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345 result(s) for "Klareskog, Lars"
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The immunopathogenesis of seropositive rheumatoid arthritis: from triggering to targeting
Key Points Rheumatoid arthritis (RA) is a heterogeneous disease. The main subdivision of RA is according to the presence or absence of antibodies to citrullinated protein antigens (ACPAs) and of rheumatoid factor (RF), whereby the presence of either or both of these types of autoantibody defines the seropositive subset of disease. This subdivision of patients with RA has greatly enhanced pathogenetic studies and has shown how linkage to MHC class II alleles and MHC class II-dependent immunity is predominantly restricted to the seropositive form of RA. In many cases, seropositive RA develops gradually, starting with the emergence of autoantibodies and only subsequently including symptoms such as pain and/or fatigue and then joint inflammation. Triggering of autoimmunity to citrullinated and other post-translationally modified autoantigens may occur in the lungs and other mucosal surfaces after exposure to noxious environmental agents such as smoke, which drive both the post-translational modifications of autoantigens and the local accumulation and activation of antigen-presenting cells. ACPAs can target the bone and joint compartments through the specific activation of osteoclasts, leading to CXCL8 production. This process results in erosion (by osteoclasts) and pain (by CXCL8-dependent engagement of CXCR1 and CXCR2 on nociceptive nerves). The recognition of a gradual development of seropositive disease, and the emerging understanding of the molecular mechanisms in the early phases of disease, provide a new time window as well as new targets for prevention and early therapy. Understanding the gradual development of disease in patients with seropositive rheumatoid arthritis offers new opportunities for prevention and early therapy. Patients with rheumatoid arthritis can be divided into two major subsets characterized by the presence versus absence of antibodies to citrullinated protein antigens (ACPAs) and of rheumatoid factor (RF). The antibody-positive subset of disease, also known as seropositive rheumatoid arthritis, constitutes approximately two-thirds of all cases of rheumatoid arthritis and generally has a more severe disease course. ACPAs and RF are often present in the blood long before any signs of joint inflammation, which suggests that the triggering of autoimmunity may occur at sites other than the joints (for example, in the lung). This Review summarizes recent progress in our understanding of this gradual disease development in seropositive patients. We also emphasize the implications of this new understanding for the development of preventive and therapeutic strategies. Similar temporal and spatial separation of immune triggering and clinical manifestations, with novel opportunities for early intervention, may also occur in other immune-mediated diseases.
Passive smoking in childhood accelerates RA risk for smokers
Smoking during adulthood is a known risk factor for seropositive rheumatoid arthritis (RA) but how exposure to passive smoking affects RA risk is uncertain. New data from the Nurses’ Health Study on passive smoking over a lifetime suggest childhood exposure could be an important factor for future RA development.
Smoking and susceptibility to rheumatoid arthritis in a Swedish population-based case-control study
Smoking is one of the most established risk factors for rheumatoid arthritis (RA). The aim of this study was to estimate how age at smoking debut, smoking cessation, duration, intensity, and cumulative dose of smoking influence the risk of developing anti-citrullinated peptide antibodies (ACPA) positive and ACPA negative RA. The present report is based on a Swedish population-based, case-control study with incident cases of RA (3655 cases, 5883 matched controls). Using logistic regression models, subjects with different smoking habits were compared regarding risk of developing the two variants of RA, by calculating odds ratios (OR) with 95% confidence intervals (CI). Smoking increased the risk of developing both ACPA positive (OR 1.9, 95% CI 1.7–2.1) and ACPA negative RA (OR 1.3, 95% CI 1.2–1.5). For both subsets of RA, there seemed to be a threshold ( ~ 2.5 pack years for ACPA positive RA and ~ 5 pack years for ACPA negative RA) below which no association between smoking and RA occurred. A dose-response association was observed between cumulative dose of smoking and risk of developing ACPA positive RA (p value for trend < 0.0001). Duration of smoking had a higher influence on the association between smoking and RA than did intensity of smoking. For both subsets of RA, the detrimental effect of smoking decreased after smoking cessation. Twenty years after smoking cessation, there was no longer an association between smoking and risk of ACPA negative RA, whereas the association between smoking and ACPA positive RA risk persisted and was dependent on the cumulative dose of smoking. Smoking increases the risk of both subsets of RA with a more pronounced influence on the risk of ACPA positive RA. Preventive measures in order to reduce smoking are essential and may result in a decline in RA incidence.
