Ruan Qiao, Tan Shenglong, Guo Li, Ma Dandan, Wen Jun
Department of Endodontics, Stomatological Hospital, School of Stomatology, Southern Medical University, Guangzhou, Guangdong, China.
Front Bioeng Biotechnol. 2023 May 18;11:1186030. doi: 10.3389/fbioe.2023.1186030. eCollection 2023.
One of the difficulties of pulp regeneration is the rapid vascularization of transplanted engineered tissue, which is crucial for the initial survival of the graft and subsequent pulp regeneration. At present, prevascularization techniques, as emerging techniques in the field of pulp regeneration, has been proposed to solve this challenge and have broad application prospects. In these techniques, endothelial cells and pericytes are cocultured to induce intercellular communication, and the cell coculture is then introduced into the customized artificial vascular bed or induced to self-assembly to simulate the interaction between cells and extracellular matrix, which would result in construction of a prevascularization system, preformation of a functional capillary network, and rapid reconstruction of a sufficient blood supply in engineered tissue after transplantation. However, prevascularization techniques for pulp regeneration remain in their infancy, and there remain unresolved problems regarding cell sources, intercellular communication and the construction of prevascularization systems. This review focuses on the recent advances in the application of prevascularization techniques for pulp regeneration, considers dental stem cells as a potential cell source of endothelial cells and pericytes, discusses strategies for their directional differentiation, sketches the mechanism of intercellular communication and the potential application of communication mediators, and summarizes construction strategies for prevascularized systems. We also provide novel ideas for the extensive application and follow-up development of prevascularization techniques for dental pulp regeneration.
牙髓再生的难点之一在于移植的工程组织快速血管化,这对移植物的初期存活及后续牙髓再生至关重要。目前,预血管化技术作为牙髓再生领域的新兴技术,已被提出用于解决这一挑战并具有广阔的应用前景。在这些技术中,内皮细胞与周细胞共培养以诱导细胞间通讯,然后将细胞共培养物引入定制的人工血管床或诱导其自组装以模拟细胞与细胞外基质之间的相互作用,这将导致构建预血管化系统、形成功能性毛细血管网络,并在移植后快速重建工程组织中充足的血液供应。然而,牙髓再生的预血管化技术仍处于起步阶段,在细胞来源、细胞间通讯及预血管化系统构建方面仍存在未解决的问题。本综述重点介绍了牙髓再生预血管化技术应用的最新进展,将牙干细胞视为内皮细胞和周细胞的潜在细胞来源,讨论其定向分化策略,概述细胞间通讯机制及通讯介质的潜在应用,并总结预血管化系统的构建策略。我们还为牙髓再生预血管化技术的广泛应用和后续发展提供了新思路。
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