Iwasaki Hiroko, Suda Toshio
Department of Cell Differentiation, The Sakaguchi Laboratory of Developmental Biology, Keio University School of Medicine, Tokyo, Japan.
Cancer Sci. 2009 Jul;100(7):1166-72. doi: 10.1111/j.1349-7006.2009.01177.x. Epub 2009 Apr 22.
The unique characteristics of stem cells, specifically pluripotency and self-renewal, are critical for sustaining the lifelong functionality of organs. Stem cells reside in a special microenvironment called the niche. Stem cells interact with the niche via adhesion molecules and exchange molecular signals that maintain the specific features of stem cells. A better understanding of the nature of stem cells and their niches is expected to provide an alternative approach to the treatment of various serious diseases, including cancer, in clinical practice. It has been suggested that tumor tissue contains a type of stem cell referred to as a cancer stem cell. Interestingly, there are a number of molecules that are commonly expressed in normal and cancer stem cells that lead to different phenomena depending on the local conditions. In this review, the hematopoietic system is used as an example to show how stem cells interact with different niches. The regulatory mechanisms of two kinds of bone marrow niche, osteoblastic and vascular, are covered in this review. Furthermore, the involvement of the niche in cancer stem cell regulation, tumor invasion and metastasis, and its response to oxidative stress is described, and novel therapeutic approaches involving the interactions between cancer stem cells and their niches are addressed.
干细胞的独特特性,特别是多能性和自我更新能力,对于维持器官的终身功能至关重要。干细胞存在于一种称为龛的特殊微环境中。干细胞通过黏附分子与龛相互作用,并交换维持干细胞特定特征的分子信号。更好地理解干细胞及其龛的本质有望在临床实践中为包括癌症在内的各种严重疾病提供一种替代治疗方法。有人提出肿瘤组织含有一种称为癌症干细胞的干细胞类型。有趣的是,正常干细胞和癌症干细胞中存在一些共同表达的分子,这些分子会根据局部条件导致不同的现象。在本综述中,以造血系统为例展示干细胞如何与不同的龛相互作用。本综述涵盖了两种骨髓龛(成骨细胞龛和血管龛)的调节机制。此外,还描述了龛在癌症干细胞调节、肿瘤侵袭和转移中的作用及其对氧化应激的反应,并探讨了涉及癌症干细胞与其龛之间相互作用的新型治疗方法。