PubMed Health⌕ Search

Biomedical subjects

G G Illei

Publications and source records attributed to G G Illei.

At least 19 recordsLinked to original sources

The Met66 allele of the functional Val66Met polymorphism in the brain-derived neurotrophic factor gene confers protection against neurocognitive dysfunction in systemic lupus erythematosus.

BACKGROUND: A common functional polymorphism of the brain-derived neurotrophic factor gene (BDNF Val66Met) was previously associated with diminished episodic memory performance in healthy people. As cognitive function is commonly impaired in patients with systemic lupus erythematosus (SLE), the association of the BDNF Val66Met with neurocognitive function was studied. OBJECTIVE: To study the association of the BDNF Val66Met with neurocognitive function in a cohort of patients with SLE. METHODS: Cognitive function was assessed in 59 patients with SLE with no previous or current central nervous system involvement. Cognitive tests were grouped into five domains (memory, attention/executive function, visuospatial skills, motor function and psychomotor speed) and used to obtain domain Z scores, reflecting the difference between averaged scores of performance on individual tests and published norms in each domain. Genotyping was carried out using a 5'-nuclease assay with 99.9% accuracy. Unpaired t test was used to assess the relationship between genotypes and cognitive function, whereas the effect of possible confounders was assessed in a multivariate analysis. RESULTS: Patients carrying the Met66 allele scored significantly higher on psychomotor, attention/executive and motor function tests, resulting in significantly higher domain Z scores for the psychomotor (p = 0.005) and motor (p = 0.002) domains. CONCLUSIONS: The BDNF Met66 allele was associated with better cognitive functioning in the psychomotor and motor domains, even after controlling for differences in ethnicity, sex, depression status and prednisone treatment. These data suggest that the BDNF Met66 allele confers protection against the decline of motor and psychomotor cognitive functions in patients with longstanding SLE.

Adult↗

Identification of parotid salivary biomarkers in Sjogren's syndrome by surface-enhanced laser desorption/ionization time-of-flight mass spectrometry and two-dimensional difference gel electrophoresis.

OBJECTIVES: To identify the most significant salivary biomarkers in Sjögren's syndrome (SS) using proteomic methods. METHODS: Parotid saliva from 20 non-SS subjects and 41 primary SS patients was analysed. Protein expression profiles for each sample were generated by surface-enhanced laser desorption/ionization time-of-flight-mass spectrometry (SELDI-TOF-MS). Mean peak intensities of SS patients and non-SS subjects were compared by univariate analyses. Samples pooled by diagnosis (SS and non-SS) and labelled with different Cy dyes were compared by two-dimensional difference gel electrophoresis (2D-DIGE). Two protein levels that were most significantly different by SELDI-TOF-MS and 2D-DIGE were validated by enzyme-linked immunosorbent assay in individual samples. RESULTS: SELDI-TOF-MS of 10-200 kDa peaks revealed eight peaks with >2-fold changes in the SS group that differed from non-SS at P < 0.005. Peaks of 11.8, 12.0, 14.3, 80.6 and 83.7 kDa were increased, while 17.3, 25.4, and 35.4 kDa peaks were decreased in SS samples. 2D-DIGE identified significant increases of beta-2-microglobulin, lactoferrin, immunoglobulin (Ig) kappa light chain, polymeric Ig receptor, lysozyme C and cystatin C in all stages of SS. Two presumed proline-rich proteins, amylase and carbonic anhydrase VI, were reduced in the patient group. Three of these ten biomarkers have not been associated previously with SS. CONCLUSIONS: The salivary proteomic profile of SS is a mixture of increased inflammatory proteins and decreased acinar proteins when compared with non-SS. Future studies will test the ability of these biomarker levels, alone and in combination, to diagnose the salivary component of SS.

Amylases↗

Membranous lupus nephritis.

