An In Vitro Model of Cartilage Degradation by Chondrocytes in a Three-Dimensional Culture System
نویسندگان
چکیده
OBJECTIVE Using the alginate bead three-dimensional culturing method, which is considered to be advantageous for the in vitro study of chondrocytes, we confirmed earlier reports concerning the inhibitory effect of TGF-β on IL-1β-induced cartilage destruction and serially evaluated changes in proteinases and their inhibitors in cartilage destruction. METHODS Chondrocytes were cultured on alginate beads with IL-1β or TGF-β alone or both. The glycosaminoglycan (GAG) concentration in the culture medium was determined by use of the DMMB assay; and the levels of TIMP-1, -2 and proMMP-3 were measured with their respective sandwich EIAs. Sections of the beads were prepared and stained with toluidine blue or anti-TIMP-1 -2, -3 antibodies. The numbers of chondrocytes negative for pericellular proteoglycan staining and TIMP-positive chondrocytes were counted, and positive staining for TIMP-3 in the extracellular matrix was examined. RT-PCR was performed to evaluate the gene expression of TIMP-1, -2, -3, and MMP-3. RESULTS The number of TIMP-1(+)chondrocytes, TIMP-1 concentration in the culture medium, and TIMP-1-gene expression all increased maximally as early as 6 hours after IL-1β stimulation, and then gradually decreased. However, the number of cells immunopositive for TIMP-3 increased somewhat later. GAG and proMMP-3 concentrations in the culture medium increased gradually with time. The number of TIMP-3(+)chondrocytes and positive staining for TIMP-3 in the extracellular matrix significantly increased in the TGF-β group compared with the values for the IL-1β group. The proMMP-3 concentration in the culture medium of TGF-β-treated cells was significantly decreased compared with that for the IL-1β-treated ones at all times examined. DISCUSSION We suggest that TIMP-1 plays a primary role in the prevention of articular cartilage destruction in its early stage but that TIMP-3 gradually takes over this role. Also, TGF-β was shown to regulate these TIMPs and act as a suppressor of articular cartilage destruction. These results suggest that TIMP-1 and TIMP-3 are closely involved in preventing the progression of joint disorders such as OA.
منابع مشابه
Protective Effects of Interleukin-4 on Tissue Destruction and Morphological Changes of Bovine Nasal Chondrocytes in vitro
Background: Previous studies have shown that some cytokines have protective effects on cartilage in joint diseases. In the current study, effects of IL-4 against morphological changes and tissue degradation induced by IL-1α on bovine nasal cartilage (BNC) explants were investigated. Methods: Fresh BNC samples were prepared from a slaughterhouse under sterile conditions. BNC explants culture was...
متن کاملCostal Versus Articular Chondrocytes in Alginate Three-Dimensional Cultures
Given the difficulties in accessing articular cartilage as a source of chondrocytes to be used in fabricating cartilage constructs, alternative sources are required. The present study examined chondrocytes from costal cartilage for their suitability in cartilage tissue engineering. Chondrocytes isolated from rat knee and rib hyaline cartilage were separately mixed with alginate and placed in a ...
متن کاملStudy of Human Chondrocyte Redifferntiation Capacity in Three-Dimensional Hydrogel Culture
Objective(s) Articular cartilage tissue defects cannot be repaired by the proliferation of resident chondrocytes. Autologous chondrocyte transplantation (ACT) is a relatively new therapeutic approach to cover full thickness articular cartilage defects by in vitro grown chondrocytes from the joint of a patient. Therefore, we investigated the redifferentiation capability of human chondrocytes ma...
متن کاملTransforming Growth Factor-β1 Preserves Bovine Nasal Cartilage against Degradation Induced by Interleukin-1α in Explant Culture
Background and Aims: Chondrocytes and their differentiation play a central role in joint diseases. Effect of the transforming growth factor (TGF)-β1 on chondrocyte characteristics and differentiation is not clearly understood. This study was undertaken to investigate the effects of TGF-β1 on tissue characteristics and morphology of chondrocytes against degradation induced by interleuk...
متن کاملCo-Culture of Mesenchymal Stem Cells with Mature Chondrocytes: Producing Cartilage Construct for Application in Cartilage Regeneration
Background: Cell-based treatment approach using differentiated mesenchymal stem cells (MSCs) and mature chondrocytes has been considered as an advanced treatment for cartilage repair. We investigated the differentiated level of these two cell types that is crucial for their repair capacity for cartilage defect at a co-culture micro mass system. Methods: Passaged-2 MSCs isolated from the mouse b...
متن کاملStudy of Chondrogenic Effects of Chondrocytes Cocultured With Murine Bone Marrow-Derived Mesenchymal Stem Cells
Purpose: Co-culture systems of marrow derived mesenchymal stem cells (mMSCs) with mature chondrocytes have theoretically been considered as a putative way of MSCs chondrogenic differentiation. MSCs differentiated in this system could be used for transplantation purpose without of any need to their purification since the cells with which MSCs are co cultured are native cartilage cells. Despite o...
متن کامل