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小鼠阴茎的理化和生化时空图谱。

Physicochemical and biochemical spatiotemporal maps of a mouse penis.

机构信息

Division of Biomaterials and Bioengineering, Department of Preventive and Restorative Dental Sciences, School of Dentistry, University of California San Francisco, San Francisco, CA, United States.

Department of Urology, School of Medicine, University of California San Francisco, San Francisco, CA, United States.

出版信息

J Biomech. 2020 Mar 5;101:109637. doi: 10.1016/j.jbiomech.2020.109637. Epub 2020 Jan 16.

Abstract

Spatiotemporal mechanobiology resulting in penile pathologies continues to be investigated using small scale animals models such as mice. However, species-dependent functional biomechanics of a mouse penis, is not known. In this study, spatial mapping of a mechanosensitive transcription factor, scleraxis (Scx), at ages 4, 5, 6 weeks, and 1 year were generated to identify mechanoactive regions within penile tissues. Reconstructed volumes of baculum collected using micro X-ray computed tomography illustrated significantly increased baculum length with decreased porosity, and increased mineral density (p < 0.05) with age. The bony-baculum was held centrally in the Scx positive corpus cavernosum glandis (CCG), indicating mechanoactivity within the struts in a 6 week old mouse. The struts also were stained positive for fibrillar proteins including collagen and elastin, and globular proteins including protein gene product 9.5, and α-smooth muscle actin. The corpus cavernosum penis (CCP) contained significantly (p < 0.05) more collagen than CCG within the same penis, and both regions contained blood vessels with equivalent innervation at any given age. Comparison of volumes of flaccid and erect penile forms revealed functional characteristics of the CCP. Results of this study provided insights into biomechanical function of the CCG; in that, it is a high-pressure chamber that stiffens the penis and is similar to the human corpus cavernosum.

摘要

空间和时间机械生物学导致的阴茎病变,仍在继续使用小型动物模型(如老鼠)进行研究。然而,老鼠阴茎的种属依赖性功能生物力学尚不清楚。在这项研究中,生成了机械敏感转录因子硬骨桥蛋白(Scx)在 4、5、6 周和 1 岁时的空间图谱,以确定阴茎组织中的机械活性区域。使用微 X 射线计算机断层扫描收集的阴茎骨重建体积表明,随着年龄的增长,阴茎骨长度显著增加,孔隙率降低,矿化密度增加(p<0.05)。在 6 周龄的老鼠中,位于 Scx 阳性的阴茎海绵体球腺(CCG)中心的骨阴茎骨表明在支架内存在机械活性。支架还对包括胶原蛋白和弹性蛋白在内的纤维状蛋白以及包括蛋白基因产物 9.5 和α-平滑肌肌动蛋白在内的球状蛋白呈阳性染色。阴茎海绵体(CCP)在同一阴茎内的胶原蛋白含量明显高于 CCG(p<0.05),并且在任何给定年龄,这两个区域都含有具有同等神经支配的血管。松弛和勃起阴茎形态的体积比较揭示了 CCP 的功能特征。本研究的结果提供了对 CCG 生物力学功能的深入了解;它是一个使阴茎变硬的高压室,类似于人类的阴茎海绵体。

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