Osteopontin: A Bone-Derived Protein Involved in Rheumatoid Arthritis and Osteoarthritis Immunopathology
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P. E. Sánchez-Hernández | F. Corona-Meraz | M. Salazar-Páramo | M. Vázquez-del Mercado | E. Martínez-García | B. Martín-Márquez | F. Sandoval-García | A. Fletes-Rayas | Daniel González-Inostroz
[1] S. Stojanović,et al. Matrix Metalloproteinase-9 Level in Synovial Fluid—Association with Joint Destruction in Early Rheumatoid Arthritis , 2023, Medicina.
[2] D. Centonze,et al. Osteopontin Is Associated with Multiple Sclerosis Relapses , 2023, Biomedicines.
[3] Jinjie Duan,et al. Increased CHCHD2 expression promotes liver fibrosis in nonalcoholic steatohepatitis via Notch/osteopontin signaling , 2022, JCI insight.
[4] S. Kõks,et al. Synovial Fluid in Knee Osteoarthritis Extends Proinflammatory Niche for Macrophage Polarization , 2022, Cells.
[5] Wei Peng,et al. Targeting matrix metalloproteases: A promising strategy for herbal medicines to treat rheumatoid arthritis , 2022, Frontiers in Immunology.
[6] A. Atashi,et al. Expression of osteopontin-5 splice variant in the mouse primary and metastatic breast cancer cells , 2022, BMC research notes.
[7] Yabin Wang,et al. Osteopontin-Targeted and PPARδ-Agonist-Loaded Nanoparticles Efficiently Reduce Atherosclerosis in Apolipoprotein E–/– Mice , 2022, ACS omega.
[8] Sang Yeob Lee,et al. A review of osteoarthritis signaling intervention using small-molecule inhibitors , 2022, Medicine.
[9] Xiaofeng Li,et al. A Decreased Absolute Number of Treg Cells in Patients with Active Rheumatoid Arthritis is Associated with Elevated Serum Osteopontin Levels with Disease Progression , 2022, Advances in Therapy.
[10] M. Tu,et al. The lncRNA MIAT/miR-181a-5p axis regulates osteopontin (OPN)-mediated proliferation and apoptosis of human chondrocytes in osteoarthritis , 2022, Journal of Molecular Histology.
[11] M. Koenders,et al. Local inhibition of TGF-β1 signaling improves Th17/Treg balance but not joint pathology during experimental arthritis , 2022, Scientific reports.
[12] Weihong Li,et al. A Role of IL-17 in Rheumatoid Arthritis Patients Complicated With Atherosclerosis , 2022, Frontiers in Pharmacology.
[13] O. Koper-Lenkiewicz,et al. Proinflammatory Cytokines (IL-1, -6, -8, -15, -17, -18, -23, TNF-α) Single Nucleotide Polymorphisms in Rheumatoid Arthritis—A Literature Review , 2022, International journal of molecular sciences.
[14] Zhong Chen,et al. Increased expression of osteopontin in subchondral bone promotes bone turnover and remodeling, and accelerates the progression of OA in a mouse model , 2022, Aging.
[15] M. Rossol,et al. Danger signal extracellular calcium initiates differentiation of monocytes into SPP1/osteopontin-producing macrophages , 2022, Cell death & disease.
[16] S. Bungău,et al. Management of Rheumatoid Arthritis: An Overview , 2021, Cells.
[17] T. Kuroda,et al. Cytokine Networks in the Pathogenesis of Rheumatoid Arthritis , 2021, International journal of molecular sciences.
[18] R. Košir,et al. Cytokines and Chemokines Involved in Osteoarthritis Pathogenesis , 2021, International journal of molecular sciences.
[19] Y. Iwakura,et al. IL-1β-driven osteoclastogenic T regulatory cells accelerate bone erosion in arthritis. , 2021, The Journal of clinical investigation.
[20] J. Dai,et al. Matrix Metalloproteinase 3: A Promoting and Destabilizing Factor in the Pathogenesis of Disease and Cell Differentiation , 2021, Frontiers in Physiology.
[21] Yi Zhang,et al. Mechanistic Insight Into the Roles of Integrins in Osteoarthritis , 2021, Frontiers in Cell and Developmental Biology.
[22] Bo Yang,et al. Roles of long non-coding RNA in osteoarthritis (Review) , 2021, International journal of molecular medicine.
[23] M. Petri,et al. Osteopontin: another piece in the systemic lupus erythematosus immunopathology puzzle. , 2021, Clinical and experimental rheumatology.
[24] R. Konrat,et al. Hyperphosphorylation of Human Osteopontin and Its Impact on Structural Dynamics and Molecular Recognition , 2021, Biochemistry.
