3 resultados para APOLIPOPROTEIN B-100


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Os distúrbios dos lípidos e das lipoproteínas plasmáticas, frequentes em doentes diabéticos insulinodependentes, contribuem significativamente para o risco cardiovascular elevado que estes indivíduos apresentam. Estudos efectuados em crianças e jovens insulinodependentes, demonstram o aparecimento precoce de alterações no metabolismo lipídico, habitualmente associa das e agravadas por um deficiente controle glicémico. Algumas outras alterações mantém-se presentes em crianças diabéticas, mesmo em condições de bom controle glicémico. Aparentemente, as medidas habituais de optimização do controle metabólico não corrigem todas as alterações do perfil lipídico, induzidas pela Diabetes Mellitus. A hiperglicémia induz a maioria das perturbações verificadas, através da estimulação da síntese hepática de triglicéridos, e pela glicolização e oxidação das lipoproteinas e respectivas apolipoproteinas. A carência em insulina, é responsá vel por alterações adicionais, ao interferir na actividade da lipoproteina lipase. O perfil lipídico, em crianças e jovens insulinodependentes, com deficiente controlo metabólico, tende a ser sobre ponível ao descrito para os diabéticos adultos: elevação significativa de triglicéridos, VLDL-Tg, LDL-Tg, VLDL-Col, Apo B e CIII e diminuição do HDL-Col e da Apo AI. Dada a forte corre lação do controle glicémico com a maioria das alterações lipidicas, mesmo em presença de va lores de colesterol e triglicéridos normais, os doseamentos das apolipoproteinas Apo AI, Apo B 100 e de Apo CIII, parecem ser fieis indicadores do controle glicémico, na criança diabética, e factores de elevado valor predictivo de risco cardiovascular, na idade adulta.

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Although a variety of nanoparticles (NPs) functionalized with amphotericin B, an antifungal agent widely used in the clinic, have been studied in the last years their cytotoxicity profile remains elusive. Here we show that human endothelial cells take up high amounts of silica nanoparticles (SNPs) conjugated with amphotericin B (AmB) (SNP-AmB) (65.4 12.4 pg of Si per cell) through macropinocytosis while human fibroblasts internalize relatively low amounts (2.3 0.4 pg of Si per cell) because of their low capacity for macropinocytosis. We further show that concentrations of SNP-AmB and SNP up to 400 mg/mL do not substantially affect fibroblasts. In contrast, endothelial cells are sensitive to low concentrations of NPs (above 10 mg/mL), in particular to SNP-AmB. This is because of their capacity to internalize high concentration of NPs and high sensitivity of their membrane to the effects of AmB. Low-moderate concentrations of SNP-AmB (up to 100 mg/mL) induce the production of reactive oxygen species (ROS), LDH release, high expression of pro-inflammatory cytokines and chemokines (IL-8, IL-6, G-CSF, CCL4, IL-1b and CSF2) and high expression of heat shock proteins (HSPs) at gene and protein levels. High concentrations of SNP-AmB (above 100 ug/mL) disturb membrane integrity and kill rapidly human cells(60% after 5 h). This effect is higher in SNP-AmB than in SNP.

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In this study the authors evaluated the efficacy of prophylaxis with liposomal amphotericin B (L-AmB) in the incidence of fungal infections (FI) during the first 3 months after liver transplant (LT). The study was retrospective and accessed a 4-year period from 2008 to 2011. All patients who died in the first 48 hours after LT were excluded. Patients were divided by the risk groups for FI: Group 1, high-risk (at least 1 of the following conditions: urgent LT; serum creatinine >2 mg/dL; early acute kidney injury [AKI] after LT; retransplantation; surgical exploration early post-LT; transfused cellular blood components [>40 U]); and Group 2, low-risk patients. Group 1 patients were further separated into those who received antifungal prophylaxis with L-AmB and those who did not. Prophylaxis with L-AmB consisted of intravenous administration of L-AmB, 100 mg daily for 14 days. Four hundred ninety-two patients underwent LT; 31 died in the first 48 hours after LT. From the remaining 461 patients, 104 presented with high-risk factors for FI (Group 1); of these, 66 patients received antifungal prophylaxis and 38 did not. In this group 8 FI were observed, 5 in patients without antifungal prophylaxis (P = .011). Three more FI were identified in Group 2. By logistic regression analysis, the categorical variable high-risk group was independently related to the occurrence of invasive FI (P = .006). We conclude that prophylaxis with L-AmB after LT was effective in reducing the incidence of FI. No influence on mortality was detected.