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101.
The aim of this study was to examine optimal self-management in osteoarthritis and its association with patient-reported outcomes.
We recruited a population-based sample of Medicare beneficiaries (n = 551) residing in Allegheny County, PA, USA and elicited an expanded set of self-management behaviors using open-ended inquiry.
We defined optimal self-management according to clinical recommendations, including use of hot compresses on affected joints,
alteration of activity, and exercise. Only 20% practiced optimal self-management as defined by two or more of these criteria.
Optimal and suboptimal self-managers did not differ in sociodemographic features. Both white and African–Americans who practiced
optimal self-management reported significantly less pain, but the benefit was greatest in severe disease for whites and for
mild-moderate disease among African–Americans. This backdrop of naturally occurring self-management behaviors may be important
to recognize in planning programs that seek to bolster self-management skills. 相似文献
102.
Alex Zamora Agata Matejuk Marc Silverman Arthur A. Vandenbark Halina Offner 《Autoimmunity》2013,46(1):21-28
Freund's incomplete adjuvant (IFA), an aqueous/oil emulsion that is widely used in combination with antigenic proteins and peptides to induce tolerance, is considered to be immunologically inert. However, sporadic reports indicate that IFA may itself have inhibitory properties on induction of adjuvant induced arthritis and spontaneous diabetes. In the current study, the effects of IFA/saline were evaluated on the induction of experimental autoimmune encephalomyelitis (EAE) in three different strains of mice. IFA/saline given i.p. in two doses of >100 u w l 10 u days apart were found to inhibit EAE induction to varying degrees in all three strains of mice in a dose dependent fashion. The IFA/saline injections inhibited both mitogen and antigen-induced T cell proliferation, induced elevated secretion of IFN- n and IL-10 by neuroantigen specific T cells, and reduced expression of cytokines, chemokines, and chemokine receptors of CNS-infiltrating mononuclear cells. These data demonstrate for the first time a direct inhibitory effect of IFA/saline on EAE, and re-emphasize the need to properly control experiments using IFA to induce antigen-specific tolerance. 相似文献
103.
Anne M Fagan Rachel L Henson Yan Li Anna H Boerwinkle Chengjie Xiong Randall J Bateman Alison Goate Beau M Ances Eric Doran Bradley T Christian Florence Lai H Diana Rosas Nicole Schupf Sharon Krinsky-McHale Wayne Silverman Joseph H Lee William E Klunk Benjamin L Handen Ira T Lott 《Lancet neurology》2021,20(8):615-626
104.
105.
Granot Z Silverman E Friedlander R Melamed-Book N Eimerl S Timberg R Hales KH Hales DB Stocco DM Orly J 《Endocrine research》2002,28(4):375-386
The Steroidogenic Acute Regulatory (StAR) protein is a mitochondrial protein required for the transport of cholesterol substrate to the P450scc enzyme located in the inner mitochondrial membranes of steroid producing cells. This study suggests that the acute regulation of the rodent StAR gene in the ovary is mediated by two factors, C/EBPbeta and GATA-4. Once translated, the StAR precursor protein is either imported into the mitochondria, or it is rapidly degraded in the cytosol. We predicted that in order to perpetuate StAR activity cycles, imported StAR should turn over rapidly to avoid a potentially harmful accumulation of the protein in sub-mitochondrial compartments. Pulse-chase experiments in metabolically labeled cells showed that: (a) the turnover rate of mature mitochondrial StAR protein (30 kDa) is much faster (t(1/2) = 4-5 h) than that of other mitochondrial proteins; (b) dissipation of the inner membrane potential (-delta psi) by carbonyl cyanide m-chlorophenylhydrazone (mCCCP) accelerates the mitochondrial degradation of StAR; (c) unexpectedly, the mitochondrial degradation of StAR is inhibited by MG132 and lactacystin, but not by epoxomicin. Furthermore, StAR degradation becomes inhibitor-resistant two hours after import. Therefore, these studies suggest a bi-phasic route of StAR turnover in the mitochondria. Shortly after import, StAR is degraded by inhibitor-sensitive protease(s) (phase I), whereas at later times, StAR turnover proceeds to completion through an MG132-resistant proteolytic activity (phase II). Collectively, this study defines StAR as a unique protein that can authentically be used to probe multiple proteolytic activities in mammalian mitochondria. 相似文献
106.
107.
Jacob CO Eisenstein M Dinauer MC Ming W Liu Q John S Quismorio FP Reiff A Myones BL Kaufman KM McCurdy D Harley JB Silverman E Kimberly RP Vyse TJ Gaffney PM Moser KL Klein-Gitelman M Wagner-Weiner L Langefeld CD Armstrong DL Zidovetzki R 《Proceedings of the National Academy of Sciences of the United States of America》2012,109(2):E59-E67
Systemic lupus erythematosus (SLE), the prototypic systemic autoimmune disease, is a debilitating multisystem autoimmune disorder characterized by chronic inflammation and extensive immune dysregulation in multiple organ systems, resulting in significant morbidity and mortality. Here, we present a multidisciplinary approach resulting in the identification of neutrophil cytosolic factor 2 (NCF2) as an important risk factor for SLE and the detailed characterization of its causal variant. We show that NCF2 is strongly associated with increased SLE risk in two independent populations: childhood-onset SLE and adult-onset SLE. The association between NCF2 and SLE can be attributed to a single nonsynonymous coding mutation in exon 12, the effect of which is the substitution of histidine-389 with glutamine (H389Q) in the PB1 domain of the NCF2 protein, with glutamine being the risk allele. Computational modeling suggests that the NCF2 H389Q mutation reduces the binding efficiency of NCF2 with the guanine nucleotide exchange factor Vav1. The model predicts that NCF2/H389 residue interacts with Vav1 residues E509, N510, E556, and G559 in the ZF domain of Vav1. Furthermore, replacing H389 with Q results in 1.5 kcal/mol weaker binding. To examine the effect of the NCF2 H389Q mutation on NADPH oxidase function, site-specific mutations at the 389 position in NCF2 were tested. Results show that an H389Q mutation causes a twofold decrease in reactive oxygen species production induced by the activation of the Vav-dependent Fcγ receptor-elicited NADPH oxidase activity. Our study completes the chain of evidence from genetic association to specific molecular function. 相似文献
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109.