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骨肉瘤对传统治疗的耐药机制

Mechanisms of Resistance to Conventional Therapies for Osteosarcoma.

作者信息

Marchandet Louise, Lallier Morgane, Charrier Céline, Baud'huin Marc, Ory Benjamin, Lamoureux François

机构信息

UMR1238, Phy-OS, Sarcomes Osseux et Remodelage des Tissus Calcifiés, INSERM, Université de Nantes, 44035 Nantes, France.

CHU de Nantes, 44035 Nantes, France.

出版信息

Cancers (Basel). 2021 Feb 8;13(4):683. doi: 10.3390/cancers13040683.

Abstract

Osteosarcoma (OS) is the most common primary bone tumor, mainly occurring in children and adolescents. Current standard therapy includes tumor resection associated with multidrug chemotherapy. However, patient survival has not evolved for the past decades. Since the 1970s, the 5-year survival rate is around 75% for patients with localized OS but dramatically drops to 20% for bad responders to chemotherapy or patients with metastases. Resistance is one of the biological processes at the origin of therapeutic failure. Therefore, it is necessary to better understand and decipher molecular mechanisms of resistance to conventional chemotherapy in order to develop new strategies and to adapt treatments for patients, thus improving the survival rate. This review will describe most of the molecular mechanisms involved in OS chemoresistance, such as a decrease in intracellular accumulation of drugs, inactivation of drugs, improved DNA repair, modulations of signaling pathways, resistance linked to autophagy, disruption in genes expression linked to the cell cycle, or even implication of the micro-environment. We will also give an overview of potential therapeutic strategies to circumvent resistance development.

摘要

骨肉瘤(OS)是最常见的原发性骨肿瘤,主要发生于儿童和青少年。目前的标准治疗包括与多药化疗相关的肿瘤切除。然而,在过去几十年中患者生存率并未得到改善。自20世纪70年代以来,局限性骨肉瘤患者的5年生存率约为75%,但对于化疗反应不佳或有转移的患者,这一比例急剧降至20%。耐药是导致治疗失败的生物学过程之一。因此,有必要更好地理解和破译对传统化疗耐药的分子机制,以便开发新策略并为患者调整治疗方案,从而提高生存率。本综述将描述骨肉瘤化疗耐药中涉及的大多数分子机制,如药物细胞内蓄积减少、药物失活、DNA修复改善、信号通路调节、自噬相关耐药、细胞周期相关基因表达紊乱,甚至微环境的影响。我们还将概述规避耐药发展的潜在治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9859/7915189/bab18cba72eb/cancers-13-00683-g001.jpg

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