State Research Institute Centre for Innovative Medicine, Department of Regenerative Medicine, LT-08406 Vilnius, Lithuania.
Latvian Institute of Organic Synthesis, 21 Aizkraukles Str., LV-1006 Riga, Latvia.
Int J Mol Sci. 2021 Sep 7;22(18):9690. doi: 10.3390/ijms22189690.
Osteoarthritis (OA) is a long-term chronic joint disease characterized by the deterioration of bones and cartilage, which results in rubbing of bones which causes joint stiffness, pain, and restriction of movement. Tissue engineering strategies for repairing damaged and diseased cartilage tissue have been widely studied with various types of stem cells, chondrocytes, and extracellular matrices being on the lead of new discoveries. The application of natural or synthetic compound-based scaffolds for the improvement of chondrogenic differentiation efficiency and cartilage tissue engineering is of great interest in regenerative medicine. However, the properties of such constructs under conditions of mechanical load, which is one of the most important factors for the successful cartilage regeneration and functioning in vivo is poorly understood. In this review, we have primarily focused on natural compounds, particularly extracellular matrix macromolecule-based scaffolds and their combinations for the chondrogenic differentiation of stem cells and chondrocytes. We also discuss different mechanical forces and compression models that are used for In Vitro studies to improve chondrogenic differentiation. Summary of provided mechanical stimulation models In Vitro reviews the current state of the cartilage tissue regeneration technologies and to the potential for more efficient application of cell- and scaffold-based technologies for osteoarthritis or other cartilage disorders.
骨关节炎(OA)是一种长期的慢性关节疾病,其特征是骨骼和软骨的恶化,导致骨骼摩擦,从而引起关节僵硬、疼痛和运动受限。人们广泛研究了组织工程策略来修复受损和患病的软骨组织,各种类型的干细胞、软骨细胞和细胞外基质处于新发现的前沿。应用天然或合成化合物为基础的支架来提高软骨分化效率和软骨组织工程,在再生医学中具有重要意义。然而,在机械负荷条件下,这些结构的特性,即成功的软骨再生和体内功能的最重要因素之一,理解得还很差。在这篇综述中,我们主要关注天然化合物,特别是细胞外基质大分子支架及其组合,用于干细胞和软骨细胞的软骨分化。我们还讨论了不同的机械力和压缩模型,这些模型用于体外研究以改善软骨分化。提供的机械刺激模型的体外综述了当前的软骨组织再生技术的状态,并探讨了更有效地应用基于细胞和支架的技术治疗骨关节炎或其他软骨疾病的潜力。