Mechanisms leading from systemic autoimmunity to joint-specific disease in rheumatoid arthritis
Key Points Anti-citrullinated protein antibodies (ACPAs) bind specifically to osteoclasts and osteoclast precursors in the normal bone and joint compartment; such binding promotes osteoclast differentiation and osteolytic function in vitro Osteoclast differentiation is dependent on the citrullination of proteins by protein-arginine deiminases Both Fc-dependent and Fc-independent mechanisms are involved in ACPA-mediated osteoclast activation Binding of ACPAs to osteoclasts induces the production of the chemokine IL-8 Infusion of ACPAs into mice causes IL-8-dependent bone loss and IL-8-mediated pain behaviour The unique role of citrullination in osteoclast differentiation and ACPA-induced osteoclast activation might explain important features of the gradual development of rheumatoid arthritis, including why the joints are targeted How and why systemic autoimmunity targets the joints in rheumatoid arthritis remains a major unanswered question. In this Review, Catrina et al . discuss the evidence for a driving role for osteoclasts in the homing of autoimmunity to the joints. A key unanswered question in the pathophysiology of rheumatoid arthritis (RA) is how systemic autoimmunity progresses to joint-specific inflammation. In patients with seropositive RA (that is, characterized by the presence of autoantibodies) evidence is accumulating that immunity against post-translationally modified (such as citrullinated) autoantigens might be triggered in mucosal organs, such as the lung, long before the first signs of inflammation are seen in the joints. However, the mechanism by which systemic autoimmunity specifically homes to the joint and bone compartment, thereby triggering inflammation, remains elusive. This Review summarizes potential pathways involved in this joint-homing mechanism, focusing particularly on osteoclasts as the primary targets of anti-citrullinated protein antibodies (ACPAs) in the bone and joint compartment. Osteoclasts are dependent on citrullinating enzymes for their normal differentiation and are unique in displaying citrullinated antigens on their cell surface in a non-inflamed state. The binding of ACPAs to osteoclasts releases the chemokine IL-8, leading to bone erosion and pain. This process initiates a chain of events that could lead to attraction and activation of neutrophils, resulting in a complex series of proinflammatory processes in the synovium, eventually leading to RA.
Five amino acids in three HLA proteins explain most of the association between MHC and seropositive rheumatoid arthritis
Soumya Raychaudhuri, Paul de Bakker and colleagues report fine mapping of the rheumatoid arthritis associations within the MHC by combining genome-wide SNP data and imputation of classical HLA alleles and SNPs across the MHC. They identify five amino acid positions in HLA-DRβ1, HLA-B and HLA-DPβ1 that together can explain most of the MHC association to seropositive rheumatoid arthritis. The genetic association of the major histocompatibility complex (MHC) to rheumatoid arthritis risk has commonly been attributed to alleles in HLA-DRB1 . However, debate persists about the identity of the causal variants in HLA-DRB1 and the presence of independent effects elsewhere in the MHC. Using existing genome-wide SNP data in 5,018 individuals with seropositive rheumatoid arthritis (cases) and 14,974 unaffected controls, we imputed and tested classical alleles and amino acid polymorphisms in HLA-A , HLA-B , HLA-C , HLA-DPA1 , HLA-DPB1 , HLA-DQA1 , HLA-DQB1 and HLA-DRB1 , as well as 3,117 SNPs across the MHC. Conditional and haplotype analyses identified that three amino acid positions (11, 71 and 74) in HLA-DRβ1 and single–amino-acid polymorphisms in HLA-B (at position 9) and HLA-DPβ1 (at position 9), which are all located in peptide-binding grooves, almost completely explain the MHC association to rheumatoid arthritis risk. This study shows how imputation of functional variation from large reference panels can help fine map association signals in the MHC.
Epigenome-wide association data implicate DNA methylation as an intermediary of genetic risk in rheumatoid arthritis
Liu et al. use mediation analysis to find changes in DNA methylation that mediate the genetic risk for rheumatoid arthritis. Epigenetic mechanisms integrate genetic and environmental causes of disease, but comprehensive genome-wide analyses of epigenetic modifications have not yet demonstrated robust association with common diseases. Using Illumina HumanMethylation450 arrays on 354 anti-citrullinated protein antibody–associated rheumatoid arthritis cases and 337 controls, we identified two clusters within the major histocompatibility complex (MHC) region whose differential methylation potentially mediates genetic risk for rheumatoid arthritis. To reduce confounding factors that have hampered previous epigenome-wide studies, we corrected for cellular heterogeneity by estimating and adjusting for cell-type proportions in our blood-derived DNA samples and used mediation analysis to filter out associations likely to be a consequence of disease. Four CpGs also showed an association between genotype and variance of methylation. The associations for both clusters replicated at least one CpG ( P < 0.01), with the rest showing suggestive association, in monocyte cell fractions in an independent cohort of 12 cases and 12 controls. Thus, DNA methylation is a potential mediator of genetic risk.