Membranous lupus nephritis (MLN) represents about 20% of clinically significant renal disease in lupus. Few studies have addressed directly the pathogenesis of MLN. Our assumptions about the underlying mechanisms are based on the combination of extrapolations from idiopathic membranous nephritis (mainly from animal models) and proliferative lupus nephritis. Natural history studies of MLN suggest a relatively low rate of progression to end-stage renal disease but a high rate of significant comorbidities. Historical changes in the criteria for pathologic diagnosis and classification of membranous lupus nephropathy have precluded definitive descriptions of the natural history, prognosis and treatment of this disorder. Patients with membranous lupus nephropathy should be treated early with angiotensin antagonists to minimize proteinuria, as well as lifestyle changes and appropriate drugs to reduce attendant cardiovascular risk factors. In patients with protracted nephrotic syndrome, consideration should be given to immunosuppressive therapies, including corticosteroids, cyclosporine, mycophenolate and cyclophosphamide. Prospective controlled trials are clearly needed in order to establish solid clinical practice guidelines for use of these drugs and other experimental therapies currently under study in membranous lupus nephropathy.

Angiotensin-Converting Enzyme Inhibitors↗

Rationale for interleukin-6 blockade in systemic lupus erythematosus.

Interleukin-6 (IL-6) is a pleiotropic cytokine with a wide range of biological activities that plays an important role in immune regulation and inflammation. Among other actions, it induces terminal differentiation of B lymphocytes into antibody-forming cells and the differentiation of T cells into effector cells. IL-6 also has multiple potent proinflammatory effects. An association between IL-6 and lupus was demonstrated in murine models of SLE and blocking IL-6 improved lupus in all models tested. Data from several studies suggest that IL-6 plays a critical role in the B cell hyperactivity and immunopathology of human SLE, and may have a direct role in mediating tissue damage. Based on these data, we propose that blocking the effect of IL-6 in humans may improve lupus by interacting with the autoinflammatory process both systemically and locally.

Animals↗

Lymphocyte depletion with fludarabine in patients with psoriatic arthritis: clinical and immunological effects.

OBJECTIVE: To obtain preliminary information on the safety and efficacy of fludarabine in PsA and analyse its immunomodulatory effects in peripheral blood and synovial tissue. METHODS: 15 patients with active PsA who did not respond to DMARDs were randomly allocated to receive fludarabine every four weeks or placebo. Primary outcomes were the proportion of patients who met the ACR20 and the psoriatic arthritis response criteria (PsARC) at 16 weeks. Secondary outcomes were changes in tender or swollen joint counts and scores of the psoriasis area and severity index (PASI). Phenotypic analysis of peripheral blood mononuclear cells (PBMC), synovial immunohistochemistry, and functional analysis of PBMC were used to determine the immunomodulatory effects of fludarabine. RESULTS: At 16 weeks the ACR20 criteria were met by 3/7 (43%) fludarabine treated v 0/8 placebo treated patients (p=0.08); the PsARC was achieved by 4/7 (57%) fludarabine treated v 2/8 (25%) placebo treated patients; and 3/7 (43%) fludarabine treated v 0/7 placebo treated patients had > or =20% improvement in the PASI. Marked peripheral lymphopenia involving naive (CD4(+) CD45RA(+)) and memory (CD4(+) CD45RO(+)) T cells, CD8(+) T cells, and B cells was seen in fludarabine treated patients. CONCLUSIONS: In PsA fludarabine induces significant peripheral, but modest, synovial lymphopenia, and a trend towards improved clinical response.

Adult↗

Renal flares are common in patients with severe proliferative lupus nephritis treated with pulse immunosuppressive therapy: long-term followup of a cohort of 145 patients participating in randomized controlled studies.

