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Merck
CN
  • Three-Dimensional Reconstruction of Neurovascular Network in Whole Mount Preparations and Thick-Cut Transverse Sections of Mouse Urinary Bladder.

Three-Dimensional Reconstruction of Neurovascular Network in Whole Mount Preparations and Thick-Cut Transverse Sections of Mouse Urinary Bladder.

The world journal of men's health (2019-09-10)
Nhat Minh Nguyen, Kang Moon Song, Min Ji Choi, Kalyan Ghatak, Anita Limanjaya, Mi Hye Kwon, Doo Yong Chung, Jiyeon Ock, Guo Nan Yin, Chang Shin Park, Jun Kyu Suh, Ji Kan Ryu
摘要

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.

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Sigma-Aldrich
抗NG2硫酸软骨素蛋白聚糖抗体, Chemicon®, from rabbit
Sigma-Aldrich
抗-肌动蛋白,α-平滑肌- FITC抗体,小鼠单克隆 小鼠抗, clone 1A4, purified from hybridoma cell culture
Sigma-Aldrich
抗-PECAM-1抗体,克隆2H8,无叠氮化物, clone 2H8, Chemicon®, from hamster(Armenian)