[25] G. Berry,et al. Metabolic Control of Autoimmunity and Tissue Inflammation in Rheumatoid Arthritis , 2021, Frontiers in Immunology.
[26] Simin Luo,et al. Elevated expression of MMP8 and MMP9 contributes to diabetic osteoarthritis progression in a rat model , 2021, Journal of Orthopaedic Surgery and Research.
[27] Zhenfeng Liu,et al. Osteopontin‐induced lncRNA HOTAIR expression is involved in osteoarthritis by regulating cell proliferation , 2021, BMC Geriatrics.
[28] H. Khorramdelazad,et al. Role of CCL2/CCR2 axis in the immunopathogenesis of rheumatoid arthritis: Latest evidence and therapeutic approaches. , 2021, Life sciences.
[29] R. Loeser,et al. CCL2 induces articular chondrocyte MMP expression through ERK and p38 signaling pathways , 2021, Osteoarthritis and cartilage open.
[30] D. Hoppensteadt,et al. Interrelationship of Osteopontin, MMP-9 and ADAMTS4 in Patients With Osteoarthritis Undergoing Total Joint Arthroplasty , 2020, Clinical and applied thrombosis/hemostasis : official journal of the International Academy of Clinical and Applied Thrombosis/Hemostasis.
[31] Shu-guang Gao,et al. OPN Deficiency Increases the Severity of Osteoarthritis Associated with Aberrant Chondrocyte Senescence and Apoptosis and Upregulates the Expression of Osteoarthritis-Associated Genes , 2020, Pain research & management.
[32] W. Luo,et al. Mechanistic Insight on the Interaction between OPN and Integrin ανβ3 in Osteoarthritis , 2020, BioMed research international.
[33] W. Luo,et al. Effect of ligand-receptor interaction of osteopontin-CD44 on the expression of hyaluronic acid in human knee osteoarthritic chondrocytes in vitro. , 2020, Zhong nan da xue xue bao. Yi xue ban = Journal of Central South University. Medical sciences.
[34] Y. Saeys,et al. Osteopontin Expression Identifies a Subset of Recruited Macrophages Distinct from Kupffer Cells in the Fatty Liver , 2020, Immunity.
[35] Andriollo Gloria,et al. Interleukin-6 in Rheumatoid Arthritis , 2020, International journal of molecular sciences.
[36] A. Valdes,et al. IL-15 and IL15RA in Osteoarthritis: Association With Symptoms and Protease Production, but Not Structural Severity , 2020, Frontiers in Immunology.
[37] D. Shi,et al. Serum levels of leptin, osteopontin, and sclerostin in patients with and without knee osteoarthritis , 2020, Clinical Rheumatology.
[38] Nanwei Xu,et al. Role of IL-17 gene polymorphisms in osteoarthritis: A meta-analysis based on observational studies. , 2020, World journal of clinical cases.
[39] W. Luo,et al. Osteopontin inhibits osteoarthritis progression via the OPN/CD44/PI3K signal axis , 2020, Genes & diseases.
[40] W. Maśliński,et al. Interleukin-15 as a Biomarker Candidate of Rheumatoid Arthritis Development , 2020, Journal of clinical medicine.
[41] Wei Huang,et al. Osteocyte TGFβ1-Smad2/3 is positively associated with bone turnover parameters in subchondral bone of advanced osteoarthritis , 2020, International journal of molecular medicine.
[42] R. Beier,et al. Plasma levels of osteopontin from birth to adulthood , 2020, Pediatric blood & cancer.
[43] H. Yu,et al. Osteopontin accelerates chondrocyte proliferation in osteoarthritis rats through the NF-κb signaling pathway. , 2020, European review for medical and pharmacological sciences.
[44] A. Maghazachi,et al. Role of Chemokines and Chemokine Receptors in Rheumatoid Arthritis , 2020, ImmunoTargets and therapy.
[45] S. Montgomery,et al. Evaluation of SPP1/osteopontin expression as predictor of recurrence in tamoxifen treated breast cancer , 2020, Scientific Reports.
[46] B. Wang,et al. XIST/miR‐376c‐5p/OPN axis modulates the influence of proinflammatory M1 macrophages on osteoarthritis chondrocyte apoptosis , 2020, Journal of cellular physiology.
[47] Hongmou Zhao,et al. IL-1β increases the expression of inflammatory factors in synovial fluid-derived fibroblast-like synoviocytes via activation of the NF-κB-mediated ERK-STAT1 signaling pathway , 2019, Molecular medicine reports.
[48] A. Lamort,et al. Osteopontin as a Link between Inflammation and Cancer: The Thorax in the Spotlight , 2019, Cells.
