Person: Henderson, Lauren
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Publication Medication use in juvenile uveitis patients enrolled in the Childhood Arthritis and Rheumatology Research Alliance Registry
(BioMed Central, 2016) Henderson, Lauren; Zurakowski, David; Angeles-Han, Sheila T.; Lasky, Andrew; Rabinovich, C. Egla; Lo, MindyBackground: There is not yet a commonly accepted, standardized approach in the treatment of juvenile idiopathic uveitis when initial steroid therapy is insufficient. We sought to assess current practice patterns within a large cohort of children with juvenile uveitis. Methods: This is a cross-sectional cohort study of patients with uveitis enrolled in the Childhood Arthritis and Rheumatology Research Alliance (CARRAnet) registry. Clinical information including, demographic information, presenting features, disease complications, and medications were collected. Chi-square and Fisher’s exact tests were used to assess for associations between medications and clinical characteristics. Results: Ninety-two children with idiopathic and 656 with juvenile idiopathic arthritis (JIA)-associated uveitis were identified. Indication (arthritis or uveitis) for medication use was not available for JIA patients; therefore, detailed analysis was limited to children with idiopathic uveitis. In this group, 94 % had received systemic steroids. Methotrexate (MTX) was used in 76 % of patients, with oral and subcutaneous forms given at similar rates. In multivariable analysis, non-Caucasians were more likely to be treated initially with subcutaneous MTX (P = 0.003). Of the 53 % of patients treated with a biologic DMARD, all received a tumor necrosis factor (TNF) inhibitor. TNF inhibitor use was associated with a higher frequency of cataracts (52 % vs 21 %; P = 0.001) and antinuclear antibody positivity (49 % vs 29 %; P = 0.04), although overall complication rates were not higher in these patients. Conclusion: Among idiopathic uveitis patients enrolled in the CARRAnet registry, MTX was the most commonly used DMARD, with subcutaneous and oral forms equally favored. Patients who received a TNF inhibitor were more likely to be ANA positive and have cataracts. Electronic supplementary material The online version of this article (doi:10.1186/s12969-016-0069-5) contains supplementary material, which is available to authorized users.
Publication Quantifying Temporomandibular Joint Synovitis in Children With Juvenile Idiopathic Arthritis
(John Wiley and Sons Inc., 2016) Resnick, Cory; Vakilian, Pouya M.; Breen, Micheal; Zurakowski, David; Caruso, Paul; Henderson, Lauren; Nigrovic, Peter; Kaban, Leonard; Peacock, ZacharyObjective: Juvenile idiopathic arthritis (JIA) frequently affects the temporomandibular joints (TMJs) and is often undetected by history, examination, and plain imaging. Qualitative assessment of gadolinium‐enhanced magnetic resonance images (MRIs) is currently the standard for diagnosis of TMJ synovitis associated with JIA. The purpose of this study is to apply a quantitative analysis of synovial enhancement to MRIs of patients with and without JIA to establish a disease threshold and sensitivity and specificity for the technique. Methods: This is a retrospective case–control study of children (age ≤16 years) who had MRIs with gadolinium including the TMJs. Subjects were divided into a JIA group and a control group. From a coronal T1‐weighted image, a ratio (enhancement ratio [ER]) of the average pixel intensity within three 0.2‐mm2 regions of interest (ROIs) in the TMJ synovium to that of a 50‐mm2 ROI of the longus capitis muscle was calculated. Receiver operating characteristic curves were used to determine the sensitivity and specificity. The inter‐ and intraexaminer reliability was evaluated with Bland‐Altman plots and 2‐way mixed, absolute agreement intraclass correlation coefficients. Results: There were 187 and 142 TMJs included in the JIA and control groups, respectively. An ER threshold of 1.55 had a sensitivity and specificity for detecting synovitis of 91% and 96%, respectively. The inter‐ and intraexaminer reliability was excellent. Conclusion: Calculating a ratio of pixel intensity between the TMJ synovium and the longus capitis muscle is a reliable way to quantify synovial enhancement. An ER of 1.55 differentiates normal TMJs from those affected by inflammatory arthritis.
Publication Pathologically Expanded Peripheral T Helper Cell Subset Drives B Cells in Rheumatoid Arthritis
(Springer Science and Business Media LLC, 2017-02-02) Rao, Deepak; Gurish, Michael F.; Marshall, Jennifer L.; Slowikowski, Kamil; Fonseka, Chamith Y.; Liu, Yanyan; Donlin, Laura T.; Henderson, Lauren; Wei, Kevin; Mizoguchi, Fumitaka; Teslovich, Nikola; Weinblatt, Michael; Massarotti, Elena; Coblyn, Jonathan; Helfgott, Simon; Lee, Yvonne C.; Todd, Derrick; Bykerk, Vivian P.; Goodman, Susan M.; Pernis, Alessandra B.; Ivashkiv, Lionel B.; Karlson, Elizabeth; Nigrovic, Peter; Filer, Andrew; Buckley, Christopher D.; Lederer, James; Raychaudhuri, Soumya; Brenner, MichaelCD4+ T cells are central mediators of autoimmune pathology; however, defining their key effector functions in specific autoimmune diseases remains challenging. Pathogenic CD4+ T cells within affected tissues may be identified by expression of markers of recent activation1. Here, we used mass cytometry to evaluate activated T cells in joint tissue from patients with rheumatoid arthritis (RA), a chronic immune-mediated arthritis that affects up to 1% of the population2. This approach revealed a strikingly expanded population of PD-1hi CXCR5- CD4+ T cells in RA synovium. These cells are not exhausted. Rather, multidimensional cytometry, transcriptomics, and functional assays define a population of PD-1hi CXCR5- ‘peripheral helper’ T (Tph) cells that express factors enabling B cell help, including IL-21, CXCL13, ICOS, and MAF. Like PD-1hi CXCR5+ T follicular helper (Tfh) cells, Tph cells induce plasma cell differentiation in vitro via IL-21 and SLAMF5-interactions3,4. However, global transcriptomics robustly separate Tph cells from Tfh cells, with altered expression of Bcl6 and Blimp-1 and unique expression of chemokine receptors that direct migration to inflamed sites, such as CCR2, CX3CR1, and CCR5, in Tph cells. Tph cells appear uniquely poised to promote B cell responses and antibody production within pathologically inflamed non-lymphoid tissues.