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用于阴茎生理学研究及恢复兔和猪勃起功能的3D打印阴茎灌注模型。

3D-printed perfused models of the penis for the study of penile physiology and for restoring erectile function in rabbits and pigs.

作者信息

Wang Zhenxing, Liu Xuemin, Ye Tan, Zhai Zhichen, Wu Kai, Kuang Yudi, Ostrovidov Serge, Shao Dan, Wang Yingjun, Leong Kam W, Shi Xuetao

机构信息

National Engineering Research Centre for Tissue Restoration and Reconstruction, South China University of Technology, Guangzhou, P. R. China.

School of Materials Science and Engineering, South China University of Technology, Guangzhou, P. R. China.

出版信息

Nat Biomed Eng. 2025 Mar 4. doi: 10.1038/s41551-025-01367-y.

Abstract

The intricate topology of vascular networks and the complex functions of vessel-rich tissues are challenging to reconstruct in vitro. Here we report the development of: in vitro pathological models of erectile dysfunction and Peyronie's disease; a model of the penis that includes the glans and the corpus spongiosum with urethral structures; and an implantable model of the corpus cavernosum, whose complex vascular network is critical for erectile function, via the vein-occlusion effect. Specifically, we 3D printed a hydrogel-based corpus cavernosum incorporating a strain-limiting tunica albuginea that can be engorged with blood through vein occlusion. In corpus cavernosum defects in rabbits and pigs, implantation of the 3D-printed tissue seeded with endothelial cells restored normal erectile function on electrical stimulation of the cavernous nerves as well as spontaneous erectile function within a few weeks of implantation, which allowed the animals to mate and reproduce. Our findings support the further development of 3D-printed blood-vessel-rich functional organs for transplantation.

摘要

血管网络错综复杂的拓扑结构以及血管丰富组织的复杂功能很难在体外重建。在此,我们报告了以下模型的开发:勃起功能障碍和佩罗尼氏病的体外病理模型;一种包含龟头、带有尿道结构的海绵体的阴茎模型;以及一种可植入的海绵体模型,其复杂的血管网络对勃起功能至关重要,通过静脉闭塞效应实现。具体而言,我们3D打印了一种基于水凝胶的海绵体,其中包含一个限制应变的白膜,该海绵体可通过静脉闭塞充血。在兔和猪的海绵体缺损中,植入接种了内皮细胞的3D打印组织,在电刺激海绵体神经时恢复了正常勃起功能,并且在植入后的几周内恢复了自发勃起功能,这使得动物能够交配和繁殖。我们的研究结果支持进一步开发用于移植的3D打印血管丰富的功能性器官。

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