[49] Shih-Chao Lin,et al. Isorhamnetin ameliorates inflammatory responses and articular cartilage damage in the rats of monosodium iodoacetate-induced osteoarthritis , 2019, Immunopharmacology and immunotoxicology.
[50] H. Yoshitomi. Regulation of Immune Responses and Chronic Inflammation by Fibroblast-Like Synoviocytes , 2019, Front. Immunol..
[51] E. Żekanowska,et al. Osteopontin And Angiogenic Factors As New Biomarkers Of Prostate Cancer. , 2019, Urology journal.
[52] W. Khan. Autoantibodies and Cytokines , 2019 .
[53] A. Abbas,et al. Shedding New Light on The Role of ανβ3 and α5β1 Integrins in Rheumatoid Arthritis , 2019, Molecules.
[54] Houlai Shang,et al. OPN gene locus is associated with the risk of knee osteoarthritis: a case–control study , 2019, Bioscience reports.
[55] G. Nestal de Moraes,et al. Full-length osteopontin and its splice variants as modulators of chemoresistance and radioresistance (Review). , 2018, International journal of oncology.
[56] X. Tian,et al. microRNA‐186 inhibition of PI3K–AKT pathway via SPP1 inhibits chondrocyte apoptosis in mice with osteoarthritis , 2018, Journal of cellular physiology.
[57] Mehana E El-Sayed,et al. The role of matrix metalloproteinases in osteoarthritis pathogenesis: An updated review. , 2019, Life sciences.
[58] F. Zaucke,et al. Interleukin-1β signaling in osteoarthritis - chondrocytes in focus. , 2019, Cellular signalling.
[59] T. Moilanen,et al. IL-6 in Osteoarthritis: Effects of Pine Stilbenoids , 2018, Molecules.
[60] Lin Shi,et al. Regulatory Roles of Osteopontin in Production of Monocyte-Origin MCP-1 , 2018, Cell transplantation.
[61] Jeffrey R. Chabot,et al. Assessing the Feasibility of Neutralizing Osteopontin with Various Therapeutic Antibody Modalities , 2018, Scientific Reports.
[62] M. Rasool,et al. Multifaceted role of IL‐21 in rheumatoid arthritis: Current understanding and future perspectives , 2018, Journal of cellular physiology.
[63] M. Morán-Moguel,et al. Rheumatoid Arthritis and miRNAs: A Critical Review through a Functional View , 2018, Journal of immunology research.
[64] Hailin Zhao,et al. The role of osteopontin in the progression of solid organ tumour , 2018, Cell Death & Disease.
[65] R. Liu,et al. Adiponectin aggravates bone erosion by promoting osteopontin production in synovial tissue of rheumatoid arthritis , 2018, Arthritis Research & Therapy.
[66] Brij Bhushan Mehta,et al. Blocking osteopontin‐fibronectin interactions reduce extracellular fibronectin deployment and arthritic immunopathology , 2018, International immunopharmacology.
[67] A. Miyamoto,et al. Beyond the Matrix: The Many Non-ECM Ligands for Integrins , 2018, International journal of molecular sciences.
[68] Yuan Chen,et al. MALAT1/miR‐127‐5p Regulates Osteopontin (OPN)‐Mediated Proliferation of Human Chondrocytes Through PI3K/Akt Pathway , 2018, Journal of cellular biochemistry.
[69] Yan Liu,et al. Roles of microRNA-539 and osteopontin in rheumatoid arthritis. , 2017, Experimental and therapeutic medicine.
[70] C. Tovilla-Zárate,et al. Genetic association analysis of Osteopontin and Matrix Gla Protein genes polymorphisms with primary knee osteoarthritis in Mexican population , 2018, Clinical Rheumatology.
[71] Z. Bai,et al. Effects of Artesunate on the Expressions of Insulin-Like Growth Factor-1, Osteopontin and C-Telopeptides of Type II Collagen in a Rat Model of Osteoarthritis , 2017, Pharmacology.
[72] M. Tingart,et al. Plasma level of Osteopontin does not respond to total replacement Surgery in patients with severe Primary knee/Hip Osteoarthritis. , 2017, Journal of orthopaedics.
[73] P. Lehenkari,et al. Increased amount of phosphorylated proinflammatory osteopontin in rheumatoid arthritis synovia is associated to decreased tartrate-resistant acid phosphatase 5B/5A ratio , 2017, PloS one.
[74] A. Chiocchetti,et al. Osteopontin at the Crossroads of Inflammation and Tumor Progression , 2017, Mediators of inflammation.
[75] L. Punzi,et al. A Brief History of IL-1 and IL-1 Ra in Rheumatology , 2017, Front. Pharmacol..
