Department of Cardiac Surgery, Boston Children's Hospital, Boston, MA, 02115, USA.
Department of Surgery, Harvard Medical School, Boston, MA, 02115, USA.
Cell Mol Life Sci. 2019 Feb;76(3):421-439. doi: 10.1007/s00018-018-2939-0. Epub 2018 Oct 12.
Tissue engineering holds great promise in regenerative medicine. However, the field of tissue engineering faces a myriad of difficulties. A major challenge is the necessity to integrate vascular networks into bioengineered constructs to enable physiological functions including adequate oxygenation, nutrient delivery, and removal of waste products. The last two decades have seen remarkable progress in our collective effort to bioengineer human-specific vascular networks. Studies have included both in vitro and in vivo investigations, and multiple methodologies have found varying degrees of success. What most approaches to bioengineer human vascular networks have in common, however, is the synergistic use of both (1) endothelial cells (ECs)-the cells used to line the lumen of the vascular structures and (2) perivascular cells-usually used to support EC function and provide perivascular stability to the networks. Here, we have highlighted trends in the use of various cellular sources over the last two decades of vascular network bioengineering research. To this end, we comprehensively reviewed all life science and biomedical publications available at the MEDLINE database up to 2018. Emphasis was put on selective studies that definitively used human ECs and were specifically related to bioengineering vascular networks. To facilitate this analysis, all papers were stratified by publication year and then analyzed according to their use of EC and perivascular cell types. This study provides an illustrating discussion on how each alternative source of cells has come to be used in the field. Our intention was to reveal trends and to provide new insights into the trajectory of vascular network bioengineering with regard to cellular sources.
组织工程在再生医学中具有巨大的应用前景。然而,组织工程领域面临着许多困难。一个主要的挑战是需要将血管网络整合到生物工程构建体中,以实现包括充分氧合、营养物质输送和废物清除在内的生理功能。在过去的二十年中,我们在生物工程化人类特异性血管网络方面取得了显著的进展。这些研究包括体外和体内研究,并且多种方法都取得了不同程度的成功。然而,大多数生物工程化人类血管网络的方法都有一个共同之处,即协同使用(1)内皮细胞(EC)——用于血管结构管腔衬里的细胞和(2)血管周细胞——通常用于支持 EC 功能并为网络提供血管周稳定性。在这里,我们强调了过去二十年血管网络生物工程研究中各种细胞来源的使用趋势。为此,我们全面回顾了截至 2018 年 MEDLINE 数据库中所有生命科学和生物医学出版物。重点放在明确使用人 EC 并专门与生物工程血管网络相关的选择性研究上。为了便于进行此分析,根据发表年份对所有论文进行分层,然后根据它们对 EC 和血管周细胞类型的使用进行分析。本研究提供了一个关于每个替代细胞来源如何在该领域中得到应用的说明性讨论。我们的目的是揭示趋势,并为细胞来源方面的血管网络生物工程轨迹提供新的见解。