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一种利用在鸡胚绒毛尿囊膜上带有图案化血管的立方体形人造蛋壳的血管生成平台。

An angiogenesis platform using a cubic artificial eggshell with patterned blood vessels on chicken chorioallantoic membrane.

作者信息

Huang Wenjing, Itayama Makoto, Arai Fumihito, Furukawa Katsuko S, Ushida Takashi, Kawahara Tomohiro

机构信息

Department of Biological Functions Engineering, Kyushu Institute of Technology, Wakamatsu-ku, Kitakyushu, Japan.

Department of Micro-Nano Systems Engineering, Nagoya University, Chikusa-ku, Nagoya, Japan.

出版信息

PLoS One. 2017 Apr 17;12(4):e0175595. doi: 10.1371/journal.pone.0175595. eCollection 2017.

Abstract

The chorioallantoic membrane (CAM) containing tiny blood vessels is an alternative to large animals for studies involving angiogenesis and tissue engineering. However, there is no technique to design the direction of growing blood vessels on the CAM at the microscale level for tissue engineering experiments. Here, a methodology is provided to direct blood vessel formation on the surface of a three-dimensional egg yolk using a cubic artificial eggshell with six functionalized membranes. A structure on the lateral side of the eggshell containing a straight channel and an interlinked chamber was designed, and the direction and formation area of blood vessels with blood flow was artfully defined by channels with widths of 70-2000 μm, without sharply reducing embryo viability. The relationship between the size of interlinked chamber and the induction of blood vessels was investigated to establish a theory of design. Role of negative and positive pressure in the induction of CAM with blood vessels was investigated, and air pressure change in the culture chamber was measured to demonstrate the mechanism for blood vessel induction. Histological evaluation showed that components of CAM including chorionic membrane and blood vessels were induced into the channels. Based on our design theory, blood vessels were induced into arrayed channels, and channel-specific injection and screening were realized, which demonstrated proposed applications. The platform with position- and space-controlled blood vessels is therefore a powerful tool for biomedical research, which may afford exciting applications in studies involved in local stimulation of blood vessel networks and those necessary to establish a living system with blood flow from a beating heart.

摘要

含有微小血管的绒毛尿囊膜(CAM)是用于血管生成和组织工程研究的大型动物的替代物。然而,在组织工程实验中,在微观尺度上没有技术能够设计CAM上血管的生长方向。在此,提供了一种方法,利用具有六个功能化膜的立方体形人造蛋壳来引导三维蛋黄表面的血管形成。设计了蛋壳侧面包含直通道和互连腔室的结构,通过宽度为70 - 2000μm的通道巧妙地定义了有血流的血管的方向和形成区域,且不会大幅降低胚胎活力。研究了互连腔室大小与血管诱导之间的关系以建立设计理论。研究了正负压力在诱导带血管的CAM中的作用,并测量了培养室中的气压变化以证明血管诱导机制。组织学评估表明,CAM的组成部分包括绒毛膜和血管被诱导进入通道。基于我们的设计理论,血管被诱导进入排列的通道,并实现了通道特异性注射和筛选,这证明了所提出的应用。因此,具有位置和空间可控血管的平台是生物医学研究的有力工具,这可能在涉及局部刺激血管网络的研究以及建立具有来自跳动心脏的血流的活体系统所需的研究中提供令人兴奋的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0171/5393577/b322b9c6be3c/pone.0175595.g001.jpg

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