Ferrucci Danilo, Biancardi Manoel F, Nishan Umar, Rosa-Ribeiro Rafaela, Carvalho Hernandes F
Department of Structural and Functional Biology, Institute of Biology, State University of Campinas (UNICAMP), Campinas SP, Brazil.
Department of Histology, Embryology, and Cell Biology, Institute of Biological Sciences, Federal University of Goiás, Goiania GO, Brazil.
Cell Biol Int. 2017 Nov;41(11):1265-1270. doi: 10.1002/cbin.10867. Epub 2017 Sep 29.
In this commentary, we propose a relationship between desquamation, initially described as the collective detachment and deletion of epithelial cell in the prostate gland after castration, and proliferative inflammatory atrophy (PIA) and stromal growth in benign prostate hyperplasia (BPH). First, in response to diverse stimuli, including inflammatory mediators, epithelial cells desquamate and leave a large surface of the luminal side of the basement membrane (BM) exposed. Basal cells are activated into intermediate-type cells, which change morphology to cover and remodel the exposed BM (simple atrophy) to a new physiological demand (such as in the hypoandrogen environment, simulated by surgical and/or chemical castration) and/or to support re-epithelialization (under normal androgen levels). In the presence of inflammation (that might be the cause of desquamation), the intermediate-type cells proliferate and characterize PIA. Second, in other circumstances, desquamation is an early step of epithelial-to-mesenchymal transition (EMT), which contributes to stromal growth, as suggested by some experimental models of BPH. The proposed associations correlate unexplored cell behaviors and reveal the remarkable plasticity of the prostate epithelium that might be at the origin of prostate diseases.
在本评论中,我们提出了去势后最初被描述为前列腺上皮细胞集体脱离和缺失的脱屑与良性前列腺增生(BPH)中的增殖性炎性萎缩(PIA)和基质生长之间的关系。首先,响应包括炎症介质在内的多种刺激,上皮细胞发生脱屑,使基底膜(BM)腔面的大片表面暴露。基底细胞被激活成为中间型细胞,这些细胞改变形态以覆盖并重塑暴露的BM(单纯萎缩)以适应新的生理需求(如在手术和/或化学去势模拟的低雄激素环境中)和/或支持再上皮化(在正常雄激素水平下)。在存在炎症(可能是脱屑的原因)的情况下,中间型细胞增殖并表现出PIA。其次,在其他情况下,脱屑是上皮-间质转化(EMT)的早期步骤,如一些BPH实验模型所示,这有助于基质生长。所提出的关联将未被探索的细胞行为联系起来,并揭示了前列腺上皮可能是前列腺疾病起源的显著可塑性。