clinical trials, experimental molecular imaging in humans and small animals, research on new contrast agents in CT, MRI, ultrasound, publication of new technical applications and processing algorithms to improve the standardization of quantitative imaging and image guided interventions for the diagnosis and treatment of cancer.
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