8 resultados para FACTOR-VIII GENE


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Disease-causing alterations within the F8 gene were identified in 177 hemophilia A families of Portuguese origin. The spectrum of non-inversion F8 mutations in 101 families included 67 different alterations, namely: 36 missense, 8 nonsense and 4 splice site mutations, as well as 19 insertions/deletions. Thirty-four of these mutations are novel. Molecular modeling allowed prediction of the conformational changes introduced by selected amino acid substitutions and their correlation with the patients' phenotypes. The relatively frequent, population-specific, missense mutations together with de novo alterations can lead to significant differences in the spectrum of F8 mutations among different populations.

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The development of antibodies to factor VIII is one of the most serious complications of haemophilia treatment. Approximately 30% of patients with severe haemophilia develop neutralizing inhibitors to replacement FVIII. Although most patients with inhibitors do not bleed more frequently than patients without inhibitors, bleeding is more difficult to control and this patients suffer more severe bleeding and have greater morbidity and mortality. Patients with persistent high-titer inhibitor who are not candidates or fail ITI, pose a great challenge to haemophilia management. The efficacy and safety of prophylaxis with bypassing agents in reducing bleeding tendency, has been described in numerous studies. Patients and methods: We report tree adult severe haemophilia A patients, two with persistent high-titre inhibitors and one who failed ITI, on prophylactic treatment after several significant musculoskeletal and life-threatening haemorrhagic episodes (intrabdominal/intramuscular) and pseudotumor haemorrhage. Treatment regimens consisted of APCC (Feiba®) in doses of 60-70UKg-1, 2-3 times per week, according underlying bleeding phenotype. Breakthrough bleeds were treated with either APCC (Feiba®) or rFVIIa (NovoSeven®). Results and Conclusion: There was reduction in total bleeding episodes in two patients (43% to 80%) and one patient remained stable, while receiving prophylaxis. Absence of severe and life threatening bleeding episodes, as well as inpatient stays, contributing to a better quality of life in those patients, was observed. APCC (Feiba®) was well tolerated and no thrombotic events were observed.

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Diabetic macular oedema (DMO) is a leading cause of vision loss in the working-age population worldwide. Corticosteroid drugs have been demonstrated to inhibit the expression of both the vascular endothelial growth factor (VEGF) gene and other anti-inflammatory mediators, such as prostaglandins. Triamcinolone, fluocinolone and dexamethasone are the main steroids that have been studied for the treatment of macular oedema. Over the last few years, several studies have suggested an important role for dexamethasone in the management of DMO. The dexamethasone intravitreal implant (DEX implant) (Ozurdex®; Allergan, Inc., Irvine, CA) is a novel approach approved by the US Food and Drug Administration (FDA) and by the EU for the intravitreal treatment of macular oedema after branch or central retinal vein occlusion, and for the treatment of non-infectious uveitis affecting the posterior segment of the eye. We reviewed manuscripts that had investigated the pharmacokinetics, efficacy and safety of the DEX implant regarding DMO treatment.

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Behçet's disease (BD) is a complex disease with genetic and environmental risk factors implicated in its etiology; however, its pathophysiology is poorly understood. To decipher BD's genetic underpinnings, we combined gene expression profiling with pathway analysis and association studies. We compared the gene expression profiles in peripheral blood mononuclear cells (PBMCs) of 15 patients and 14 matched controls using Affymetrix microarrays and found that the neuregulin signaling pathway was over-represented among the differentially expressed genes. The Epiregulin (EREG), Amphiregulin (AREG), and Neuregulin-1 (NRG1) genes of this pathway stand out as they are also among the top differentially expressed genes. Twelve haplotype tagging SNPs at the EREG-AREG locus and 15 SNPs in NRG1 found associated in at least one published BD genome-wide association study were tested for association with BD in a dataset of 976 Iranian patients and 839 controls. We found a novel association with BD for the rs6845297 SNP located downstream of EREG, and replicated three associations at NRG1 (rs4489285, rs383632, and rs1462891). Multifactor dimensionality reduction analysis indicated the existence of epistatic interactions between EREG and NRG1 variants. EREG-AREG and NRG1, which are members of the epidermal growth factor (EGF) family, seem to modulate BD susceptibility through main effects and genegene interactions. These association findings support a role for the EGF/ErbB signaling pathway inBD pathogenesis that warrants further investigation and highlight the importance of combining genetic and genomic approaches to dissect the genetic architecture of complex diseases.