Oral and Maxillofacial Dept. Dental Faculty, King Saud University, Riyadh, 11451, Saudi Arabia.
Medical collage, Alfaisal University, Riyadh, Saudi Arabia.
J Mater Sci Mater Med. 2023 May 30;34(6):30. doi: 10.1007/s10856-023-06730-6.
The revascularization of grafted tissues is a complicated and non-straightforward process, which makes it challenging to perform reconstructive surgery for critical-sized bone defects. This challenge is combined with the low vascularity that results from radiotherapy. This low vascularity could result from ischemia-reperfusion injuries, also known as ischemia which may happen upon grafting. Ischemia may affect the hard tissue during reconstruction, and this can often cause resorption, infections, disfigurement, and malunion. This paper therefore reviews the clinical and experimental application of procedures that were employed to improve the reconstructive surgery process, which would ensure that the vascularity of the tissue is maintained or enhanced. It also presents the key strategies that are implemented to perform tissue engineering within the grafted sites aiming to optimize the microenvironment and to enhance the overall process of neovascularization and angiogenesis. This review reveals that the current strategies, according to the literature, are the seeding of the mature and progenitor cells, use of extracellular matrix (ECM), co-culturing of osteoblasts with the ECM, growth factors and the use of microcapillaries incorporated into the scaffold design. However, due to the unstable and regression-prone capillary structures in bone constructs, further research focusing on creating long-lasting and stable blood vessels is required.
移植物组织的再血管化是一个复杂且非直接的过程,这使得对于临界尺寸骨缺损的重建手术具有挑战性。这种挑战与放射治疗引起的低血管生成相结合。这种低血管生成可能是由于缺血再灌注损伤引起的,也称为缺血,这种缺血可能发生在移植物时。缺血可能会影响重建过程中的硬组织,这通常会导致吸收、感染、畸形和愈合不良。因此,本文综述了临床和实验应用的程序,以改善重建手术过程,这将确保组织的血管生成得到维持或增强。它还提出了在移植物部位实施组织工程的关键策略,旨在优化微环境并增强新血管生成和血管生成的整体过程。这篇综述表明,根据文献,目前的策略是成熟和祖细胞的接种、细胞外基质(ECM)的使用、成骨细胞与 ECM 的共培养、生长因子和将微血管纳入支架设计。然而,由于骨构建体中毛细血管结构不稳定且易退化,需要进一步研究专注于创建持久且稳定的血管。