[76] Z. Long,et al. NEAT1/miR‐181c Regulates Osteopontin (OPN)‐Mediated Synoviocyte Proliferation in Osteoarthritis , 2017, Journal of cellular biochemistry.
[77] T. Mimura,et al. Matrix Metalloproteinase Gene Activation Resulting from Disordred Epigenetic Mechanisms in Rheumatoid Arthritis , 2017, International journal of molecular sciences.
[78] E. Bien,et al. Osteopontin: its potential role in cancer of children and young adults. , 2017, Biomarkers in medicine.
[79] Shan-Chi Liu,et al. Osteopontin inhibition of miR-129-3p enhances IL-17 expression and monocyte migration in rheumatoid arthritis. , 2017, Biochimica et biophysica acta. General subjects.
[80] Yanfang Jiang,et al. Increased frequency of peripheral blood follicular helper T cells and elevated serum IL-21 levels in patients with knee osteoarthritis , 2017, Molecular medicine reports.
[81] Y. Itoh. Metalloproteinases in Rheumatoid Arthritis: Potential Therapeutic Targets to Improve Current Therapies. , 2017, Progress in molecular biology and translational science.
[82] G. Cappellano,et al. Osteopontin Bridging Innate and Adaptive Immunity in Autoimmune Diseases , 2016, Journal of immunology research.
[83] Shu-guang Gao,et al. Phosphorylation of osteopontin has proapoptotic and proinflammatory effects on human knee osteoarthritis chondrocytes. , 2016, Experimental and therapeutic medicine.
[84] D. Kooyman,et al. A Tale of Two Joints: The Role of Matrix Metalloproteases in Cartilage Biology , 2016, Disease markers.
[85] M. Tingart,et al. Osteopontin as a Biochemical Marker and Severity Indicator for Idiopathic Hip Osteoarthritis , 2016, Hip international : the journal of clinical and experimental research on hip pathology and therapy.
[86] Shu-guang Gao,et al. MicroRNA-127-5p regulates osteopontin expression and osteopontin-mediated proliferation of human chondrocytes , 2016, Scientific Reports.
[87] H. Diao,et al. Pathophysiological role of osteopontin and angiotensin II in atherosclerosis. , 2016, Biochemical and biophysical research communications.
[88] G. Schett,et al. Interleukin-1 function and role in rheumatic disease , 2016, Nature Reviews Rheumatology.
[89] L. Mariani,et al. Osteopontin, E-cadherin, and β-catenin expression as prognostic biomarkers in patients with radically resected gastric cancer , 2016, Gastric Cancer.
[90] T. Takeuchi,et al. Baseline Serum Osteopontin Levels Predict the Clinical Effectiveness of Tocilizumab but Not Infliximab in Biologic-Naïve Patients with Rheumatoid Arthritis: A Single-Center Prospective Study at 1 Year (the Keio First-Bio Cohort Study) , 2015, PloS one.
[91] Chun-Yin Huang,et al. Osteopontin Promotes Oncostatin M Production in Human Osteoblasts: Implication of Rheumatoid Arthritis Therapy , 2015, The Journal of Immunology.
[92] Weiguo Zhang,et al. Osteopontin induces vascular endothelial growth factor expression in articular cartilage through PI3K/AKT and ERK1/2 signaling. , 2015, Molecular medicine reports.
[93] X. Zhao,et al. CCL3 serves as a potential plasma biomarker in knee degeneration (osteoarthritis). , 2015, Osteoarthritis and cartilage.
[94] A. Uchinaka,et al. SVVYGLR motif of the thrombin-cleaved N-terminal osteopontin fragment enhances the synthesis of collagen type III in myocardial fibrosis , 2015, Molecular and Cellular Biochemistry.
[95] H. Cao,et al. Association of SPP1 promoter variants with hip osteoarthritis susceptibility in Chinese population. , 2015, Gene.
[96] Jun Liu,et al. Chemokine Signaling Pathway Involved in CCL2 Expression in Patients with Rheumatoid Arthritis , 2015, Yonsei medical journal.
[97] Shu-guang Gao,et al. Osteopontin inhibits HIF-2α mRNA expression in osteoarthritic chondrocytes. , 2015, Experimental and therapeutic medicine.
[98] Shu-guang Gao,et al. Effect of osteopontin on the mRNA expression of ADAMTS4 and ADAMTS5 in chondrocytes from patients with knee osteoarthritis. , 2015, Experimental and therapeutic medicine.
[99] Y. Okada,et al. Identification of secreted phosphoprotein 1 gene as a new rheumatoid arthritis susceptibility gene. , 2015, Annals of the rheumatic diseases.
[100] Yu Cao,et al. Osteopontin can decrease the expression of Col-II and COMP in cartilage cells in vitro. , 2015, International journal of clinical and experimental medicine.
