CD44v9和CD98hc是HNSCC中肿瘤干细胞的标志物

Y. Kawasaki, Y. Omori
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引用次数: 0

摘要

收稿日期:2018年6月03日;录用日期:2018年6月22日;癌症干细胞是癌症治疗中最重要的靶点。Prince等人报道CD44是HNSCC bbb中的癌症干细胞标记物。但是在CD44中可以发现不同的同工异构体,因此尚不清楚哪种变体是最重要的。肿瘤干细胞的特点之一是具有抗辐射性。对不同的HNSCC细胞系进行辐照,建立了抗辐射细胞系。辐照后,CD44v9在所有HNSCC细胞系[2]中的表达均升高。目前,CD44v9的重要性正在研究中。CD44v9在癌症干细胞中表达,其功能是增强氧化应激避免机制,从而导致对治疗的抵抗。这说明氧化应激对肿瘤细胞的存活和增殖有重要作用,氧化应激具有诱导分化和超过一定阈值时细胞死亡的双重作用。此外,在细胞膜中,CD44v9与xCT结合,xCT是一种轻链亚基系统xc-,一种将半胱氨酸带入细胞的转运体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CD44v9 and CD98hc is the marker of cancer stem cells in HNSCC
Received: June 03, 2018; Accepted: June 22, 2018; Published: June 25, 2018 Cancer stem cells are the most important targets for cancer therapy. Prince et al. report CD44 is the cancer stem cell marker in HNSCC [1]. But various isoforms can be found in CD44, so it is unclear that which variant is the most important. One of characteristic of cancer stem cell is the radio-resistance. Various HNSCC cell lines are irradiated and we established radio-resistant cell line. After irradiation, the expression of CD44v9 increased in all HNSCC cell lines [2]. At present, the importance of CD44v9 is being studies. CD44v9 is expressed in cancer stem cells and functions to enhance the oxidative stress avoidance mechanism that causes resistance to treatment. This indicates that oxidative stress is important for the survival and proliferation of tumor cells, such stress has dual effects of inducing not only differentiation but also cell death when a certain threshold value is exceeded. In addition, in cell membranes, CD44v9 binds to xCT, which is a light chain subunit system xc-, a transporter that takes cysteine into cells.
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