OBJECTIVE: Immunosuppressive agents have become the standard of therapy for proliferative lupus nephritis, but some patients may relapse after discontinuing treatment. We reviewed the cases of renal flares in a cohort of patients who participated in 2 randomized controlled clinical trials at the National Institutes of Health and explored the prevalence, outcome, and predictive factors of renal flares. METHODS: Data were obtained on 145 patients treated with pulse cyclophosphamide, pulse methylprednisolone, or the combination of both. Patients had not received immunosuppressive therapy for at least 6 months and had experienced complete or partial response according to defined criteria. Renal flares were classified as either proteinuric or nephritic based on changes in urinary protein and sediment. Most patients who experienced a flare received additional immunosuppressive therapy. RESULTS: Seventy-three patients had a complete response, and 19 had partial response/stabilization. Forty-one of these patients (45%) experienced renal flares (nephritic in 33, proteinuric in 8) after a mean followup of 117 months; 31 of them received additional immunosuppressive therapy. The median time to renal flare was 36 months in the complete responders and 18 months in the partial responders. Eleven of the 41 patients (27%) progressed to end-stage renal disease (ESRD); 9 had nephritic flares (all severe except for 1) and 2 had proteinuric flares (1 in each responder group). Compared with patients who had a complete response, those with a partial response were more likely to experience a flare, to have a severe nephritic flare, or to progress to ESRD. Low C4 at the time of response and African American ethnicity were significant independent risk factors for renal flare, by multivariate Cox proportional hazards analysis. CONCLUSION: Nephritic flares are common in patients with proliferative lupus nephritis, even in those with a complete response to therapy, but they do not necessarily result in loss of renal function if treated with additional immunosuppressive agents. Renal flares are an important feature of the natural history of lupus nephritis and provide an opportunity for additional preventive strategies, as well as measures of efficacy in future therapeutic trials.

Adult↗

IL-10 improves skin disease and modulates endothelial activation and leukocyte effector function in patients with psoriatic arthritis.

Psoriatic arthritis (PsA) provides an ideal disease model in which to investigate the bioactivities of potentially therapeutic cytokines at multiple sites of tissue inflammation. We investigated the effects of IL-10, an antiinflammatory cytokine, given s.c. for 28 days in a double-blind, placebo-controlled study in PsA patients. Synovial/skin biopsies, peripheral blood leukocytes, articular magnetic resonance images, and clinical disease activity scores were obtained sequentially. Modest, but significant clinical improvement in skin, but not articular disease activity scores with only minor adverse effects was observed. Type 1, but not type 2 T cell cytokine production in vitro was suppressed in human rIL-10 compared with placebo recipients. Similarly, monokine production in vitro was reduced, whereas serum soluble TNFRII levels were elevated, indicating suppression of monocyte function. Decreased T cell and macrophage infiltration in synovial tissues was accompanied by reduced P-selectin expression. Moreover, suppressed synovial enhancement on magnetic resonance imaging and reduced alpha(v)beta(3) integrin expression on von Willebrand factor(+) vessels were observed. Together these data demonstrate that a short course of IL-10 modulates immune responses in vivo via diverse effects on endothelial activation, and leukocyte recruitment and effector function. Such biological changes may result in clinically meaningful improvement in disease activity.

Adult↗

Combination therapy with pulse cyclophosphamide plus pulse methylprednisolone improves long-term renal outcome without adding toxicity in patients with lupus nephritis.

BACKGROUND: Controlled trials in lupus nephritis have demonstrated that cyclophosphamide therapy is superior to corticosteroid therapy alone. The long-term effectiveness and side-effect profiles of pulse immunosuppressive regimens warrant further study. OBJECTIVE: To define the long-term risk and benefit of monthly treatment with boluses of methylprednisolone, cyclophosphamide, or both. DESIGN: Extended follow-up (median, 11 years) of a randomized, controlled trial. SETTING: U.S. government research hospital. PATIENTS: 82 patients with proliferative lupus nephritis. MEASUREMENTS: Rates of treatment failure (defined as need for supplemental immunosuppressive therapy or doubling of serum creatinine concentration, or death) and adverse events. RESULTS: In an intention-to-treat survival analysis, the likelihood of treatment failure was significantly lower in the cyclophosphamide (P = 0.04) and combination therapy (P = 0.002) groups than in the methylprednisolone group. Combination therapy and cyclophosphamide therapy alone did not differ statistically in terms of effectiveness or adverse events. Of patients who completed the protocol (n = 65), the proportion of patients who had doubling of serum creatinine concentration was significantly lower in the combination group than in the cyclophosphamide group (relative risk, 0.095 [95% CI, 0.01 to 0.842]). CONCLUSION: With extended follow-up, pulse cyclophosphamide continued to show superior efficacy over pulse methylprednisolone alone for treatment of lupus nephritis. The combination of pulse cyclophosphamide and methylprednisolone appears to provide additional benefit over pulse cyclophosphamide alone and does not confer additional risk for adverse events.

Adult↗

Cyclophosphamide for the treatment of systemic lupus erythematosus.

