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Olga Vera-Lastra

Publications and source records attributed to Olga Vera-Lastra.

8 recordsLinked to original sources

Functional hyperprolactinemia and hypophyseal microadenoma in systemic sclerosis.

OBJECTIVE: Hyperprolactinemia (HPRL) has been identified in more than half of patients with systemic sclerosis (SSc). However, the association with pituitary adenoma and the status of hypothalamic dopaminergic tone using metoclopramide (MTC) test has not been studied. We investigated the prevalence of prolactin (PRL)-secreting pituitary adenoma and evaluated production of PRL by dynamic testing with MTC in SSc. METHODS: We studied 30 patients with SSc (mean age 38 +/- 10 yrs) and 20 healthy controls (mean age 37 +/- 11 yrs). Serum PRL concentrations were determined by radioimmunoassay in all subjects, and PRL response was measured 30, 60, 90, and 120 min after injection of 10 mg of MTC. Computed tomography (CT) of the sella turcica was performed. RESULTS: The mean basal serum PRL levels before and after stimulation with MTC in SSc patients versus controls were: basal 18.2 +/- 5.4 versus 8.7 +/- 1.6 ng/ml, p = NS; 30 min: 175.0 +/- 5.4 versus 61.0 +/- 42 ng/ml, p < 0.001; 60 min: 160 +/- 64 versus 52 +/- 30 ng/ml, p < 0.001; 90 min: 125 +/- 57 versus 42 +/- 21.0 ng/ml, p < 0.05; 120 min: 108.0 +/- 57 versus 30.0 +/- 10 ng/ml, p < 0.005. CT scan showed microadenomas in 24/30 SSc patients and 1/20 controls (p = 0.001). CONCLUSION: Our study suggests that a group of patients with SSc have a high prevalence of HPRL with increased central dopaminergic tone, and microadenomas. PRL may have a role in the pathogenesis of SSc. Further studies are necessary to confirm our results.

Adenoma↗

Accelerated atherosclerosis, immune response and autoimmune rheumatic diseases.

Atherosclerosis (AT) is a chronic autoimmune inflammatory disease, characterized by lipoproteins metabolism alteration leading to formation of pro-inflammatory and pro-oxidative lipids and immune response. Identification of macrophages, T cells, pro-inflammatory cytokines, adhesion cell molecules in atherosclerotic lesions support the hypothesis that innate and adaptive immune response participate in the atherogenesis mechanism. Multiple factors such as inflammatory, infectious and immune system, among others participate in this process. The principal antigens identified in atherogenesis are: oxidized LDL (oxLDL), HSPs and beta2GPI. During LDL oxidation, multiple neoantigens are formed (anti-EO). These antibodies seem to be protective. Systemic lupus erythematosus (SLE) and antiphospholipid syndrome (APS) have accelerated AT. The association of both diseases with AT suggests a common pathogenic mechanism. SLE and atherosclerosis are immune-complex mediated diseases. Participation of complement activation, and CD40, CD40 ligand interactions have been demonstrated in AT and SLE. AT may be the initial presentation or the consequence of primary antiphospholipid syndrome. The similarities between AT, SLE, and APS and the identification of protective antibodies offer opportunities for new immunomodulation treatment strategies.

Arteriosclerosis↗

Mono-organic versus multi-organic involvement in primary antiphospholipid syndrome.

The prevalence of mono-organic and multi-organic involvement during long-term follow-up in patients with primary antiphospholipid syndrome (pAPS) was investigated. We studied 60 pAPS patients followed up at least 5 years. Patients with associated systemic lupus erythematosus were excluded. All patients received oral anticoagulant therapy. A diagnosis of mono-organic involvement was considered when one organ was affected exclusively, and multi-organic involvement was considered when two or more organs became affected during follow-up. Average age at diagnosis was 32.9 +/- 12.4 years, 40 subjects were female and 20 male, and mean disease evolution totaled 11.5 +/- 4.5 years. The mean number of clinical events was 3.75 +/- 1.87. Among patients, immunoglobulin G anticardiolipin (IgM aCL) titers totaled 50 +/- 40.3 IgG phospholipid units, and IgM aCL titers totaled 47.3 +/- 35.4 IgM phospholipid units. The most frequent clinical manifestations at study onset were deep venous thrombosis, stroke, pulmonary thromboembolism, fetal loss, and pre-eclampsia. At the beginning of follow-up, 46 patients had mono-organic involvement and 14 had multi-organic involvement (P = 0.0001). In contrast, at the end of the study, only 8 patients still had mono-organic involvement, leading to deep venous thrombosis (n = 3), stroke (n = 3), and retinal thrombosis (n = 2) (P = 0.0001). Kaplan-Meier analysis showed that the probability of remaining with mono-organic involvement decreased throughout the cumulative years, especially during the first 3. The hazard risk ratio for developing multi-organic involvement was 1.47 patients per year. In conclusion, PAPS is a chronic disorder with unpredictable clinical course and multi-organic involvement, especially during the first years. The conversion to multi-organic involvement supports the concept that pAPS is a systemic autoimmune disease.

