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1.
Experimental & Molecular Medicine ; : e197-2015.
Article in English | WPRIM | ID: wpr-228160

ABSTRACT

Rheumatoid arthritis (RA) and osteoarthritis (OA), two common types of arthritis, affect the joints mainly by targeting the synovium and cartilage. Increasing evidence indicates that a significant network connects synovitis and cartilage destruction during the progression of arthritis. We recently demonstrated that hypoxia-inducible factor (HIF)-2alpha causes RA and OA by regulating the expression of catabolic factors in fibroblast-like synoviocytes (FLS) or chondrocytes. To address the reciprocal influences of HIF-2alpha on FLS and chondrocytes, we applied an in vitro co-culture system using a transwell apparatus. When co-cultured with HIF-2alpha-overexpressing chondrocytes, FLS exhibited increased expression of matrix metalloproteinases and inflammatory mediators, similar to the effects induced by tumor-necrosis factor (TNF)-alpha treatment of FLS. Moreover, chondrocytes co-cultured with HIF-2alpha-overexpressing FLS exhibited upregulation of Mmp3 and Mmp13, which is similar to the effects induced by interleukin (IL)-6 treatment of chondrocytes. We confirmed these differential HIF-2alpha-induced effects via distinct secretory mediators using Il6-knockout cells and a TNF-alpha-blocking antibody. The FLS-co-culture-induced gene expression changes in chondrocytes were significantly abrogated by IL-6 deficiency, whereas TNF-alpha neutralization blocked the alterations in gene expression associated with co-culture of FLS with chondrocytes. Our results further suggested that the observed changes might reflect the HIF-2alpha-induced upregulation of specific receptors for TNF-alpha (in FLS) and IL-6 (in chondrocytes). This study broadens our understanding of the possible regulatory mechanisms underlying the crosstalk between the synovium and cartilage in the presence of HIF-2alpha, and may suggest potential new anti-arthritis therapies.


Subject(s)
Animals , Male , Mice , Arthritis/genetics , Arthritis, Rheumatoid/genetics , Basic Helix-Loop-Helix Transcription Factors/genetics , Cells, Cultured , Chondrocytes/immunology , Coculture Techniques , Fibroblasts/immunology , Gene Expression Regulation , Interleukin-6/genetics , Mice, Inbred C57BL , Osteoarthritis/genetics , Synovial Membrane/immunology , Tumor Necrosis Factor-alpha/genetics , Up-Regulation
2.
Arq. bras. med. vet. zootec ; 65(1): 82-90, fev. 2013. ilus, tab
Article in Portuguese | LILACS | ID: lil-667540

ABSTRACT

Padronizou-se a metodologia para cultura de condrócitos em cães e avaliou-se seu implante em lesões osteocondrais, utilizando-se a membrana biossintética de celulose (MBC) como revestimento. Dez cães, adultos e clinicamente sadios, foram submetidos à artrotomia das articulações fêmoro-tíbio-patelares. Defeitos de 4mm de diâmetro e profundidade foram induzidos no sulco troclear de ambos os membros. MBC foi aplicada na base e na superfície das lesões. Os defeitos do membro direito foram preenchidos com condrócitos homólogos cultivados formando o grupo-tratado (GT); os do membro esquerdo, sem implante celular, foram designados grupo-controle (GC). A evolução pós-operatória foi analisada com especial interesse nos processos de reparação da lesão, por meio de histomorfometria e imuno-histoquímica para colágeno tipo II e sulfato de condroitina. A cultura de condrócitos homólogos apresentou alta densidade e taxa de viabilidade. Observou-se integridade do tecido neoformado com a cartilagem adjacente na avaliação histológica, em ambos os grupos. Na imuno-histoquímica, verificou-se predomínio de colágeno tipo II no GT. Morfometricamente, não houve diferença significativa entre o tecido fibroso e o fibrocartilaginoso entre os grupos. A cultura de condrócitos homólogos de cães foi exequível. O tecido neoformado apresentou qualidade discretamente superior associado ao implante homólogo de condrócitos, contudo não promoveu reparação por cartilagem hialina.


The aim of the study is to standardize the methodology to achieve canine chondrocytes culture, and evaluate its implant on osteochondral defects made in the femoral trochlear sulcus of dogs, using the cellulose biosynthetic membrane (CBM) as coating. Ten healthy adult dogs without locomotor disorders were used. All animals were submitted to arthrotomy of stifle joints and defects of four millimeters in diameter x four millimeters deep were done in the femoral trochlear sulcus of both limbs. CBM were applied in the lesion base and surface of all limbs. In the treated group (TG), defects of the right limb were filled with cultivated homologous chondrocytes, and in control group (CG), defects of the left limb were left without cellular implant. Postoperative follow up was done by histomorphometry and Collagen type II and anti-chondroitin sulfate immunohistochemistry. The homologous chondrocytes culture showed high density and viability rate. Upon immunohistochemistry the predominance of type II collagen in extracellular matrix of TG was verified. However, no significant statistical difference was observed between the groups upon histomorphometry analysis of fibrous and fibrocartilaginous tissues. Canine homologous chondrocytes culture was practicable. Neoformed tissue showed slightly higher quality in TG, but without promoting repair by the hyaline cartilage.


Subject(s)
Animals , Dogs , Chondrocytes/immunology , Chondrocytes/pathology , Osteochondritis/history , Osteochondritis/immunology , Osteochondritis/pathology , Osteochondritis/veterinary , Dogs/anatomy & histology , Dogs/immunology , Cartilage/anatomy & histology , Immunohistochemistry/veterinary , Cell Proliferation
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