Pascal Laura E, Ai Junkui, Vêncio Ricardo Z N, Vêncio Eneida F, Zhou Yong, Page Laura S, True Lawrence D, Wang Zhou, Liu Alvin Y
Cancer Microenviron. 2011 Jan 7;4(1):51-9. doi: 10.1007/s12307-010-0061-4.
Prostate carcinomas are surrounded by a layer of stromal fibroblastic cells that are characterized by increased expression of CD90. These CD90(+) cancer-associated stromal fibroblastic cells differ in gene expression from their normal counterpart, CD49a(+)CD90(lo) stromal smooth muscle cells; and were postulated to represent a less differentiated cell type with altered inductive properties. CD90(+) stromal cells were isolated from tumor tissue specimens and co-cultured with the pluripotent embryonal carcinoma cell line NCCIT in order to elucidate the impact of tumor-associated stroma on stem cells, and the 'cancer stem cell.' Transcriptome analysis identified a notable decreased induction of smooth muscle and prostate stromal genes such as PENK, BMP2 and ChGn compared to previously determined NCCIT response to normal prostate stromal cell induction. CD90(+) stromal cell secreted factors induced an increased expression of CD90 and differential induction of genes involved in extracellular matrix remodeling and the RECK pathway in NCCIT. These results suggest that, compared to normal tissue stromal cells, signaling from cancer-associated stromal cells has a markedly different effect on stem cells as represented by NCCIT. Given that stromal cells are important in directing organ-specific differentiation, stromal cells in tumors appear to be defective in this function, which may contribute to abnormal differentiation found in diseases such as cancer.
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前列腺癌被一层基质成纤维细胞所包围,这些细胞的特征是CD90表达增加。这些CD90(+)癌症相关基质成纤维细胞在基因表达上与其正常对应物CD49a(+)CD90(低)基质平滑肌细胞不同;据推测,它们代表了一种分化程度较低、诱导特性改变的细胞类型。从肿瘤组织标本中分离出CD90(+)基质细胞,并与多能胚胎癌细胞系NCCIT共培养,以阐明肿瘤相关基质对干细胞和“癌症干细胞”的影响。转录组分析表明,与之前确定的NCCIT对正常前列腺基质细胞诱导的反应相比,平滑肌和前列腺基质基因如PENK、BMP2和ChGn的诱导显著降低。CD90(+)基质细胞分泌的因子诱导NCCIT中CD90表达增加,并对参与细胞外基质重塑和RECK途径的基因产生不同的诱导作用。这些结果表明,与正常组织基质细胞相比,癌症相关基质细胞发出的信号对以NCCIT为代表的干细胞有明显不同的影响。鉴于基质细胞在指导器官特异性分化方面很重要,肿瘤中的基质细胞在这一功能上似乎存在缺陷,这可能导致在癌症等疾病中发现的异常分化。
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