Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0039730 (thalassemia)
10,305 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

We reported a case of a thrombosis of the retinal and central artery and vein in a 44-year-old patient, with high-grade T-cell lymphoma. Cardiovascular family history and a medical history of cerebral ischemia caused by in situ fibrinolysis, led to perform thorough hematologic and genetic examinations. These disclosed a prothrombin gene G 20210 a variant in a homozygous state. In a heterozygous state, this mutation leads to an increase in plasma prothrombin rate of the order of 30%. Therefore, it is considered to be a major risk factor for venous thrombotic disease. Otherwise, acute leukemia or non-Hodgkin's lymphoma may induce thrombosis of retinal artery and vein by means of an optic nerve infiltration, as well as beta-thalassemia, ocular trauma and retrobulbar anesthesia. Retinal central artery and vein are seldom both involved; whereas occlusions of their branches are more frequent.
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PMID:[Mixed retinal thrombosis in a patient carrying prothrombin gene mutation in a homozygote state]. 1060 75

Sodium 4-phenylbutyrate (4-PBA) is a low molecular weight fatty acid that has been used for treatment of urea cycle disorders in children, sickle cell disease, and thalassemia. It has been demonstrated recently that 4-PBA can act as a chemical chaperone by reducing the load of mutant or mislocated proteins retained in the endoplasmic reticulum (ER) under conditions associated with cystic fibrosis and liver injury. In the present study, we evaluated the neuroprotective effect of 4-PBA on cerebral ischemic injury. Pre- or post-treatment with 4-PBA at therapeutic doses attenuated infarction volume, hemispheric swelling, and apoptosis and improved neurological status in a mouse model of hypoxia-ischemia. Moreover, 4-PBA suppressed ER-mediated apoptosis by inhibiting eukaryotic initiation factor 2alpha phosphorylation, CCAAT/enhancer-binding protein homologous protein induction, and caspase-12 activation. In neuroblastoma neuro2a cells, 4-PBA reduced caspase-12 activation, DNA fragmentation, and cell death induced by hypoxia/reoxygenation. It protected against ER stress-induced but not mitochondria-mediated cell death. Additionally, 4-PBA inhibited the expression of inducible nitric-oxide synthase and tumor necrosis factor-alpha in primary cultured glial cells under hypoxia/reoxygenation. These results indicate that 4-PBA could protect against cerebral ischemia through inhibition of ER stress-mediated apoptosis and inflammation. Therefore, the multiple actions of 4-PBA may provide a strong effect in treatment of cerebral ischemia, and its use as a chemical chaperone would provide a novel approach for the treatment of stroke.
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PMID:Sodium 4-phenylbutyrate protects against cerebral ischemic injury. 1522 15

Patients with non-transfusion-dependent thalassemia (NTDT) experience a wide array of clinical complications despite their independence from frequent, regular red blood cell (RBC) transfusions. According to the current understanding of NTDT, these clinical complications stem from the interaction of multiple pathophysiological factors: ineffective erythropoiesis, iron overload, and hypercoagulability. The state of chronic anemia and hypoxia-resulting from ineffective erythropoiesis and hemolysis-leads to the expansion of the erythroid marrow and extramedullary hematopoiesis. The chronic ineffective erythropoiesis also triggers increased intestinal iron absorption and deposition in the liver and endocrine glands despite the lack of transfusional iron load. Patients with NTDT also have a higher incidence of thromboembolic disease, pulmonary hypertension, and silent cerebral ischemia. The treatment of NTDT relies on occasional or more frequent blood transfusions for certain indications (severe infection, pregnancy, and surgery), iron chelation therapy, splenectomy, and hydroxyurea. Splenectomy is no longer routinely performed in all patients with NTDT in light of its association with increased risk of NTDT-related complications. This review focuses on the clinical morbidities associated with NTDT, summarizes the mainstays of treatment, and sheds light on future therapeutic directions in the field.
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PMID:Morbidities in non-transfusion-dependent thalassemia. 2718 41