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1.
Adv Rheumatol ; 62: 25, 2022. tab, graf
Article in English | LILACS-Express | LILACS | ID: biblio-1383510

ABSTRACT

Abstract Background: Phospholipase C-like 1 (PLCL1), a protein that lacks catalytic activity, has similar structures to the PLC family. The aim of this research was to find the function and underlying mechanisms of PLCL1 in fibroblast-like synoviocyte (FLS) of rheumatoid arthritis (RA). Methods: In this study, we first analyzed the expression of PLCL1 in the synovial tissue of RA patients and K/BxN mice by immunohistochemical staining. Then silencing or overexpressing PLCL1 in FLS before stimulating by TNF-α. The levels of IL-6, IL-1β and CXCL8 in FLS and supernatants were detected by Western Blot (WB), Real-Time Quantitative PCR and Enzyme Linked Immunosorbent Assay. We used INF39 to specifically inhibit the activation of NLRP3 inflammasomes, and detected the expression of NLRP3, Cleaved Caspase-1, IL-6 and IL-1β in FLS by WB. Result: When PLCL1 was silenced, the level of IL-6, IL-1β and CXCL8 were down-regulated. When PLCL1 was overexpressed, the level of IL-6, IL-1β and CXCL8 were unregulated. The previous results demonstrated that the mechanism of PLCL1 regulating inflammation in FLS was related to NLRP3 inflammasomes. INF39 could counteract the release of inflammatory cytokines caused by overexpression of PLCL1. Conclusion: Result showed that the function of PLCL1 in RA FLS might be related to the NLRP3 inflammasomes. We finally confirmed our hypothesis with the NLRP3 inhibitor INF39. Our results suggested that PLCL1 might promote the inflammatory response of RA FLS by regulating the NLRP3 inflammasomes.

2.
Spine (Phila Pa 1976) ; 38(24): 2079-84, 2013 Nov 15.
Article in English | MEDLINE | ID: mdl-24026150

ABSTRACT

STUDY DESIGN: To inhibit ß-catenin specifically signaling in chondrocytes Col2-ICAT transgenic mice were generated. Anomalies in caudal vertebrae were detected during embryonic and postnatal stages of Col2-ICAT transgenic mice. OBJECTIVE: To determine the role of canonical ß-catenin signaling in caudal vertebral development. SUMMARY OF BACKGROUND DATA: ß-catenin signaling plays a critical role in skeletal development. Col2-ICAT transgenic mice were generated to selectively block ß-catenin signaling by overexpression of the ICAT gene in chondrocytes. METHODS: Tails of E16.5 transgenic embryos and adult Col2-ICAT transgenic mice and their wild-type littermates were collected and analyzed. Skeletal preparation, 3-dimensional micro-computed tomographic and histological analyses were performed to evaluate changes in the structure of caudal vertebrae. Bromodeoxyuridine labeling was performed to evaluate changes in chondrocyte proliferation in caudal vertebrae. RESULTS: Skeletal preparation and 3-dimensional micro-computed tomographic analyses revealed bone deformation and angulated deformities in tail tissue in Col2-ICAT transgenic mice. Histological studies revealed abnormal bone development and dysplastic caudal vertebrae in Col2-ICAT transgenic mice. Inhibition of ß-catenin signaling in cartilage resulted in vertebral dysplasia leading to aberrant resegmenting process. Thus, 2 poorly developed sclerotomes failed to fuse to form a complete vertebrae. BrdU labeling revealed a decreased chondrocyte proliferation in both cartilageous templates of transgenic embryos and the growth plate of adult Col2-ICAT transgenic mice. CONCLUSION: Wnt/ß-catenin signaling plays an important role in vertebral development. Inhibition of ß-catenin signaling in chondrocytes results in caudal vertebra deformity in mice, which may occur as early as in the stage of sclerotome formation. LEVEL OF EVIDENCE: N/A.


Subject(s)
Chondrocytes/metabolism , Signal Transduction , Spine/metabolism , beta Catenin/metabolism , Adaptor Proteins, Signal Transducing , Animals , Cell Cycle Proteins/genetics , Cell Cycle Proteins/metabolism , Cell Proliferation , Chondrocytes/cytology , Collagen Type II/genetics , Embryo, Mammalian/abnormalities , Embryo, Mammalian/metabolism , Enhancer Elements, Genetic/genetics , Immunohistochemistry , Mice , Mice, Inbred C57BL , Mice, Transgenic , Promoter Regions, Genetic/genetics , Repressor Proteins , Spine/abnormalities , Spine/diagnostic imaging , Tail/abnormalities , Tail/diagnostic imaging , Tail/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism , X-Ray Microtomography , beta Catenin/genetics
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