[101] L. March,et al. Endogenous MMP-9 and not MMP-2 promotes rheumatoid synovial fibroblast survival, inflammation and cartilage degradation. , 2014, Rheumatology.
[102] Yunsheng Yuan,et al. Expression and purification of non-tagged recombinant mouse SPP1 in E. coli and its biological significance , 2014, Bioengineered.
[103] J. Kourí,et al. Changes in the integrins expression are related with the osteoarthritis severity in an experimental animal model in rats , 2014, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[104] J. Morser,et al. Thrombin Cleavage of Osteopontin Disrupts a Pro-chemotactic Sequence for Dendritic Cells, Which Is Compensated by the Release of Its Pro-chemotactic C-terminal Fragment* , 2014, The Journal of Biological Chemistry.
[105] R. Raja,et al. Osteopontin as a therapeutic target for cancer , 2014, Expert opinion on therapeutic targets.
[106] S. Gazal,et al. SPP1 rs9138 variant contributes to the severity of radiological damage in anti-citrullinated protein autoantibody-negative rheumatoid arthritis , 2014, Annals of the rheumatic diseases.
[107] Shu-guang Gao,et al. Effect of osteopontin on TIMP-1 and TIMP-2 mRNA in chondrocytes of human knee osteoarthritis in vitro , 2014, Experimental and therapeutic medicine.
[108] Shu-guang Gao,et al. Association of osteopontin with osteoarthritis , 2014, Rheumatology International.
[109] D. Bruemmer,et al. Osteopontin: A novel regulator at the cross roads of inflammation, obesity and diabetes , 2014, Molecular metabolism.
[110] A. Minami,et al. α9β1 integrin acts as a critical intrinsic regulator of human rheumatoid arthritis. , 2014, Rheumatology.
[111] T. Uede,et al. Osteopontin Has a Crucial Role in Osteoclast‐Like Multinucleated Giant Cell Formation , 2014, Journal of cellular biochemistry.
[112] M. J. Arellano-Jimenez,et al. Osteopontin expression and localization of Ca++ deposits in early stages of osteoarthritis in a rat model. , 2014, Histology and histopathology.
[113] H. Ohira,et al. Plasma osteopontin is correlated with bone resorption markers in rheumatoid arthritis patients , 2014, International journal of rheumatic diseases.
[114] Yong-Beom Park,et al. Serum level of osteopontin as an inflammatory marker does not indicate disease activity or responsiveness to therapeutic treatments in patients with rheumatoid arthritis , 2014, Clinical Rheumatology.
[115] P. Angel,et al. Collagenase-3 (MMP-13) deficiency protects C57BL/6 mice from antibody-induced arthritis , 2013, Arthritis Research & Therapy.
[116] Yi Zheng,et al. [The clinical significance of serum and joint fluid osteopontin, and thrombin-cleaved osteopontin levels in osteoarthritis]. , 2013, Zhonghua nei ke za zhi.
[117] D. Peng,et al. Expression of NF-κB and osteopontin of synovial fluid of patients with knee osteoarthritis. , 2013, Asian Pacific journal of tropical medicine.
[118] T. Tilli,et al. Human osteopontin splicing isoforms: known roles, potential clinical applications and activated signaling pathways. , 2013, Cancer letters.
[119] Changwei Zhou,et al. OPN gene polymorphisms influence the risk of knee OA and OPN levels in synovial fluid in a Chinese population , 2013, Arthritis Research & Therapy.
[120] C. Zeng,et al. Usefulness of specific OA biomarkers, thrombin-cleaved osteopontin, in the posterior cruciate ligament OA rabbit model. , 2013, Osteoarthritis and cartilage.
[121] Shu-guang Gao,et al. Phosphorylation of osteopontin in osteoarthritis degenerative cartilage and its effect on matrix metalloprotease 13 , 2013, Rheumatology International.
[122] M. Merchant,et al. Thrombin-cleaved Fragments of Osteopontin Are Overexpressed in Malignant Glial Tumors and Provide a Molecular Niche with Survival Advantage* , 2012, The Journal of Biological Chemistry.
[123] I. Sekiya,et al. Osteopontin Level in Synovial Fluid Is Associated with the Severity of Joint Pain and Cartilage Degradation after Anterior Cruciate Ligament Rupture , 2012, PloS one.
[124] G. Valesini,et al. The role of eight polymorphisms in three candidate genes in determining the susceptibility, phenotype, and response to anti-TNF therapy in patients with rheumatoid arthritis. , 2012, Clinical and experimental rheumatology.
[125] C. Farquharson,et al. The importance of the SIBLING family of proteins on skeletal mineralisation and bone remodelling. , 2012, The Journal of endocrinology.
