Matches in SemOpenAlex for { <https://semopenalex.org/work/W1969708241> ?p ?o ?g. }
- W1969708241 endingPage "1148" @default.
- W1969708241 startingPage "1136" @default.
- W1969708241 abstract "Synovial fibroblasts are possible mediators of osteolysis. Fibroblasts respond directly to titanium particles and increase RANKL expression through a COX-2/PGE2/EP4/PKA signaling pathway. Fibroblasts pretreated with titanium or PGE2 stimulated osteoclast formation, showing the functional importance of RANKL induction. Synovial fibroblasts and their activation pathways are potential targets to prevent osteolysis. Introduction: Bone loss adjacent to the implant is a major cause of joint arthroplasty failure. Although the cellular and molecular response to microscopic wear debris particles is recognized as causative, little is known concerning role of synovial fibroblasts in these events. Materials and Methods: Murine embryonic fibroblasts and knee synovial fibroblasts in culture stimulated with titanium particles were examined by FACS, real time RT-PCR, Northern blot, and Western blot for expressions of vascular cell adhesion molecule (VCAM)1, RANKL, cyclooxygenase (COX)-1, and COX-2, and the four prostaglandin E2 (PGE2) receptor isoforms. Experiments were performed in the presence and absence of COX inhibitors, protein kinase A (PKA) and protein kinase C (PKC) inhibitors, and various EP receptor agonists. Osteoclast formation was examined in co-cultures of pretreated glutaraldehyde-fixed fibroblasts and primary murine spleen cells treated with macrophage-colony stimulating factor (M-CSF) for 7-days. Results: TNF-α stimulated VCAM1 expression, consistent with a synovial fibroblast phenotype. Titanium particles stimulated RANKL gene and protein expressions in fibroblasts in a dose-dependent manner. Gene expression was increased 5-fold by 4 h, and protein levels reached a maximum after 48 h. Within 1 h, titanium particles also induced COX-2 mRNA and protein levels, whereas both indomethacin and celecoxib blocked the stimulation of RANKL, suggesting a COX-2-mediated event. Furthermore, PGE2 induced RANKL gene and protein expression and rescued RANKL expression in titanium-treated cultures containing COX-2 inhibitors. Fibroblast cultures pretreated with either PGE2 or titanium particles enhanced osteoclast formation, indicating the functional importance of RANKL induction. EP4 was the most abundant PGE2 receptor isoform, EP1 and EP2 were expressed at low levels, and EP3 was absent. The EP1 selective agonist iloprost and the EP2 selective agonist butaprost minimally stimulated RANKL. In contrast, the EP2 and EP4 agonist misoprostol induced RANKL to a magnitude similar to PGE2. Finally, PKA antagonism strongly repressed RANKL stimulation by PGE2. Conclusion: Fibroblasts respond directly to titanium particles and increase RANKL expression through a COX-2/PGE2/EP4/PKA signaling pathway. Thus, the synovial fibroblast is important mediator of osteolysis and target for therapeutic strategies." @default.
- W1969708241 created "2016-06-24" @default.
- W1969708241 creator A5010323164 @default.
- W1969708241 creator A5024783120 @default.
- W1969708241 creator A5034940707 @default.
- W1969708241 creator A5040333932 @default.
- W1969708241 creator A5067873718 @default.
- W1969708241 creator A5074891524 @default.
- W1969708241 date "2005-02-14" @default.
- W1969708241 modified "2023-10-14" @default.
- W1969708241 title "Fibroblasts Express RANKL and Support Osteoclastogenesis in a COX-2-Dependent Manner After Stimulation With Titanium Particles" @default.
- W1969708241 cites W1510491926 @default.
- W1969708241 cites W1531666441 @default.
- W1969708241 cites W1532442313 @default.
- W1969708241 cites W1557236725 @default.
- W1969708241 cites W1803320375 @default.
- W1969708241 cites W1970159959 @default.
- W1969708241 cites W1973583400 @default.
- W1969708241 cites W1975784163 @default.
