Lachaud Christian Claude, Rodriguez-Campins Berta, Hmadcha Abdelkrim, Soria Bernat
Andalusian Center for Molecular Biology and Regenerative Medicine - Centro Andaluz de Biología Molecular y Medicina Regenerativa (CABIMER) , Seville , Spain ; Centro de Investigación en Red sobre Diabetes y Enfermedades Metabólicas (CIBERDEM) , Madrid , Spain.
Departamento de I+D, New Biotechnic S.A. , Seville , Spain ; Fundación Andaluza de Investigación y Desarrollo (FAID) , Seville , Spain.
Front Bioeng Biotechnol. 2015 Aug 17;3:117. doi: 10.3389/fbioe.2015.00117. eCollection 2015.
Tissue-engineering technologies have progressed rapidly through last decades resulting in the manufacture of quite complex bioartificial tissues with potential use for human organ and tissue regeneration. The manufacture of avascular monolayered tissues such as simple squamous epithelia was initiated a few decades ago and is attracting increasing interest. Their relative morphostructural simplicity makes of their biomimetization a goal, which is currently accessible. The mesothelium is a simple squamous epithelium in nature and is the monolayered tissue lining the walls of large celomic cavities (peritoneal, pericardial, and pleural) and internal organs housed inside. Interestingly, mesothelial cells can be harvested in clinically relevant numbers from several anatomical sources and not less important, they also display high transdifferentiation capacities and are low immunogenic characteristics, which endow these cells with therapeutic interest. Their combination with a suitable scaffold (biocompatible, degradable, and non-immunogenic) may allow the manufacture of tailored serosal membranes biomimetics with potential spanning a wide range of therapeutic applications, principally for the regeneration of simple squamous-like epithelia such as the visceral and parietal mesothelium vascular endothelium and corneal endothelium among others. Herein, we review recent research progresses in mesothelial cells biology and their clinical sources. We make a particular emphasis on reviewing the different types of biological scaffolds suitable for the manufacture of serosal mesothelial membranes biomimetics. Finally, we also review progresses made in mesothelial cells-based therapeutic applications and propose some possible future directions.
在过去几十年中,组织工程技术取得了迅速进展,从而制造出了相当复杂的生物人工组织,具有用于人体器官和组织再生的潜力。几十年前就开始了无血管单层组织(如单层扁平上皮)的制造,并且越来越受到关注。它们相对简单的形态结构使其生物模拟成为一个目前可以实现的目标。间皮本质上是一种单层扁平上皮,是衬于大的体腔(腹膜腔、心包腔和胸膜腔)壁以及腔内所容纳内部器官的单层组织。有趣的是,间皮细胞可以从多个解剖学来源获取到临床上相关的数量,同样重要的是,它们还表现出高转分化能力和低免疫原性特征,这些特性赋予了这些细胞治疗价值。将它们与合适的支架(生物相容性、可降解且无免疫原性)相结合,可能会制造出定制的浆膜生物模拟物,其潜在应用范围广泛,主要用于再生单层扁平样上皮,如脏层和壁层间皮、血管内皮和角膜内皮等。在此,我们综述了间皮细胞生物学及其临床来源的最新研究进展。我们特别着重于综述适用于制造浆膜间皮膜生物模拟物的不同类型生物支架。最后,我们还综述了基于间皮细胞的治疗应用所取得的进展,并提出了一些可能的未来方向。