Stem Cell and Tissue Engineering Laboratory, Department of Orthopedics, West Virginia University, PO Box 9196, One Medical Center Drive, Morgantown, WV 26506-9196,
Eur Cell Mater. 2017 Jul 21;34:40-54. doi: 10.22203/eCM.v034a03.
As a key molecule of the extracellular matrix, laminin provides a delicate microenvironment for cell functions. Recent findings suggest that laminins expressed by cartilage-forming cells (chondrocytes, progenitor cells and stem cells) could promote chondrogenesis. However, few papers outline the effect of laminins on providing a favorable matrix microenvironment for cartilage regeneration. In this review, we delineated the expression of laminins in hyaline cartilage, fibrocartilage and cartilage-like tissue (nucleus pulposus) throughout several developmental stages. We also examined the effect of laminins on the biological activities of chondrocytes, including adhesion, migration and survival. Furthermore, we scrutinized the potential influence of various laminin isoforms on cartilage-forming cells' proliferation and chondrogenic differentiation. With this information, we hope to facilitate the understanding of the spatial and temporal interactions between cartilage-forming cells and laminin microenvironment to eventually advance cell-based cartilage engineering and regeneration.
作为细胞外基质的关键分子,层粘连蛋白为细胞功能提供了一个精细的微环境。最近的研究结果表明,软骨形成细胞(软骨细胞、祖细胞和干细胞)表达的层粘连蛋白可以促进软骨生成。然而,很少有论文概述层粘连蛋白对软骨再生提供有利的基质微环境的影响。在这篇综述中,我们描述了层粘连蛋白在透明软骨、纤维软骨和软骨样组织(髓核)在几个发育阶段的表达。我们还研究了层粘连蛋白对软骨细胞的生物学活性的影响,包括黏附、迁移和存活。此外,我们仔细研究了各种层粘连蛋白亚型对软骨形成细胞增殖和软骨形成分化的潜在影响。有了这些信息,我们希望能促进对软骨形成细胞与层粘连蛋白微环境之间的时空相互作用的理解,最终推进基于细胞的软骨工程和再生。