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The chimpanzee as a model of human benign prostatic hyperplasia (see comments)

机译:黑猩猩是人类良性前列腺增生的模型(请参阅评论)

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PURPOSE: The etiology and natural history of benign prostatic hyperplasia (BPH), the most common benign disease in aging men, remain obscure. The canine BPH model has serious limitations but other animal BPH models have not been identified. We evaluated whether the chimpanzee, man's closest primate relative, developed spontaneous BPH. MATERIALS AND METHODS: A cross-sectional analysis of a colony (White Sands Research Center) that contained 700 chimpanzees was undertaken by sampling 63 male and female (controls) chimpanzees 8 to 35 years old. The presence of spontaneous BPH was evaluated by assessing pathological and clinical variables, including prostate volume, serum prostate specific antigen, presence of histological BPH, serum androgens and estradiol, and urodynamics studies. RESULTS: The chimpanzee had evidence of spontaneous histological BPH, and incidence and grade increased with age. Spontaneous BPH was manifested by increased prostate volume, higher serum prostate specific antigen, higher stromal/epithelial ratio and decreased urinary flow rates. As in man, serum androgens did not correlate with BPH in the chimpanzee. CONCLUSIONS: Male chimpanzees developed spontaneous histological BPH at the same relative point in their life cycle as humans which resulted clinically in larger prostates and decreased urinary flow rates. Serum hormone levels did not appear to correlate with BPH. A better understanding of the chimpanzee BPH model may lead to new therapeutic strategies for BPH in man.
机译:目的:良性前列腺增生症(BPH)的病因和自然病史是衰老男性中最常见的良性疾病,至今仍不清楚。犬BPH模型具有严重局限性,但尚未确定其他动物BPH模型。我们评估了人类最亲近的灵长类动物黑猩猩是否自发形成了BPH。材料与方法:通过对63头8至35岁的雄性和雌性(对照)黑猩猩进行抽样,对包含700只黑猩猩的菌落(白沙研究中心)进行了横断面分析。通过评估病理和临床变量来评估自发性BPH的存在,包括前列腺体积,血清前列腺特异性抗原,组织学BPH的存在,血清雄激素和雌二醇以及尿流动力学研究。结果:黑猩猩有自发性组织学BPH的证据,其发病率和等级随年龄增长而增加。自发性BPH表现为前列腺体积增加,血清前列腺特异性抗原升高,基质/上皮比例升高和尿流率降低。和人类一样,黑猩猩的血清雄激素与BPH不相关。结论:雄性黑猩猩在与人类生命周期相同的相对点发展出自发的组织学BPH,这在临床上导致较大的前列腺并降低了尿流率。血清激素水平似乎与BPH不相关。对黑猩猩BPH模型的更好理解可能会导致BPH在人体内的新治疗策略。

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