Aggressive immunosuppressive therapy with cyclophosphamide has improved the outcome of major organ disease in lupus patients. Controlled trials have shown that pulse cyclophosphamide is the treatment of choice for patients with moderate to severe proliferative nephritis. Long-term follow-up of patients participating in these controlled trials suggests that combining pulse cyclophoshamide with pulse methylprednisolone increases efficacy but not toxicity. Retrospective case series have also shown that pulse cyclophosphamide therapy may be effective for the management of severe or refractory to standard therapy neuropsychiatric, pulmonary, cardiovascular and hematologic disease. Pulse cyclophosphamide is associated with an increased risk for herpes zoster infections in the short term and with sustained amenorrhea in the long-term. Recent studies have also drawn attention to the lack of response (or incomplete response) and flare of lupus after an initial response. In an effort to circumvent these limitations, current investigations explore the therapeutic potential of high-dose, immunoablative cyclophosphamide therapy or low-dose cyclophosphamide in combination with nucleoside analogs or biologic response modifiers.

Cyclophosphamide↗

Novel approaches in the treatment of lupus nephritis.

In systemic lupus erythematosus hyperactive helper T-cells drive polyclonal B-cell activation and secretion of pathogenic auto-antibodies. The auto-antibodies form immune complexes with their respective auto-antigens, which in turn deposit in sites such as the kidney and initiate a destructive inflammatory reaction. Lupus nephritis can be managed successfully in the majority of cases; however, the most widely used immunosuppressive therapies, notably corticosteroids and cyclophosphamide are non-specific and are associated with substantial toxicities. Novel treatments for lupus nephritis have to be at least as effective and less toxic than existing therapies. The ultimate aim is to develop treatments that target specific steps in the disease process. Novel therapeutic strategies in the short-term more likely will focus on refining regimens of drugs that are already in use (mycophenolate mofetil, adenosine analogues) and combinations of existing chemotherapeutic agents, as well as attempts to achieve immunological reconstitution using immunoablative chemotherapy with or without haematopoietic stem cell rescue. Several new agents targeting specific steps in the pathogenesis of lupus are in various phases of clinical development. Interrupting the interactions between T-lymphocytes and other cells by blocking co-stimulatory molecules, such as CD40 ligand or CTLA4-Ig, may interfere with the early steps of pathogenesis. Blocking IL-10 may decrease auto-antibody production and help normalise T-cell function. Treating patients with DNase or interfering with the complement cascade by blocking C5, or neutralising pathogenic antibodies by administering specific binding peptides or inducing specific anti-idiotype antibodies may prevent immune complex formation and/or deposition.

Animals↗

Fludarabine pharmacokinetics after subcutaneous and intravenous administration in patients with lupus nephritis.

STUDY OBJECTIVE: To compare the pharmacokinetics of subcutaneous and intravenous fludarabine in patients with lupus nephritis. DESIGN: Open-label, randomized, crossover trial conducted with a phase I-II trial. SETTING: Government research hospital. PATIENTS: Five patients with lupus nephritis. INTERVENTION: Fludarabine 30 mg/m2/day was administered either subcutaneously or as a 0.5-hour intravenous infusion for 3 consecutive days. All patients received oral cyclophosphamide 0.5 g/m2 on the first day of each cycle. MEASUREMENTS AND MAIN RESULTS: Plasma samples were collected before and 0.5, 1, 1.5, 2, 4, 8, and 24 hours after the first dose. Urine was collected at 6-hour intervals for 24 hours. Plasma and urine were analyzed for fluoro-arabinofuranosyladenine (F-ara-A), fludarabine's main metabolite, using high-performance liquid chromatography. Compartmental techniques were used to determine the pharmacokinetics of F-ara-A; a linear two-compartment model best described them. Comparison of the pharmacokinetics between subcutaneous and intravenous administration was done by using a Wilcoxon signed rank test. No significant differences were found between subcutaneous and intravenous administration in median (interquartile range) maximum concentrations of 0.51 (0.38-0.56) and 0.75 (0.52-0.91) mg/L, respectively, or in fitted area under the concentration-time curves from 0-24 hours of 4.65 (4.17-4.98) and 4.55 (3.5-4.94) mg x hour/L, respectively. Bioavailability of F-ara-A after subcutaneous dosing was approximately 105% of the bioavailability after intravenous administration. Differences in renal clearance and percentage of dose excreted in urine for subcutaneous and intravenous administration were nonsignificant. No injection site reactions were seen with subcutaneous dosing. CONCLUSION: Subcutaneous and intravenous administration of fludarabine appear to have similar pharmacokinetics in patients with lupus nephritis. Subcutaneous injection may offer a convenient alternative to intravenous administration.

