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Establishment and characterization of androgen-independent human prostate cancer LNCaP cell model.

机译:雄激素非依赖性人前列腺癌LNCaP细胞模型的建立和表征。

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BACKGROUND: The acquisition of an androgen-independent phenotype is the most serious issue of prostate cancer treatment. Although several experimental cell models have been reported for studying androgen independence, they have limited applications related to hormone-refractory prostate cancer. To investigate the molecular mechanism of androgen-independent growth of prostate cancer, we established a useful LNCaP cell model that resembles the clinical scenario of hormone-refractory prostate cancer. METHODS: Androgen-sensitive LNCaP parental cells were continuously maintained in a regular cell-culture medium, that is, phenol red-positive RPMI 1640 medium supplemented with 5% fetal bovine serum and 1% glutamine. Upon passage, the androgen responsiveness of those cells decreased, to a level lower than that of parental cells. We examined the growth properties and androgen responsiveness of these different LNCaP cells in vitro and in vivo. Cytogenetic characteristics and expression of androgen receptors (ARs) and prostate-specific antigen (PSA) were determined. RESULTS: Upon continuous passage, the biological behavior of parental C-33 cells (passage number less than 33) was altered. C-81 cells (passage number higher than 81) clearly exhibited more aggressive growth and lower androgen responsiveness than C-33 and C-51 cells (passage number between 35 and 80) in vitro and in vivo. Nevertheless, all these cells expressed a similar level of functional AR protein as well as a similar genetic profile. Moreover, in a steroid-reduced culture condition, C-81 cells secreted a higher level of PSA than C-33 cells. CONCLUSIONS: Our LNCaP cell model closely recapitulates the progression of human prostate cancer from the androgen-responsive to the hormone-refractory state under the androgen nondeprived condition. This cell model may provide the opportunity to understand the molecular mechanisms associated with the acquisition of androgen independence during human prostate cancer progression.
机译:背景:雄激素非依赖性表型的获得是前列腺癌治疗中最严重的问题。尽管已经报道了几种用于研究雄激素非依赖性的实验性细胞模型,但它们在激素难治性前列腺癌方面的应用有限。为了研究雄激素非依赖性前列腺癌生长的分子机制,我们建立了一个有用的LNCaP细胞模型,该模型类似于激素难治性前列腺癌的临床情况。方法:将雄激素敏感性LNCaP亲本细胞连续保存在常规细胞培养基中,即补充了5%胎牛血清和1%谷氨酰胺的酚红阳性RPMI 1640培养基。传代后,那些细胞的雄激素反应性降低,降至低于亲代细胞的水平。我们检查了这些不同的LNCaP细胞在体外和体内的生长特性和雄激素反应性。确定了细胞遗传学特征和雄激素受体(ARs)和前列腺特异性抗原(PSA)的表达。结果:连续传代后,亲代C-33细胞(传代数小于33)的生物学行为发生了改变。与C-33和C-51细胞(35至80之间的传代次数)相比,在体外和体内,C-81细胞(高于81的传代次数)明显表现出更具侵略性的生长和更低的雄激素响应性。然而,所有这些细胞均表达相似水平的功能性AR蛋白以及相似的遗传特征。此外,在类固醇减少的培养条件下,C-81细胞比C-33细胞分泌更高水平的PSA。结论:我们的LNCaP细胞模型密切概括了人类前列腺癌在雄激素未被剥夺的情况下从雄激素反应到激素难治状态的进展。这种细胞模型可以提供机会,以了解与人类前列腺癌进展过程中获得雄激素非依赖性相关的分子机制。

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