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首页> 外文期刊>Cellular Signalling >Cell surface adhesion molecules and adhesion-initiated signaling: Understanding of anoikis resistance mechanisms and therapeutic opportunities
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Cell surface adhesion molecules and adhesion-initiated signaling: Understanding of anoikis resistance mechanisms and therapeutic opportunities

机译:细胞表面黏附分子和黏附起始信号:理解厌食症抵抗机制和治疗机会

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Cells express various cell surface adhesion molecules (receptors) that not only mechanically serve as contacting sites between the cell and extracellular matrix (ECM) or adjacent cells, but also initiate intracellular signaling pathways modulating important cellular events including survival and proliferation. Normal cells undergo apoptosis when lacking ECM attachment. This type of cell death has been termed anoikis. Anoikis can be viewed as a normal process which ensures tissue homeostasis and failure to execute the anoikis program or resistance to anoikis could result in adherent cells surviving under suspension condition and proliferating at ectopic sites where the matrix proteins are different from those the cells originally contact. Resistance to anoikis is emerging as a hallmark of metastatic cancers which enables cancer cells to disseminate to distant organs through systemic circulation. In this review, we will discuss the molecular basis of adhesion-initiated signaling, the impact of loss of cell-ECM adhesion on normal cell survival, the role of cancer cell aggregate formation via intercellular adhesion under non-adherent condition, and mechanisms of anoikis resistance developed in metastatic cancer cells. Understanding of these aspects will provide opportunities to find new potential molecular targets, and therapeutic strategies based on these findings will likely prove to be more specific and effective.
机译:细胞表达各种细胞表面粘附分子(受体),这些分子不仅在机械上充当细胞与细胞外基质(ECM)或相邻细胞之间的接触位点,而且还启动了调节重要细胞事件(包括存活和增殖)的细胞内信号传导途径。缺少ECM附着时,正常细胞会发生凋亡。这种类型的细胞死亡被称为无精症。失语症可以被视为正常的过程,可以确保组织的动态平衡和执行失语症程序的失败或对失眠症的抵抗可能导致粘附细胞在悬浮条件下存活并在异位部位增殖,而异位部位的基质蛋白与最初接触的细胞不同。对无精子症的抵抗力正在成为转移性癌症的标志,转移性癌症使癌细胞能够通过系统性循环扩散到遥远的器官。在这篇综述中,我们将讨论粘附启动信号的分子基础,细胞ECM粘附丧失对正常细胞存活的影响,在非粘附条件下通过细胞间粘附形成癌细胞聚集体的作用以及无神经机制。在转移性癌细胞中产生耐药性。对这些方面的理解将为寻找新的潜在分子靶标提供机会,并且基于这些发现的治疗策略可能会被证明更为特异性和有效。

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