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Cancer Stem Cell Quiescence and Plasticity as Major Challenges in Cancer Therapy

机译:癌症干细胞静态和可塑性作为癌症治疗的主要挑战

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摘要

Cells with stem-like properties, tumorigenic potential, and treatment-resistant phenotypes have been identified in many human malignancies. Based on the properties they share with nonneoplastic stem cells or their ability to initiate and propagate tumors in vivo, such cells were designated as cancer stem (stem-like) or tumor initiating/propagating cells. Owing to their implication in treatment resistance, cancer stem cells (CSCs) have been the subject of intense investigation in past years. Comprehension of CSCs' intrinsic properties and mechanisms they develop to survive and even enhance their aggressive phenotype within the hostile conditions of the tumor microenvironment has reoriented therapeutic strategies to fight cancer. This report provides selected examples of malignancies in which the presence of CSCs has been evidenced and briefly discusses methods to identify, isolate, and functionally characterize the CSC subpopulation of cancer cells. Relevant biological targets in CSCs, their link to treatment resistance, proposed targeting strategies, and limitations of these approaches are presented. Two major aspects of CSC physiopathology, namely, relative in vivo quiescence and plasticity in response to microenvironmental cues or treatment, are highlighted. Implications of these findings in the context of the development of new therapies are discussed.
机译:在许多人体恶性肿瘤中鉴定出具有干燥性质,致瘤潜力和治疗耐药表型的细胞。基于它们与非宝挥干细胞分享的性质或其在体内引发和繁殖肿瘤的能力,将这种细胞指定为癌症干(干草状)或肿瘤引发/繁殖细胞。由于它们在治疗抵抗中的含义,癌症干细胞(CSCs)是过去几年剧烈调查的主题。在肿瘤微环境的敌对条件下,对CSCS的内在性质和机制的理解在肿瘤微环境的敌对条件下,他们发展甚至增强了它们的侵袭性表型。本报告提供了所选择的恶性肿瘤的例子,其中已经证明了CSC的存在,并简要讨论了鉴定,分离和在功能表征癌细胞的CSC亚群的方法。提出了CSC中的相关生物学靶标,介绍了它们与治疗抵抗,提出的靶向策略和这些方法的限制的联系。 CSC Physiopathology的两个主要方面,即相对于体内静态和可塑性响应于微环境提示或治疗而相对的。讨论了这些发现在新疗法发展的背景下的影响。

著录项

  • 来源
    《Stem cells international》 |2016年第2期|共16页
  • 作者单位

    Univ Strasbourg Lab Innovat Therapeut CNRS UMR7200 Lab Excellence Medalis Fac Pharm 74 Route;

    Univ Strasbourg Lab Innovat Therapeut CNRS UMR7200 Lab Excellence Medalis Fac Pharm 74 Route;

    Univ Strasbourg Lab Innovat Therapeut CNRS UMR7200 Lab Excellence Medalis Fac Pharm 74 Route;

    Univ Strasbourg Lab Innovat Therapeut CNRS UMR7200 Lab Excellence Medalis Fac Pharm 74 Route;

    Univ Strasbourg Lab Innovat Therapeut CNRS UMR7200 Lab Excellence Medalis Fac Pharm 74 Route;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

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