[126] J. Luk,et al. Osteopontin as potential biomarker and therapeutic target in gastric and liver cancers. , 2012, World journal of gastroenterology.
[127] J. Isaacs,et al. Safety, tolerability, pharmacokinetics, pharmacodynamics and efficacy of the monoclonal antibody ASK8007 blocking osteopontin in patients with rheumatoid arthritis: a randomised, placebo controlled, proof-of-concept study , 2011, Annals of the rheumatic diseases.
[128] R. Straub,et al. Integrins and their ligands in rheumatoid arthritis , 2011, Arthritis research & therapy.
[129] A. Chambers,et al. Pre- and post-translational regulation of osteopontin in cancer , 2011, Journal of Cell Communication and Signaling.
[130] Y. Matsui,et al. α9β1 Integrin-Mediated Signaling Serves as an Intrinsic Regulator of Pathogenic Th17 Cell Generation , 2011, The Journal of Immunology.
[131] Shu-guang Gao,et al. The effect of hyaluronic acid on osteopontin and CD44 mRNA of fibroblast-like synoviocytes in patients with osteoarthritis of the knee , 2011, Rheumatology International.
[132] Toshitaka Nakamura,et al. Lower osteocalcin and osteopontin contents of the femoral head in hip fracture patients than osteoarthritis patients , 2011, Osteoporosis International.
[133] Guangjie Chen,et al. Role of osteopontin in synovial Th17 differentiation in rheumatoid arthritis. , 2010, Arthritis and rheumatism.
[134] E. Karlson,et al. Expression of CD44 variant isoforms CD44v3 and CD44v6 is increased on T cells from patients with systemic lupus erythematosus and is correlated with disease activity. , 2010, Arthritis and rheumatism.
[135] M. Maeda,et al. Thrombin-cleaved Osteopontin Is Increased in Urine of Patients with Rheumatoid Arthritis , 2010, The Journal of Rheumatology.
[136] G. Lei,et al. Elevated osteopontin level of synovial fluid and articular cartilage is associated with disease severity in knee osteoarthritis patients. , 2010, Osteoarthritis and cartilage.
[137] T. Ochi,et al. Specifically modified osteopontin in rheumatoid arthritis fibroblast-like synoviocytes supports interaction with B cells and enhances production of interleukin-6. , 2009, Arthritis and rheumatism.
[138] C. Giachelli,et al. The role of osteopontin in inflammatory processes , 2009, Journal of Cell Communication and Signaling.
[139] W. Robinson,et al. Thrombin-activatable carboxypeptidase B cleavage of osteopontin regulates neutrophil survival and synoviocyte binding in rheumatoid arthritis. , 2009, Arthritis and rheumatism.
[140] A. Minami,et al. Accelerated development of aging-associated and instability-induced osteoarthritis in osteopontin-deficient mice. , 2009, Arthritis and rheumatism.
[141] Jingwu Z. Zhang,et al. Role of osteopontin in induction of monocyte chemoattractant protein 1 and macrophage inflammatory protein 1beta through the NF-kappaB and MAPK pathways in rheumatoid arthritis. , 2009, Arthritis and rheumatism.
[142] L. Ghiadoni,et al. Osteopontin Is Associated with Increased Arterial Stiffness in Rheumatoid Arthritis , 2009, Molecular medicine.
[143] A. Minami,et al. α9 Integrin and Its Ligands Constitute Critical Joint Microenvironments for Development of Autoimmune Arthritis1 , 2009, The Journal of Immunology.
[144] S. Honsawek,et al. Correlation of plasma and synovial fluid osteopontin with disease severity in knee osteoarthritis. , 2009, Clinical biochemistry.
[145] S. Nakae,et al. Therapeutic silencing of an endogenous gene by siRNA cream in an arthritis model mouse , 2009, Gene Therapy.
[146] A. Sudo,et al. Thrombin-Cleaved Osteopontin in Synovial Fluid of Subjects with Rheumatoid Arthritis , 2009, The Journal of Rheumatology.
[147] D. Denhardt,et al. Osteopontin: role in immune regulation and stress responses. , 2011, Cytokine & growth factor reviews.
[148] Hao Wang,et al. Treatment of collagen-induced arthritis with an anti-osteopontin monoclonal antibody through promotion of apoptosis of both murine and human activated T cells. , 2008, Arthritis and rheumatism.
[149] V. Castronovo,et al. Phenotypic characterization of osteoblasts from the sclerotic zones of osteoarthritic subchondral bone. , 2008, Arthritis and rheumatism.