Adult↗

Pulmonary-renal vasculitic disorders: differential diagnosis and management.

Pulmonary-renal syndrome (PRS) is a combination of diffuse pulmonary hemorrhage and glomerulonephritis. Pulmonary-renal syndrome is not a single entity and is caused by a variety of conditions, including Goodpasturés syndrome associated with autoantibodies to the glomerular and alveolar basement membranes, various forms of primary systemic vasculitis associated with serum positivity for antineutrophil cytoplasmic antibodies (ANCA), cryoglobulinemia, systemic lupus erythematosus, systemic sclerosis, antiphospholipid syndrome, environmental factors, and drugs. The majority of cases of PRS are associated with ANCAs. The antigen target in Goodpasturés syndrome is the alpha-3 chain of type IV collagen. The antigen target in PRS associated with systemic vasculitis is proteinase-3 and myeloperoxidase. Pulmonary-renal syndrome has been observed from the first to the ninth decade of life. The widespread adoption of serologic testing performed in an appropriate clinical context hopefully will limit diagnostic delay. The goals of treatment in PRS are to remove the circulating antibodies, to stop further production of autoantibodies, and to remove any antigen that stimulates antibody production. Treatment is based on plasmapheresis, steroids, and cyclophosphamide; however, infections are frequent contributors to death, and less toxic alternatives may improve outcome and prognosis resulting in a long-term survival. The degree of renal function and the percent of crescents on renal biopsy are better predictors of outcome. Renal transplantation can be safely carried out in PRS.

Anti-Glomerular Basement Membrane Disease↗

Atherosclerosis and antiphospholipid syndrome.

Atherosclerosis is an autoimmune/inflammatory disease associated with infectious, inflammatory, and autoimmune factors. Both humoral and cellular immune mechanisms have been proposed to participate in the onset and/or progression of atheromatous lesions. Heat-shock protein (hsp), oxidized low-density lipoprotein (LDL), and beta2-GPI have been reported to elicit humoral and cellular immune response in both experimental animals and humans. These autoantigens are expressed within atherosclerotic lesions. Immunization with the given autoantigens elicits an immune response that influences lesion progression. Atherosclerosis susceptibility can be transferred by autoantigen-sensitized lymphocytes from immunized animals. Patients with systemic lupus erythematosus (SLE) and antiphospholipid syndrome (APS) have a high risk for atherosclerotic cardiovascular events. The traditional risk factors fail to fully account for accelerated atherosclerosis in SLE and APS. Immunological alterations, such as antibodies to oxidized LDL, antiphospholipid antibodies (aPL), antibodies to beta-2 Glycoprotein (anti-beta2-GPL), anti-prothrombin antibodies, may play a role in premature atherosclerosis in SLE and APS. Paraoxonase (PON1) is an enzyme with antioxidant activity attached to the circulating high-density lipoprotein (HDL) in plasma. Its function is to prevent oxidation of LDL, thereby accounting for the antioxidant properties and the atherosclerotic protective effects of HDL. The relationship between PON1 and aPL has been recently suggested. IgG anti-HDL and IgG anti-beta2-GPI antibodies were associated with reduced PON1 activity in patients with SLE and primary APS. The determination of classic and new factors, together with specific autoantibody titers and the use of Doppler carotid ultrasound, are useful methods to detect early atherosclerosis in SLE and PAPS. Therapeutic strategies, including early control of disease and other risk factors, are essential to reduce morbidity and mortality.

Antibodies, Antiphospholipid↗

Correlation of prolactin serum concentrations with clinical activity and remission in patients with systemic lupus erythematosus. Effect of conventional treatment.

