Nguyen Nhat Minh, Song Kang Moon, Choi Min Ji, Ghatak Kalyan, Limanjaya Anita, Kwon Mi Hye, Chung Doo Yong, Ock Jiyeon, Yin Guo Nan, Park Chang Shin, Suh Jun Kyu, Ryu Ji Kan
National Research Center for Sexual Medicine and Department of Urology, Inha University School of Medicine, Incheon, Korea.
Department of Pharmacology and Medicinal Toxicology Research Center, Inha University School of Medicine, Incheon, Korea.
World J Mens Health. 2021 Jan;39(1):131-138. doi: 10.5534/wjmh.190089. Epub 2019 Aug 27.
Proper functional and structural integrity of nervous and vascular system in urinary bladder plays an important role in normal bladder function and the disruption of these structures is known to be related to lower urinary tract symptoms. Here, we present an immunohistochemical staining method that delineates neurovascular structures in the mouse urinary bladder by using immunohistochemical staining with three-dimensional reconstruction.
The urinary bladder was harvested from 8-week-old C57BL/6 male mouse. Lamina propria and detrusor muscle layer were dissected for whole mount staining, and thick-cut (60-μm) sections were prepared for full-thickness bladder staining. Immunofluorescent staining of bladder tissue was performed with antibodies against CD31 (an endothelial cell marker), smooth muscle α-actin (a smooth muscle cell marker), NG2 (a pericyte marker), and βIII-tubulin (a neuronal marker). We reconstructed three-dimensional images of bladder neurovascular system from stacks of two-dimensional images.
Three-dimensional images obtained from thick-cut sections clearly provided good anatomic information about neurovascular structures in the three layers of bladder, such as urothelium, lamina propria, and detrusor muscle layer. Whole mount images of lamina propria and detrusor muscle layer also clearly delineated spatial relationship between nervous and vascular systems. The microvessel density was higher in the lamina propria than in the detrusor muscle layer. Nerve fibers were evenly innervated into the lamina propria and detrusor muscle.
This study provides comprehensive insight into three-dimensional neurovascular structures of mouse urinary bladder. Our technique may constitute a standard tool to evaluate pathologic changes in a variety of urinary bladder diseases.
膀胱神经和血管系统的正常功能及结构完整性对膀胱正常功能起着重要作用,已知这些结构的破坏与下尿路症状有关。在此,我们介绍一种免疫组织化学染色方法,通过三维重建免疫组织化学染色来描绘小鼠膀胱中的神经血管结构。
从8周龄C57BL/6雄性小鼠获取膀胱。解剖固有层和逼尿肌层进行整装染色,并制备厚切片(60μm)用于膀胱全层染色。用抗CD31(内皮细胞标志物)、平滑肌α-肌动蛋白(平滑肌细胞标志物)、NG2(周细胞标志物)和βIII-微管蛋白(神经元标志物)的抗体对膀胱组织进行免疫荧光染色。我们从二维图像堆栈重建膀胱神经血管系统的三维图像。
从厚切片获得的三维图像清楚地提供了关于膀胱三层(如尿路上皮、固有层和逼尿肌层)中神经血管结构的良好解剖信息。固有层和逼尿肌层的整装图像也清楚地描绘了神经和血管系统之间的空间关系。固有层中的微血管密度高于逼尿肌层。神经纤维均匀地分布于固有层和逼尿肌。
本研究提供了对小鼠膀胱三维神经血管结构的全面见解。我们的技术可能构成评估各种膀胱疾病病理变化的标准工具。