Adult↗

Distinct T cell/renal tubular epithelial cell interactions define differential chemokine production: implications for tubulointerstitial injury in chronic glomerulonephritides.

Chemokines can promote interstitial fibrosis that is, in turn, a strong predictor of renal failure in chronic glomerulonephritides (GN). Resident renal cells, including renal tubular epithelial cells (RTEC), represent a prominent source of chemokine expression. Evaluating those factors responsible for sustained chemokine production by RTEC during GN is therefore crucial. The contribution of interstitial T cells to such expression, and in particular the precise nature of their interactions with RTEC, are poorly understood. Activated T cell/RTEC coculture induced production of high levels of monocyte chemoattractant protein-1 (MCP-1), RANTES, and IFN-inducible protein-10 from RTEC. Using double-chamber cultures and activated T cell plasma membrane preparations we demonstrated that both cell contact and soluble factors contributed to RTEC chemokine production. Importantly, different chemokines exhibited distinct activation requirements. Thus, for RANTES cell contact was essential, but not sufficient. In contrast, either soluble factors or cell contact induced MCP-1 and IFN-inducible protein-10 production, although both pathways were required for a maximal response. Neutralization experiments identified critical roles in this process for proinflammatory cytokines such as TNF-alpha, IL-1beta, and IFN-gamma as well as membrane molecules such as LFA-1, CD40 ligand, and membrane bound TNF-alpha. Finally, chemotactic bioassays of T cell/RTEC coculture supernatants demonstrated 80% reduction of monocyte migration following MCP-1 neutralization, indicating a dominant role for this chemokine. In summary, activation of renal tubular cells by infiltrating T cells can amplify and perpetuate local inflammatory responses through chemokine production differentially mediated by soluble and cell contact-dependent factors. Recognition of this regulatory diversity has important implications in the choice of potential therapeutic targets in GN.

CD4-Positive T-Lymphocytes↗

Macrophage-derived cytokine and nuclear factor kappaB p65 expression in synovial membrane and skin of patients with psoriatic arthritis.

OBJECTIVE: Monocyte-derived cytokines are important mediators in synovitis and represent novel therapeutic targets. This study was undertaken to analyze their expression in synovial membrane (SM) of patients with psoriatic arthritis (PsA) compared with that in skin of patients with PsA and SM of patients with rheumatoid arthritis (RA). METHODS: Multiple synovial biopsy samples (24 from patients with PsA, 20 from patients with RA, 5 from patients with osteoarthritis [OA]) and skin biopsy samples (lesional and perilesional skin from 25 PsA patients) were obtained. Standard leukocyte antigens, cytokines (tumor necrosis factor alpha [TNFalpha], interleukin-1apha [IL-1alpha], IL-1beta, IL-15, and IL-10) and the transcription factor nuclear factor KB (NF-kappaB; active p65 subunit) were localized and quantified immunohistochemically by light microscopy and digital image analysis. RESULTS: Sublining cellular infiltration, lymphoid aggregation, and vascularity were similar in PsA and RA SM. Lining layer thickness was greater in RA SM, associated with more CD68+ macrophages. In PsA SM, TNFalpha, IL-1alpha, IL-1beta, IL-15, and IL-10 were primarily localized to lining layer and perivascular macrophages, as were cells expressing the active subunit of NF-kappaB (p65). TNFalpha, IL-1p, and IL-15 expression in PsA lining layer was less than that in RA lining layer, likely reflecting lower macrophage numbers. In sublining areas, levels of TNFalpha and IL-15 were lower in PsA patients than in RA patients, whereas IL-lalpha and IL-1beta expression was equivalent. IL-10 was identified at similar levels in RA and PsA SM lining layer and sublining. Expression of NF-kappaB (p65) was equal in lining layer from both patient groups, but lower in PsA than RA sublining. Histologic findings did not correlate with clinical parameters of disease. Cytokine expression in skin did not correlate directly with that in SM. Cytokine expression was greater in PsA and RA SM than in OA SM. CONCLUSION: This study shows, for the first time, that monocyte-derived cytokines are found in PsA SM and demonstrates the relative paucity of the antiinflammatory cytokine IL-10 in PsA skin and SM. Significant divergence from RA SM expression was observed, despite similar clinical and demographic features in the 2 patient groups.