[150] M. Østergaard,et al. Circulating levels of osteopontin, osteoprotegerin, total soluble receptor activator of nuclear factor‐kappa B ligand, and high‐sensitivity C‐reactive protein in patients with active rheumatoid arthritis randomized to etanercept alone or in combination with methotrexate , 2008, Scandinavian journal of rheumatology.
[151] D. Denhardt,et al. Control of osteopontin signaling and function by post‐translational phosphorylation and protein folding , 2007, Journal of cellular biochemistry.
[152] N. Yamamoto,et al. Successful treatment of collagen-induced arthritis in non-human primates by chimeric anti-osteopontin antibody. , 2007, International immunopharmacology.
[153] L. Liaw,et al. Osteopontin: A Multifunctional Molecule Regulating Chronic Inflammation and Vascular Disease , 2007, Arteriosclerosis, thrombosis, and vascular biology.
[154] L. Rodrigues,et al. The Role of Osteopontin in Tumor Progression and Metastasis in Breast Cancer , 2007, Cancer Epidemiology Biomarkers & Prevention.
[155] J. Dahlerup,et al. Osteopontin, a Protein with Cytokine‐like Properties, is Associated with Inflammation in Crohn's Disease , 2007, Scandinavian journal of immunology.
[156] Tobias Nyström,et al. A constitutive endogenous osteopontin production is important for macrophage function and differentiation. , 2007, Experimental cell research.
[157] H. Isomoto,et al. High Plasma Osteopontin Levels in Patients With Inflammatory Bowel Disease , 2007, Journal of clinical gastroenterology.
[158] Mansoor M Ahmed,et al. The multifaceted roles of osteopontin in cell signaling, tumor progression and angiogenesis. , 2006, Current molecular medicine.
[159] Yong‐jun Liu,et al. Opn: key regulator of pDC interferon production , 2006, Nature Immunology.
[160] G. Kundu,et al. Osteopontin: role in cell signaling and cancer progression. , 2006, Trends in cell biology.
[161] R. Ravazzolo,et al. A polymorphic variant inside the osteopontin gene shows association with disease course in oligoarticular juvenile idiopathic arthritis , 2005, Annals of the rheumatic diseases.
[162] L. Glimcher,et al. T-bet-dependent expression of osteopontin contributes to T cell polarization. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[163] W. Horton,et al. Intrajoint comparisons of gene expression patterns in human osteoarthritis suggest a change in chondrocyte phenotype , 2005, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[164] T. Hibi,et al. Osteopontin/Eta-1 upregulated in Crohn’s disease regulates the Th1 immune response , 2005, Gut.
[165] P. Kuo,et al. Transcriptional Regulatory Functions of Heterogeneous Nuclear Ribonucleoprotein-U and -A/B in Endotoxin-Mediated Macrophage Expression of Osteopontin1 , 2005, The Journal of Immunology.
[166] Daisuke Ogawa,et al. Liver X Receptor Agonists Inhibit Cytokine-Induced Osteopontin Expression in Macrophages Through Interference With Activator Protein-1 Signaling Pathways , 2005, Circulation research.
[167] H. Nie,et al. Role of osteopontin in amplification and perpetuation of rheumatoid synovitis. , 2005, The Journal of clinical investigation.
[168] E. G. de la Concha,et al. Osteopontin gene polymorphisms in Spanish patients with rheumatoid arthritis. , 2005, The Journal of rheumatology.
[169] H. Nie,et al. Overexpression of osteopontin in rheumatoid synovial mononuclear cells is associated with joint inflammation, not with genetic polymorphism. , 2005, The Journal of rheumatology.
[170] R. Ravazzolo,et al. Polymorphisms in the osteopontin promoter affect its transcriptional activity. , 2004, Physiological genomics.
[171] Y. Chen. MMP-12, an old enzyme plays a new role in the pathogenesis of rheumatoid arthritis? , 2004, The American journal of pathology.
[172] A. Martini,et al. Synovial expression of osteopontin correlates with angiogenesis in juvenile idiopathic arthritis. , 2004, Rheumatology.
[173] C. Benoist,et al. Lack of requirement of osteopontin for inflammation, bone erosion, and cartilage damage in the K/BxN model of autoantibody-mediated arthritis. , 2004, Arthritis and rheumatism.
[174] W. Hsueh,et al. Angiotensin II-accelerated atherosclerosis and aneurysm formation is attenuated in osteopontin-deficient mice. , 2003, The Journal of clinical investigation.
[175] N. Yamamoto,et al. Essential role of the cryptic epitope SLAYGLR within osteopontin in a murine model of rheumatoid arthritis. , 2003, The Journal of clinical investigation.
[176] Y. Saeki,et al. Enhanced local production of osteopontin in rheumatoid joints. , 2002, The Journal of rheumatology.
