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小鼠前列腺肿瘤的分化及基质诱导的生长促进作用

Differentiation and stromal-induced growth promotion of murine prostatic tumors.

作者信息

Salm Sarah N, Takao Tetsuya, Tsujimura Akira, Coetzee Sandra, Moscatelli David, Wilson E Lynette

机构信息

Department of Cell Biology, MSB 634, New York University School of Medicine, 550 First Avenue, New York, NY 10016, USA.

出版信息

Prostate. 2002 May 15;51(3):175-88. doi: 10.1002/pros.10075.

Abstract

BACKGROUND

We have derived a panel of p53-null prostatic "basal" and "luminal" epithelial cell lines and their ras transformed counterparts to study stromal/epithelial interactions and the properties of tumors arising from "basal" and "luminal" cells.

METHODS

Previously derived normal murine prostatic "basal" epithelial (PE-B-1) and "luminal" epithelial (PE-L-1) cell lines were transformed with N-Ras. These lines and a spontaneously transformed "luminal" cell line were inoculated subcutaneously or orthotopically into athymic mice, alone or in combination with normal prostatic smooth muscle cells (SMC).

RESULTS

All transformed lines formed subcutaneous tumors. SMC significantly enhanced the growth rate of the tumors arising from the "basal" and one of the "luminal" cell lines. The transformed "basal" line gave rise to tumors expressing both "basal" and "luminal" cytokeratins.

CONCLUSIONS

Prostatic SMC promote the growth of transformed epithelial cells, suggesting that prostatic stroma may promote tumor development. Furthermore, transformed "basal" cells give rise to tumors containing "luminal" cells, suggesting that although most human tumors have a "luminal" phenotype, they may originate from transformed "basal" cells.

摘要

背景

我们已获得一组p53基因缺失的前列腺“基底”和“管腔”上皮细胞系及其ras转化的对应细胞系,以研究基质/上皮相互作用以及由“基底”和“管腔”细胞产生的肿瘤的特性。

方法

先前获得的正常小鼠前列腺“基底”上皮(PE-B-1)和“管腔”上皮(PE-L-1)细胞系用N-Ras进行转化。将这些细胞系以及一个自发转化的“管腔”细胞系单独或与正常前列腺平滑肌细胞(SMC)联合皮下或原位接种到无胸腺小鼠体内。

结果

所有转化细胞系均形成皮下肿瘤。SMC显著提高了由“基底”细胞系和其中一个“管腔”细胞系产生的肿瘤的生长速度。转化的“基底”细胞系产生的肿瘤表达“基底”和“管腔”细胞角蛋白。

结论

前列腺SMC促进转化上皮细胞的生长,提示前列腺基质可能促进肿瘤发展。此外,转化的“基底”细胞产生含有“管腔”细胞的肿瘤,提示尽管大多数人类肿瘤具有“管腔”表型,但它们可能起源于转化的“基底”细胞。

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