研究概要
人体内栖息着一个由数万亿微生物组成的复杂且动态的群落,统称为微生物群,它深刻影响着包括癌症在内的稳态和疾病过程。
中文摘要
人体内栖息着一个由数万亿微生物组成的复杂、动态的群落,统称为微生物群,它深刻影响着包括癌症在内的稳态和疾病过程。前列腺癌仍然是全球男性发病和死亡的主要原因;然而,关于其病因、进展和治疗耐药性,仍存在关键问题。多项流行病学研究已发现某些尿液和肠道微生物与前列腺癌风险增加之间存在关联,尽管其因果机制仍未完全阐明。近期研究提示,微生物群落失调,即菌群失调,被假设可驱动慢性炎症、诱导基因毒性损伤并调节类固醇代谢,从而影响肿瘤的发生和进展。不同研究之间相互矛盾的发现往往源于采样方法异质性、人群差异以及不同的生物信息学流程,凸显了标准化方案和可重复数据分析的迫切需求。例如,饮食引起的肠道微生物群改变可以以某种方式改变全身炎症和激素通路,从而使个体易发生恶性转化。同时,前列腺和尿液微生物被假设可助长局部炎症并促进前驱病变,尽管这种微生物活动是因果性的还是仅仅反映了已存在的肿瘤生物学,仍是一个关键的未解问题。微生物群驱动的机制也塑造了对放疗、化疗和新兴免疫疗法的反应,凸显了益生菌、益生元和粪菌移植等干预措施在增强治疗效果和减轻副作用方面的潜力。创新方法,包括人工智能辅助的预测建模、基于CRISPR(成簇规律间隔短回文重复序列)的微生物基因编辑和免疫调节策略(如CAR-T 细胞),为利用微生物群获得治疗益处提供了新途径。然而,关于长期安全性、生态平衡和个体患者因素的未解问题需要谨慎对待。通过将严谨的方法学与这些新技术相结合,前列腺癌研究可能最终利用微生物学见解来改进诊断工具、个性化治疗并改善患者结局。
展开英文摘要原文
The human body harbors a complex, dynamic community of trillions of microbes, collectively termed the microbiota, which profoundly affects homeostasis and disease processes, including cancer. Prostate cancer remains a major cause of morbidity and mortality among men worldwide; however, critical questions remain regarding its etiology, progression, and resistance to therapy. Multiple epidemiological studies have found associations between certain urinary and intestinal microorganisms and an increased prostate cancer risk, although the causal mechanisms remain incompletely understood. Recent studies suggest that dysregulated microbial communities, or dysbiosis, are hypothesized to drive chronic inflammation, induce genotoxic insults, and modulate steroid metabolism, thereby influencing tumor initiation and progression. Conflicting findings across different investigations often stem from heterogeneous sampling methods, population differences, and disparate bioinformat ics pipelines, underscoring the critical need for standardized protocols and reproducible data analytics. For example, diet induced alterations in the gut microbiota can shift systemic inflammatory and hormonal pathways in ways that predispose individuals to malignant transformation. Simultaneously, prostatic and urinary microbes are hypothesized to fuel local inflam mation and promote precursor lesions, although whether this microbial activity is causative or merely reflective of the exist ing tumor biology remains a key unresolved question. Microbiota-driven mechanisms also shape responses to radiotherapy, chemotherapy, and emerging immunotherapies, highlighting the potential of interventions such as probiotics, prebiotics, and fecal microbiota transplantation to enhance treatment efficacy and mitigate side effects. Innovative approaches, including ar tificial intelligence-assisted predictive modeling, CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats)-based microbial gene editing, and immunomodulatory strategies ( e.g. , chimeric antigen receptor-T cells), offer new avenues for exploiting microbiota for therapeutic benefits. Nevertheless, unresolved questions regarding the long-term safety, ecological balance, and individual patient factors require caution. By integrating rigorous methodologies with these novel technologies, prostate cancer research may ultimately harness microbial insights to refine diagnostic tools, personalize therapies, and im prove patient outcomes.
论文信息
- 作者
- Kwon WA、Kim H、Song YS
- 第一作者单位
- Department of Urology, Myongji Hospital, Hanyang University College of Medicine, Goyang, Korea. kein917@hanyang.ac.kr.South Korea
- 通讯作者单位
- Department of Obstetrics and Gynecology, Myongji Hospital, Hanyang University College of Medicine, Goyang, Korea. yssong@snu.ac.kr.South Korea
- 文献类型
- 综述
- 期刊
- The world journal of men's health2026 Jul