[177] H. Cantor,et al. Phosphorylation‐dependent interaction of osteopontin with its receptors regulates macrophage migration and activation , 2002, Journal of leukocyte biology.
[178] C. McCulloch,et al. Colocalization of Intracellular Osteopontin With CD44 Is Associated With Migration, Cell Fusion, and Resorption in Osteoclasts , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[179] M. Noda,et al. Osteopontin deficiency protects joints against destruction in anti-type II collagen antibody-induced arthritis in mice , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[180] Y. Saeki,et al. Expression of osteopontin at sites of bone erosion in a murine experimental arthritis model of collagen-induced arthritis: possible involvement of osteopontin in bone destruction in arthritis. , 2002, Arthritis and rheumatism.
[181] I. Narita,et al. Expression, roles, receptors, and regulation of osteopontin in the kidney. , 2001, Kidney international.
[182] S. Barry,et al. Structural elements of the osteopontin SVVYGLR motif important for the interaction with α4 integrins , 2001, FEBS letters.
[183] G. Davis,et al. Identification of Dual α4β1 Integrin Binding Sites within a 38 Amino Acid Domain in the N-terminal Thrombin Fragment of Human Osteopontin* , 2001, The Journal of Biological Chemistry.
[184] P. Varisco,et al. Effect of thrombin inhibition on synovial inflammation in antigen induced arthritis , 2000, Annals of the rheumatic diseases.
[185] S. Barry,et al. Analysis of the α4β1 Integrin–Osteopontin Interaction , 2000 .
[186] P. Petrow,et al. Expression of osteopontin messenger RNA and protein in rheumatoid arthritis: effects of osteopontin on the release of collagenase 1 from articular chondrocytes and synovial fibroblasts. , 2000, Arthritis and rheumatism.
[187] B. Swoboda,et al. Osteopontin is expressed by adult human osteoarthritic chondrocytes: protein and mRNA analysis of normal and osteoarthritic cartilage. , 2000, Matrix biology : journal of the International Society for Matrix Biology.
[188] Yi-hung Lin,et al. Coupling of Osteopontin and Its Cell Surface Receptor CD44 to the Cell Survival Response Elicited by Interleukin-3 or Granulocyte-Macrophage Colony-Stimulating Factor , 2000, Molecular and Cellular Biology.
[189] D. Sheppard,et al. The Integrin α9β1 Binds to a Novel Recognition Sequence (SVVYGLR) in the Thrombin-cleaved Amino-terminal Fragment of Osteopontin* , 1999, The Journal of Biological Chemistry.
[190] M Noda,et al. Osteopontin-deficient mice are resistant to ovariectomy-induced bone resorption. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[191] V. Quaranta,et al. Activation of alphav beta3 integrin on human osteoclast-like cells stimulates adhesion and migration in response to osteopontin. , 1998, Biochemical and biophysical research communications.
[192] C. Giachelli,et al. Structural Requirements for α9β1-Mediated Adhesion and Migration to Thrombin-Cleaved Osteopontin , 1998 .
[193] T. Martin,et al. Casein kinase 2 phosphorylation of recombinant rat osteopontin enhances adhesion of osteoclasts but not osteoblasts , 1998, Journal of cellular physiology.
[194] J. M. Scholtz,et al. Osteopontin is a ligand for the alpha4beta1 integrin. , 1998, Journal of cell science.
[195] D. Sheppard,et al. Osteopontin N-terminal Domain Contains a Cryptic Adhesive Sequence Recognized by α9β1 Integrin* , 1996, The Journal of Biological Chemistry.
[196] M. Glimcher,et al. Receptor-Ligand Interaction Between CD44 and Osteopontin (Eta-1) , 1996, Science.
[197] Jeffrey W. Smith,et al. A Biochemical Characterization of the Binding of Osteopontin to Integrins αvβ1 and αvβ5(*) , 1995, The Journal of Biological Chemistry.
[198] S. Schwartz,et al. Osteopontin and beta 3 integrin are coordinately expressed in regenerating endothelium in vivo and stimulate Arg-Gly-Asp-dependent endothelial migration in vitro. , 1995, Circulation research.
[199] D. Sheppard,et al. The Human Integrin α8β1 Functions as a Receptor for Tenascin, Fibronectin, and Vitronectin (*) , 1995, The Journal of Biological Chemistry.
[200] F. Reinholt,et al. Osteopontin--a possible anchor of osteoclasts to bone. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[201] D. Heinegård,et al. Cloning and sequence analysis of rat bone sialoprotein (osteopontin) cDNA reveals an Arg-Gly-Asp cell-binding sequence. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[202] D. Heinegård,et al. Isolation and characterization of two sialoproteins present only in bone calcified matrix. , 1985, The Biochemical journal.