Adult↗

Apheresis.

The removal of pathologic humors by various methods is an ancient medical remedy used in the management of diseases whose pathophysiology is poorly understood and whose effective treatment modalities are lacking. The contemporary means for such an approach involves apheresis, which is now possible due to advances in blood banking technologies. Apheresis has been used in most of the major rheumatic diseases, in particular systemic lupus erythematosus and rheumatoid arthritis. Although numerous case reports describe clinical benefits of apheresis in rheumatologic disorders, data from clinical trials are discouraging and suggest a limited role for apheresis in rheumatic disease management.

Blood Component Removal↗

Novel, non-antigen-specific therapeutic approaches to autoimmune/inflammatory diseases.

Anti-TNF therapy has made a major impact on the treatment of inflammatory arthritides and Crohn's disease. It leads to prompt and prolonged clinical response, even in patients refractory to conventional therapy. Moreover, the progression of joint damage noted in patients with rheumatoid arthritis treated with methotrexate was prevented by an anti-TNF-alpha antibody, suggesting a genuine disease-modifying potential of TNF-alpha blockade.

Animals↗

CD40 ligand-activated human monocytes amplify glomerular inflammatory responses through soluble and cell-to-cell contact-dependent mechanisms.

Monocytes/macrophages play a critical role in the initiation and progression of a variety of glomerulonephritides. We sought to define the interactions between physiologically activated human monocytes and glomerular mesangial cells (MC) by employing a cell culture system that permits the accurate assessment of the contribution of soluble factors and cell-to-cell contact. Human peripheral blood monocytes, primed with IFN-gamma and GM-CSF, were activated with CD40 ligand (CD40L) or TNF-alpha and cocultured with MC. CD40L-activated monocytes induced higher levels of IL-6, monocyte chemoattractant protein-1 (MCP-1) and ICAM-1 synthesis by MC. Separation of CD40L-activated monocytes from MC by a porous membrane decreased the mesangial synthesis of IL-6 by 80% and ICAM-1 by 45%, but had no effect on MCP-1. Neutralizing Abs against the beta 2 integrins, LFA-1 and Mac-1, decreased IL-6 production by 40 and 50%, respectively. Ligation of mesangial surface ICAM-1 directly enhanced IL-6, but not MCP-1, production. Simultaneous neutralization of soluble TNF-alpha and IL-1 beta decreased MCP-1 production by 55% in membrane-separated cocultures of MC/CD40L-activated monocytes. Paraformaldehyde-fixed CD40L-activated monocytes (to preserve membrane integrity but prevent secretory activity), cocultured with MC at various ratios, induced IL-6, MCP-1, and ICAM-1 synthesis by MC. Plasma membrane preparations from activated monocytes also induced mesangial IL-6 and MCP-1 synthesis. The addition of plasma membrane enhanced TNF-alpha-induced mesangial IL-6 production by approximately 4-fold. Together, these data suggest that the CD40/CD40L is essential for optimal effector function of monocytes, that CD40L-activated monocytes stimulate MC through both soluble factors and cell-to-cell contact mediated pathways, and that both pathways are essential for maximum stimulation of MC.

CD18 Antigens↗

Why is the ANA result positive?

Antinuclear antibody testing is a useful way to confirm the diagnosis of lupus when the clinical suspicion is high, or to exclude it in cases when SLE is in the differential diagnosis but the likelihood of it is low to moderate. Because the test is very sensitive and yet not specific for lupus, an inappropriately ordered ANA test with a positive result can cause diagnostic confusion and unnecessary anxiety for the patient and the physician.

Aged↗