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与犬良性前列腺增生发病相关的转录特征。

A transcriptional signature associated with the onset of benign prostate hyperplasia in a canine model.

机构信息

Veterinary Faculty, Departament of Medicine and Animal Surgery, Autonomous University of Barcelona, Spain.

出版信息

Prostate. 2010 Sep 15;70(13):1402-12. doi: 10.1002/pros.21175.

Abstract

BACKGROUND

Benign prostatic hyperplasia (BPH) represents the most frequent proliferative abnormality of the human prostate. In spite of the well-characterized architectural development of BPH, little is known about the cellular and molecular events that contribute to it.

METHODS

We have developed an animal model to evaluate the follow-up of hormone-induced BPH and the analysis of the gene expression associated with BPH. Immunohistochemistry on human patient samples validated the BPH-related molecular alterations.

RESULTS

Canine specific Affymetrix microarray analysis performed on sequential biopsies obtained from a beagle dog dynamic model characterized a number of genes altered during the onset of BPH. In addition to the genes involved in calcification, matrix remodeling, detoxification, cell movement, and mucosa protection (MGP, MMP2, TIMP2, ITIH3, GST, MT2A, SULT1A1, FKBP1B, MUC1, STRBP, TFF3), the up-regulation of TGFB3 and CLU indicated a complete adjustment of the transdifferentiation, senescence and apoptosis programs. The up-regulation of Clusterin was validated by RT-qPCR and immunohistochemistry, both in the dog dynamic model and in human samples, further confirming the suitability of the animal model for the study of the molecular alterations associated with BPH.

CONCLUSIONS

Transcriptome analysis performed on a dynamic animal model that accurately mimicked the human clinic, allowed us to characterize a gene expression pattern associated with the onset of BPH.

摘要

背景

良性前列腺增生(BPH)是人类前列腺最常见的增生性病变。尽管 BPH 的结构发育已得到很好的描述,但对于导致其发生的细胞和分子事件知之甚少。

方法

我们开发了一种动物模型来评估激素诱导的 BPH 的后续发展和与 BPH 相关的基因表达分析。对人患者样本进行免疫组织化学染色验证了与 BPH 相关的分子改变。

结果

对从小猎犬动态模型中获得的连续活检进行的犬种特异性 Affymetrix 微阵列分析,鉴定出了在 BPH 发生过程中发生改变的多个基因。除了涉及钙化、基质重塑、解毒、细胞运动和粘膜保护的基因(MGP、MMP2、TIMP2、ITIH3、GST、MT2A、SULT1A1、FKBP1B、MUC1、STRBP、TFF3)外,TGFB3 和 CLU 的上调表明完全调整了转分化、衰老和凋亡程序。CLU 的上调通过 RT-qPCR 和免疫组织化学在狗动态模型和人样本中得到了验证,进一步证实了该动物模型适用于研究与 BPH 相关的分子改变。

结论

在准确模拟人类临床的动态动物模型上进行的转录组分析,使我们能够描述与 BPH 发病相关的基因表达模式。

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