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Primary Xenografts of Human Prostate Tissue as a Model to Study Angiogenesis Induced by Reactive Stroma

机译:人类前列腺组织的原代异种移植作为研究反应性基质诱导血管生成的模型

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摘要

Characterization of the mechanism(s) of androgen-driven human angiogenesis could have significant implications for modeling new forms of anti-angiogenic therapies for CaP and for developing targeted adjuvant therapies to improve efficacy of androgen-deprivation therapy. However, models of angiogenesis by human endothelial cells localized within an intact human prostate tissue architecture are until now extremely limited. This report characterizes the burst of angiogenesis by endogenous human blood vessels in primary xenografts of fresh surgical specimens of benign prostate or prostate cancer (CaP) tissue that occurs between Days 6–14 after transplantation into SCID mice pre-implanted with testosterone pellets. The wave of human angiogenesis was preceded by androgen-mediated up-regulation of VEGF-A expression in the stromal compartment. The neo-vessel network anastomosed to the host mouse vascular system between Days 6–10 post-transplantation, the angiogenic response ceased by Day 15, and by Day 30 the vasculature had matured and stabilized, as indicated by a lack of leakage of serum components into the interstitial tissue space and by association of nascent endothelial cells with mural cells/pericytes. The angiogenic wave was concurrent with the appearance of a reactive stroma phenotype, as determined by staining for α-SMA, Vimentin, Tenascin, Calponin, Desmin and Masson's trichrome, but the reactive stroma phenotype appeared to be largely independent of androgen availability. Transplantation-induced angiogenesis by endogenous human endothelial cells present in primary xenografts of benign and malignant human prostate tissue was preceded by induction of androgen-driven expression of VEGF by the prostate stroma, and was concurrent with and the appearance of a reactive stroma phenotype. Androgen-modulated expression of VEGF-A appeared to be a causal regulator of angiogenesis, and possibly of stromal activation, in human prostate xenografts.
机译:雄激素驱动的人类血管生成机制的特征可能对建模新形式的CaP抗血管生成疗法和开发靶向辅助疗法以改善雄激素剥夺疗法的疗效具有重要意义。然而,迄今为止,由位于完整的人前列腺组织结构内的人内皮细胞进行的血管生成的模型非常有限。该报告的特征是在良性前列腺或前列腺癌(CaP)组织的新鲜外科手术标本的初次异种移植中,内源性人类血管发生的血管生成爆发发生在移植入预先植入睾丸激素颗粒的SCID小鼠后的第6至14天之间。在人类血管生成浪潮之前,雄激素介导的基质区室中的VEGF-A表达上调。移植后第6-10天,新血管网络与宿主小鼠血管系统吻合,第15天血管生成反应停止,第30天脉管系统已成熟并稳定,这表明血清成分缺乏进入间质组织空间,并通过新生内皮细胞与壁细胞/周细胞的结合。血管生成波与反应性基质表型的出现同时发生,这是通过对α-SMA,波形蛋白,腱糖蛋白,钙蛋白,德斯明和马森三色染色的结果确定的,但是反应基质的表型似乎很大程度上与雄激素的利用无关。存在于良性和恶性人前列腺组织的原代异种移植物中的内源性人内皮细胞移植诱导的血管生成之前,前列腺基质诱导了雄激素驱动的VEGF表达,并与反应性基质表型同时出现。在人前列腺异种移植物中,雄激素调节的VEGF-A的表达似乎是血管生成的可能的调节因子,可能是基质激活的调节因子。

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