OBJECTIVE: The role of prolactin (PRL) in the pathogenesis of systemic lupus erythematosus (SLE) is controversial. The effect of conventional treatment (steroids, antimalarials, immunosuppressor drugs) on PRL concentrations is unclear. We investigated correlation of PRL levels with lupus activity in patients at entry and after 6 months of conventional treatment. METHODS: We studied 43 female patients with active SLE, who were divided in 2 groups; Group 1: 16 patients with minor organ involvement (cutaneous and articular involvement), and Group 2: 27 patients with major organ involvement (glomerulonephritis). Controls were 36 healthy individuals. PRL levels were determined by an immunoradiometric assay at entry and after 6 months of treatment. PRL levels were correlated with SLE Disease Activity Index (SLEDAI) score. RESULTS: Mild hyperprolactinemia (HPRL, 20-40 ng/ml) was found in 30/43 (69.7%) SLE patients. After 6 months of treatment a reduction in PRL levels was found in both groups: Group 1: 24.3 +/- 10.8 to 16.96 +/- 10.87 ng/ml (p < 0.001); and Group 2: 23.6 +/- 5.7 to 12.07 +/- 11.13 ng/ml (p < 0.001). The SLEDAI score also decreased after treatment: Group 1: 16.5 +/- 5.9 to 2.1 +/- 1.3 (p < 0.001); Group 2: 16.8 +/- 5.4 to 1.6 +/- 1.4 (p < 0.001). At entry and after treatment, a significant correlation between PRL levels and SLEDAI score was found in all patients (r = 0.4946, p = 0.0007, and r = 0.9086, p = 0.0001, respectively). CONCLUSION: HPRL was associated with SLE disease activity. Conventional immunosuppressive therapy decreased PRL levels in direct correlation with decreased SLE activity. This finding emphasizes that PRL may play a role in the pathogenesis and clinical expression of SLE.

Adult↗

Prolactin and autoimmunity.

Prolactin (PRL) is a versatile hormone that is produced by the anterior pituitary gland and various extrapituitary sites including immune cells. Furthermore, PRL has widespread influences on proliferation and differentiation of a variety of cells in the immune system and is, in effect, a cytokine. PRL-receptors (PRL-R) are distributed throughout the immune system and are included as members of the cytokine receptor superfamily. PRL-R signal transduction is mediated by a complex array of signaling molecules of which JAK2, Stat1 and Stat5 pathway have been well studied. In PRL-stimulated T cells, the transcription factor gene, interferon regulatory factor-1 provides a mechanism whereby PRL can regulate the immune response. The human PRL gene is situated on the short arm of chromosome 6 close to the major histocompatibility complex. Polymorphisms of the human PRL gene have implications for production of lymphocyte PRL in SLE. Mild and moderate hyperprolactinemia (HPRL) has been demonstrated in 20-30% of SLE patients and is associated with active disease. HPRL may have a role in lupus nephritis and central nervous system involvement of SLE patients. HPRL stimulated the production of autoantibodies. These evidences support the important role of PRL in autoimmunity and autoimmune diseases, mainly SLE.

Animals↗

Immune-neuroendocrine interactions and autoimmune diseases.

The relationship between immune-neuroendocrine system is firmly established. The messengers of this connection are hormones, neuropeptides, neurotransmitters and cytokines. The immune-neuroendocrine system have the capacity to synthesize and release these molecules, which, in turn, can stimulate or suppress the activity of immune or neuroendocrine cells by binding to receptors. In fact, hormones, neuropeptides and neurotransmitters participate in innate and adaptive immune response. Autoimmune rheumatic diseases (ARD) are characterized by aberrant production of pro-inflammatory cytokines, which are a potent activator of the HPA axis. In consequence, high levels of pro-inflammatory hormones such as estrogens and prolactin, and low levels of glucocorticoids, an anti-inflammatory hormone, have been described in the active phase of ARD. In addition, high levels of pro-inflammatory hormones and cytokines have also been frequently detected in organ involvement of patients with ARD, suggesting an abnormal local neuroendocrine immune interaction. There is evidence that hormonal changes may appear before the symptomatic phase of the disease. Therefore, it is possible that a pro-inflammatory hormone favors the rupture of tolerance, which is a key feature of autoimmune diseases. The interactions between the immune-neuroendocrine system have a major impact on our understanding of the pathogenic mechanisms, diagnosis and therapy of ARD.

Animals↗