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Backgroundβ-thalassemia is an inherited hemoglobinopathy resulting in quantitative changes in the β-globin chain. Understanding the molecular basis of that disorder requires studying the expression of genes controlling the pathways that affect the erythropoietic homeostasis especially the MAPK pathway. The MAPKs are a family of serine/threonine kinases that play an essential role in connecting cell-surface receptors to DNA in the nucleus of the cell.Aimto study the effect of expression of GNAI2, DUSP5 and ARRB1 genes on MAPK signaling pathway in pediatric patients with beta thalassemia.MethodsForty children with beta thalassemia major (TM), forty children with beta thalassemia intermedia (TI) and forty age and gender matched healthy controls were enrolled in this study. Detection of GNAI2, DUSP5 and ARRB1 mRNA expression was done by real time polymerase chain reaction (RT-PCR).Resultsrevealed increased expression of ARRB1 (Arrestin Beta 1) gene, and decreased expression of both GNAI2 (Guanine nucleotide-binding protein G (i) subunit alpha-2) and DUSP5 (Dual specificity protein phosphatase 5) genes in both patient groups than control groups respectively.ConclusionsChange in the rate of expression of ARRB1, GNAI2 and DUSP5 may have a role in the pathogenesis of abnormal hematopoiesis in cases of β thalassemia through affecting the MAPK pathway.  相似文献   
63.
This study examined the effects of various insect species, such as those of Bombyx mori, Hermetia illucens and Tenebrio monitor, that have long been used in combination with medicinal plants and are an important alternative to modern medicine in many parts of the world. The current use of traditional pesticides from around the year 2010 and the characteristics of isolated biologically active molecules are also presented. Natural insect products were examined or isolated from ants, bees, beetles, cockroaches, termites, bees, etc. The biological activities of these natural products derived from insects include antimicrobial, antifungal, anticancer, antiviral, antioxidant and anti-inflammatory effects. Insect additives to animal feed rarely distort the relevant physicochemical variables or sensory profile of the meat, whereas the fatty acid (FA) profile is discernibly changed. In fact, insect derivatives have great potential for future drug discovery in natural products, as well as for the production of nutritious foods for humans and for animals. It is concluded that the inoculation of insect powder in animal feeds results in the prevention and treatment of disease, enhances the growth of animals and promotes the bioactive compounds in animal-based products. Owing to the sustainability of their breeding, large-scale cultures of these insects seem economically viable. Insect oil and protein as well as chitin ingredients are widely used in cosmetics, and these substances are considered high-value co-products. The major challenges associated with their use will be linked to the development of methods for separating industrial-derived materials.  相似文献   
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