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Stem cells in prostatic epithelia

机译:前列腺上皮中的干细胞

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摘要

The normal prostate is, structurally and functionally, a highly complex glandular tissue in which populations of epithelial and stromal cells interact, one with the other, and are under a constant state of proliferation, differentiation, elimination and selective secondary replenishment so that functional integrity of the tissue is maintained. The ability of normal prostatic tissue to maintain its structure and function is dependent upon retention of cells, generally regarded as ‘stem cells’, which are able to respond by proliferation and selective differentiation within a wide range of phenotypic alternatives. With respect to cells in the epithelial compartment, replenishment is possible at several levels from within distinct pathways of normal cellular differentiation. It is now appreciated that fully differentiated prostatic epithelial cells retain a far greater degree of phenotypic ‘plasticity’ than was earlier apparent from morphological examination of the intact tissue. This inherent plasticity, coupled with the ability of the intact tissue to respond to diverse environmental (particularly humoral) stimuli by regenerating a wide and divergent spectrum of functional prostatic epithelial phenotypes is its strength — but also its weakness. Disturbance and distortion of the homeostatic regulatory mechanisms, whether physical or humoral, which control the normal sequence of epithelial proliferation, differentiation and elimination exposes these cells, particularly multipotent ‘stem cells’, to an increased probability of genetic change, thus resulting in either transient, or permanent, neoplastic transformation.
机译:正常的前列腺在结构和功能上是高度复杂的腺体组织,其中上皮细胞和基质细胞群相互影响,并处于恒定的增殖,分化,消除和选择性二次补充状态,从而使功能正常。组织得到维护。正常前列腺组织维持其结构和功能的能力取决于通常被称为“干细胞”的细胞的保留能力,这些细胞能够在多种表型选择中通过增殖和选择性分化做出反应。关于上皮区室中的细胞,可以在正常细胞分化的不同途径内以几个水平进行补充。现已认识到,与从完整组织的形态学检查中发现的情况相比,完全分化的前列腺上皮细胞保留了更高程度的表型“可塑性”。这种固有的可塑性,再加上完整的组织通过再生功能性前列腺上皮表型的广泛而多样的频谱来响应各种环境(尤其是体液)刺激的能力,是它的强项,同时也是它的弱点。控制上皮增殖,分化和消除的正常顺序的体内或体液稳态调节机制的干扰和破坏,使这些细胞,尤其是多能的“干细胞”暴露于遗传变化的可能性增加,从而导致短暂的或永久性赘生性转化。

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