CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Plasticity in Cancer Cells: The Master Engine of Therapeutic Resistance and Tumor Evolution.
Plasticity in Cancer Cells: The Master Engine of Therapeutic Resistance and Tumor Evolution.
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癌细胞可塑性是指癌细胞改变表型的能力,也是转移发生的主要必要条件之一。它被认为是肿瘤内异质性的主要来源之一,而肿瘤内异质性是癌症发展的关键因素,并可改变癌症对不同疗法的应答及耐药性。
不过,原文此处表述存在歧义:称肿瘤细胞在多种细胞信号通路(如丝裂原活化蛋白激酶、磷脂酰肌醇3-激酶、Wnt、Hedgehog和Notch通路)以及上皮-间质转化(EMT)和表型可塑性方面存在异常。癌症干细胞(CSC)被认为是肿瘤可塑性的组成部分,因为其具有增殖、分化和启动肿瘤生长的能力。近期研究提示,靶向肿瘤微环境信号、可塑性相关通路和表观遗传调节因子,可能为改善长期应答和减少表型失调提供有前景的治疗选择。这一方法将可塑性视为主要生物学驱动力而非次要现象,指出癌细胞可响应环境刺激,从上皮、间质、干细胞或休眠状态转变为耐药状态。
总体而言,这些结果提示细胞可塑性对肿瘤发生和治疗失败具有重要影响。因此,靶向可塑性相关通路、调节肿瘤微环境并采用适应性疗法,可能改善长期肿瘤控制。
Cancer cell plasticity refers to the ability of cancer cells to change their phenotype and is one of the primary requirements for metastasis. It is considered one of the main contributors to intratumoral heterogeneity, a key factor in the development of cancer, and is known to alter responses and resistance to different forms of therapy.
However, tumour cells are impaired in various cellular signalling pathways, such as mitogen-activated protein kinases, phosphoinositide-3-kinases, Wnt, Hedgehog, and Notch, as well as in epithelial-mesenchymal transition (EMT) and phenotypic plasticity. Cancer stem cells (CSCs) are considered an integral part of tumour plasticity, as they have the capacity to proliferate, differentiate, and initiate the growth of tumours.
Recent studies suggest that targeting signals from the tumor microenvironment, plasticity-related pathways, and epigenetic regulators may offer promising therapeutic options to improve long-term response and reduce phenotypic dysregulation.
This approach, which emphasizes plasticity as a primary biological driving force rather than a secondary one, allows cancer cells to change from an epithelial, mesenchymal, stem cell, or dormant state to a drug-resistant state in response to environmental stimuli. Taken together, these results suggest that cellular plasticity is important in tumour development and treatment failure.
Therefore, targeting pathways associated with plasticity, modifying the tumour microenvironment, and using adaptive therapies may improve long-term tumour control.
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