Overweight decreases the chance of achieving good response and low disease activity in early rheumatoid arthritis
Aim To investigate whether overweight/obesity at diagnosis affects the chances of decrease in disease activity and pain in early rheumatoid arthritis (RA). Method We investigated incident RA cases from the population-based Epidemiological Investigation of risk factors for Rheumatoid Arthritis (EIRA) study (2006–2009, N=495) with clinical follow-up in the Swedish Rheumatology Quality Register. At diagnosis, 93% received disease-modifying antirheumatic drugs (DMARDs) (86% methotrexate). The odds of achieving a good response according to the DAS28-based European League Against Rheumatism (EULAR) criteria, low disease activity (DAS28<3.2), remission (DAS28<2.6) or pain remission (visual analogue scale ≤20 mm) at 3-months and 6-months follow-up, were calculated using logistic regression, adjusting for potential confounders. Results Significant dose-response relationships were found between Body Mass Index (BMI) and change of disease activity as well as pain at both time points. Patients with BMI ≥25 had 51% lower odds of achieving low disease activity (odds ratio (OR=0.49 (95% CI 0.31 to 0.78)) and 42% lower odds of remission (OR=0.58 (95% CI 0.37 to 0.92)) at the 6-months visit, compared to normal-weight patients. This effect was also present at 3 months, where we also found a 43% decreased odds of pain remission (OR=0.57 (95% CI 0.37 to 0.88)). No effect modification was found for anti-citrullinated protein antibody (CCP)-status, sex, prednisolone treatment or DAS28 at diagnosis. Conclusions Overweight at diagnosis significantly decreases the chance of achieving good disease control during the early phase of RA.
Autoantibodies to citrullinated proteins induce joint pain independent of inflammation via a chemokine-dependent mechanism
ObjectiveAn interesting and so far unexplained feature of chronic pain in autoimmune disease is the frequent disconnect between pain and inflammation. This is illustrated well in rheumatoid arthritis (RA) where pain in joints (arthralgia) may precede joint inflammation and persist even after successful anti-inflammatory treatment. In the present study, we have addressed the possibility that autoantibodies against citrullinated proteins (ACPA), present in RA, may be directly responsible for the induction of pain, independent of inflammation.MethodsAntibodies purified from human patients with RA, healthy donors and murinised monoclonal ACPA were injected into mice. Pain-like behaviour was monitored for up to 28 days, and tissues were analysed for signs of pathology. Mouse osteoclasts were cultured and stimulated with antibodies, and supernatants analysed for release of factors. Mice were treated with CXCR1/2 (interleukin (IL) 8 receptor) antagonist reparixin.ResultsMice injected with either human or murinised ACPA developed long-lasting pronounced pain-like behaviour in the absence of inflammation, while non-ACPA IgG from patients with RA or control monoclonal IgG were without pronociceptive effect. This effect was coupled to ACPA-mediated activation of osteoclasts and release of the nociceptive chemokine CXCL1 (analogue to human IL-8). ACPA-induced pain-like behaviour was reversed with reparixin.ConclusionsThe data suggest that CXCL1/IL-8, released from osteoclasts in an autoantibody-dependent manner, produces pain by activating sensory neurons. The identification of this new pain pathway may open new avenues for pain treatment in RA and also in other painful diseases associated with autoantibody production and/or osteoclast activation.
Fine-mapping and functional studies highlight potential causal variants for rheumatoid arthritis and type 1 diabetes
To define potentially causal variants for autoimmune disease, we fine-mapped 1 , 2 76 rheumatoid arthritis (11,475 cases, 15,870 controls) 3 and type 1 diabetes loci (9,334 cases, 11,111 controls) 4 . After sequencing 799 1-kilobase regulatory (H3K4me3) regions within these loci in 568 individuals, we observed accurate imputation for 89% of common variants. We defined credible sets of ≤5 causal variants at 5 rheumatoid arthritis and 10 type 1 diabetes loci. We identified potentially causal missense variants at DNASE1L3, PTPN22, SH2B3, and TYK2, and noncoding variants at MEG3, CD28–CTLA4, and IL2RA. We also identified potential candidate causal variants at SIRPG and TNFAIP3. Using functional assays, we confirmed allele-specific protein binding and differential enhancer activity for three variants: the CD28–CTLA4 rs117701653 SNP, MEG3 rs34552516 indel, and TNFAIP3 rs35926684 indel. Fine-mapping and functional studies highlight potential causal risk variants for rheumatoid arthritis and type 1 diabetes, including missense variants at DNASE1L3, PTPN22, SH2B3, and TYK2, and noncoding variants at MEG3, CD28–CTLA4, and IL2RA.