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利用人脂肪组织冷冻保存的基质血管成分实现海洋来源胶原海绵的无生长因子血管化。

Growth Factor-Free Vascularization of Marine-Origin Collagen Sponges Using Cryopreserved Stromal Vascular Fractions from Human Adipose Tissue.

机构信息

3B's Research Group, I3Bs-Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, Barco, 4805-017 Guimarães, Portugal.

ICVS/3B's-PT Government Associate Laboratory, Braga, 4710-057 Guimarães, Portugal.

出版信息

Mar Drugs. 2022 Sep 30;20(10):623. doi: 10.3390/md20100623.

Abstract

The successful integration of transplanted three-dimensional tissue engineering (TE) constructs depends greatly on their rapid vascularization. Therefore, it is essential to address this vascularization issue in the initial design of constructs for perfused tissues. Two of the most important variables in this regard are scaffold composition and cell sourcing. Collagens with marine origins overcome some issues associated with mammal-derived collagen while maintaining their advantages in terms of biocompatibility. Concurrently, the freshly isolated stromal vascular fraction (SVF) of adipose tissue has been proposed as an advantageous cell fraction for vascularization purposes due to its highly angiogenic properties, allowing extrinsic angiogenic growth factor-free vascularization strategies for TE applications. In this study, we aimed at understanding whether marine collagen 3D matrices could support cryopreserved human SVF in maintaining intrinsic angiogenic properties observed for fresh SVF. For this, cryopreserved human SVF was seeded on blue shark collagen sponges and cultured up to 7 days in a basal medium. The secretome profile of several angiogenesis-related factors was studied throughout culture times and correlated with the expression pattern of CD31 and CD146, which showed the formation of a prevascular network. Upon in ovo implantation, increased vessel recruitment was observed in prevascularized sponges when compared with sponges without SVF cells. Immunohistochemistry for CD31 demonstrated the improved integration of prevascularized sponges within chick chorioalantoic membrane (CAM) tissues, while in situ hybridization showed human cells lining blood vessels. These results demonstrate the potential of using cryopreserved SVF combined with marine collagen as a streamlined approach to improve the vascularization of TE constructs.

摘要

三维组织工程(TE)构建体的成功整合在很大程度上取决于其快速血管化。因此,在设计可灌注组织的构建体时,必须解决血管化问题。在这方面,两个最重要的变量是支架组成和细胞来源。海洋来源的胶原蛋白克服了一些与哺乳动物来源的胶原蛋白相关的问题,同时保持了其在生物相容性方面的优势。同时,由于其高度的血管生成特性,脂肪组织的新鲜分离基质血管部分(SVF)已被提议作为血管化目的的有利细胞部分,允许用于 TE 应用的无外源性血管生成生长因子的血管化策略。在这项研究中,我们旨在了解海洋胶原蛋白 3D 基质是否可以支持冷冻保存的人 SVF 维持新鲜 SVF 观察到的内在血管生成特性。为此,将冷冻保存的人 SVF 接种在蓝鲨胶原蛋白海绵上,并在基础培养基中培养长达 7 天。在整个培养时间内研究了几种与血管生成相关的因子的分泌谱,并与 CD31 和 CD146 的表达模式相关联,这表明形成了前血管网络。在体内植入时,与没有 SVF 细胞的海绵相比,在前血管化海绵中观察到血管募集增加。CD31 的免疫组织化学显示,前血管化海绵在鸡胚绒毛尿囊膜(CAM)组织内的整合得到改善,而原位杂交显示人细胞排列在血管内。这些结果表明,使用冷冻保存的 SVF 与海洋胶原蛋白结合作为一种简化的方法来改善 TE 构建体的血管化具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f64/9604698/8b99860fedbd/marinedrugs-20-00623-g001.jpg

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