Department of Andrology, the Center for Men's Health, Urologic Medical Center, Shanghai Key Laboratory of Reproductive Medicine, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200080, China.
Department of Urology, Department of Interventional Medicine, Guangdong Provincial Key Laboratory of Biomedical Imaging, The Fifth Affiliated Hospital, Sun Yat-sen University, Zhuhai, Guangdong Province, 519000, China.
Nat Commun. 2022 Jul 25;13(1):4302. doi: 10.1038/s41467-022-31950-9.
The corpus cavernosum is the most important structure for penile erection, and its dysfunction causes many physiological and psychological problems. However, its cellular heterogeneity and signalling networks at the molecular level are poorly understood because of limited access to samples. Here, we profile 64,993 human cavernosal single-cell transcriptomes from three males with normal erection and five organic erectile dysfunction patients. Cell communication analysis reveals that cavernosal fibroblasts are central to the paracrine signalling network and regulate microenvironmental homeostasis. Combining with immunohistochemical staining, we reveal the cellular heterogeneity and describe a detailed spatial distribution map for each fibroblast, smooth muscle and endothelial subcluster in the corpus cavernosum. Furthermore, comparative analysis and related functional experiments identify candidate regulatory signalling pathways in the pathological process. Our study provides an insight into the human corpus cavernosum microenvironment and a reference for potential erectile dysfunction therapies.
海绵体是阴茎勃起最重要的结构,其功能障碍会导致许多生理和心理问题。然而,由于样本获取有限,其在分子水平上的细胞异质性和信号网络仍知之甚少。在这里,我们对来自 3 名正常勃起男性和 5 名有机勃起功能障碍患者的 64993 个人类海绵体单细胞转录组进行了分析。细胞通讯分析表明,海绵体成纤维细胞是旁分泌信号网络的核心,调节微环境的动态平衡。结合免疫组织化学染色,我们揭示了细胞异质性,并描述了每个成纤维细胞、平滑肌和内皮亚群在海绵体中的详细空间分布图谱。此外,比较分析和相关功能实验鉴定了病理过程中候选的调节信号通路。我们的研究为人类海绵体微环境提供了深入了解,并为潜在的勃起功能障碍治疗提供了参考。