- W1969708241 cites W1979581142 @default.
- W1969708241 cites W1988807967 @default.
- W1969708241 cites W1989517560 @default.
- W1969708241 cites W1997581290 @default.
- W1969708241 cites W1999235557 @default.
- W1969708241 cites W1999298167 @default.
- W1969708241 cites W2000470009 @default.
- W1969708241 cites W2005523878 @default.
- W1969708241 cites W2006595571 @default.
- W1969708241 cites W2016738556 @default.
- W1969708241 cites W2017083283 @default.
- W1969708241 cites W2017433566 @default.
- W1969708241 cites W2021737033 @default.
- W1969708241 cites W2040999273 @default.
- W1969708241 cites W2041202697 @default.
- W1969708241 cites W2041740646 @default.
- W1969708241 cites W2044002373 @default.
- W1969708241 cites W2045670373 @default.
- W1969708241 cites W2053425043 @default.
- W1969708241 cites W2058034672 @default.
- W1969708241 cites W2060592309 @default.
- W1969708241 cites W2063148382 @default.
- W1969708241 cites W2063578899 @default.
- W1969708241 cites W2065784567 @default.
- W1969708241 cites W2072311402 @default.
- W1969708241 cites W2076057102 @default.
- W1969708241 cites W2076650236 @default.
- W1969708241 cites W2078844869 @default.
- W1969708241 cites W2079060965 @default.
- W1969708241 cites W2084102864 @default.
- W1969708241 cites W2084615605 @default.
- W1969708241 cites W2084882361 @default.
- W1969708241 cites W2090394875 @default.
- W1969708241 cites W2091773006 @default.
- W1969708241 cites W2093349314 @default.
- W1969708241 cites W2093588246 @default.
- W1969708241 cites W2094417687 @default.
- W1969708241 cites W2100208042 @default.
- W1969708241 cites W2106766464 @default.
- W1969708241 cites W2107378603 @default.
- W1969708241 cites W2110861042 @default.
- W1969708241 cites W2117858791 @default.
- W1969708241 cites W2119569059 @default.
- W1969708241 cites W2121778907 @default.
- W1969708241 cites W2126853519 @default.
- W1969708241 cites W2139996507 @default.
- W1969708241 cites W2141063536 @default.
- W1969708241 cites W2150072015 @default.
- W1969708241 cites W2151445359 @default.
- W1969708241 cites W2155866152 @default.
- W1969708241 cites W2161113499 @default.
- W1969708241 cites W2163594118 @default.
- W1969708241 cites W2169642737 @default.
- W1969708241 cites W2228466038 @default.
- W1969708241 cites W2258946399 @default.
- W1969708241 cites W2300629566 @default.
- W1969708241 cites W2988979472 @default.
- W1969708241 cites W4229726739 @default.
- W1969708241 cites W79229496 @default.
- W1969708241 doi "https://doi.org/10.1359/jbmr.050206" @default.
- W1969708241 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/15940366" @default.
- W1969708241 hasPublicationYear "2005" @default.
- W1969708241 type Work @default.
- W1969708241 sameAs 1969708241 @default.
- W1969708241 citedByCount "91" @default.
- W1969708241 countsByYear W19697082412012 @default.
- W1969708241 countsByYear W19697082412013 @default.
- W1969708241 countsByYear W19697082412014 @default.
- W1969708241 countsByYear W19697082412015 @default.
- W1969708241 countsByYear W19697082412016 @default.
- W1969708241 countsByYear W19697082412017 @default.
- W1969708241 countsByYear W19697082412018 @default.
- W1969708241 countsByYear W19697082412019 @default.
- W1969708241 countsByYear W19697082412020 @default.
- W1969708241 countsByYear W19697082412021 @default.
- W1969708241 countsByYear W19697082412022 @default.
- W1969708241 countsByYear W19697082412023 @default.
- W1969708241 crossrefType "journal-article" @default.
- W1969708241 hasAuthorship W1969708241A5010323164 @default.