Background: The genetic polymorphisms of vitamin D receptor (VDR) have an association with thalassemia development, additionally to the environmental elements that elicited the disorder in the genetically predisposed individuals. As well, VDR functions responsible for the regulation of bone metabolism, such its part in immunity. Aim: The sitting study intended to inspect the association between thalassemia disease and the genetic polymorphisms of VDR among the Iraqi population then compared these findings to other findings of thalassemia patients in other different ethnic populations. Materials and methods: The restriction enzymes Bsm-I and Fok-I were applied to determine the genetic polymorphisms frequencies of VDR by a Polymerase Chain Reaction – Random Fragment Length Polymorphisms (PCR-RFLP) techniques of the targeted parts (rs2228570 and rs1544410) in 70 Iraqi patients suffering from thalassemia (18 males and 52 females) and 75 Iraqi healthy participants as a control group (18 males and 52 females). Also, the comparison between the present findings of VDR genetic polymorphisms in Iraqi thalassemia patients and other previous findings for thalassemia patients in different ethnic populations for the selected VDR Bsm-I and Fok-I sites were done. Results: The present findings manifested a significant difference of VDR Bsm-I and Fok-I genetic polymorphisms frequency (rs2228570 and rs1544410) in the thalassemia patient's group contrasted to the healthy control group. In VDR rs2228570, the AA genotype and A allele frequency were significantly increased in the patients' group contrasted to the healthy control group (44.29 vs. 8.0%, OR: 9.14, 95% CI: 3.53–23.68, p: 4.1 × 10−7; 69.0 vs. 27.0%, OR: 6.02, 95% CI: 3.27–11.06, p: 3.9 × 10−9, respectively). while, the results of VDR genetic polymorphisms rs1544410 manifested that the CC and CT genotyping and C allele frequency were significantly increased among the patient's group contrasted to the healthy control group (28.75 vs. 6.67%, OR: 5.60, 95% CI: 1.98–15.81, p: 7.2 × 10−4; 57.14 vs. 24.0, OR: 4.22, 95% CI: 2.08–8.55, p: 8.1 × 10−5; and 57.0 vs. 19.0%, OR: 6.39, 95% CI: 3.0–10.66, p: 3.9 × 10−9, respectively). Also, it manifested the genetic polymorphisms variance of VDR rs2228570 and rs1544410 between the Iraqi thalassemia patients and other ethnic thalassemia patients. The results showed different variants among the Iraqi thalassemia patients' polymorphisms and other ethnic thalassemia patients' polymorphisms. Conclusions: The present results demonstrated a significant association between the genetic polymorphisms of VDR and thalassemia disease, the AA genotype and A allele frequency was significantly increased among the thalassemia patients' group compared to the controls in VDR Bsm-I polymorphism (rs2228570). While the CC and CT genotypes and C allele frequency were significantly increased among the thalassemia patients' group compared to the controls in VDR Fok-I polymorphism (rs1544410). As well, it indicates the variance of VDR Bsm-I and Fok-I genetic polymorphisms frequencies between the Iraqi thalassemia patients and other thalassemia patients from different ethnic populations.
Background: Polymethylmethacrylate (PMMA) has relatively unsatisfactory mechanical properties such as low flexural strength and impact strength also dimensional instability. Material and method: Zirconium silicate nanoparticles were coated with a layer of trimethoxysilylpropylmethacrylate (TMSPM) before sonication in monomer (MMA) with the percentages 1% and 1.5% by weight then mixed with powder using conventional procedure, (150) samples were prepared and divided into three groups, each group consisted of (50) samples, the first group prepared from PMMA without addition (control), another group with the addition of 1% wt Zrsio4 nanoparticles (experimental) and the third one with 1.5% wt Zrsio4 nanoparticles (experimental). Each group
... Show MoreThe synthesis of ligands with N2S2 donor sets that include imine, an amide, thioether, thiolate moieties and their metal complexes were achieved. The new Schiff-base ligands; N-(2-((2,4-diphenyl-3-azabicyclo[3.3.1]nonan-9-ylidene)amino)ethyl)-2-((2-mercaptoethyl)thio)-acetamide (H2L1) and N-(2-((2,4-di-p-tolyl-3-azabicyclo[3.3.1]nonan-9-ylidene)amino)ethyl)-2-((2-mercaptoethyl)thio) acetamide (H2L2) were obtained from the reaction of amine precursors with 1,4-dithian-2-one in the presence of triethylamine as a base in the CHCl3 medium. Complexes of the general formula K2<
BACKGROUND: The degree of the development of coronary collaterals is long considered an alternate–that is, a collateral–source of blood supply to an area of the myocardium threatened with vascular ischemia or insufficiency. Hence, the coronary collaterals are beneficial but can also promote harmful (adverse) effects. For instance, the coronary steal effect during the myocardial hyperemia phase and that of restenosis following coronary angioplasty.
In this work, InSe thin films were deposited on glass substrates by thermal evaporation technique with a deposit rate of (2.5∓0.2) nm/sec. The thickness of the films was around (300∓10) nm, and the thin films were annealed at (100, 200 and 300)°C. The structural, morphology, and optical properties of Indium selenide thin films were studied using X-ray diffraction, Scanning Electron Microscope and UV–Visible spectrometry respectively. X-ray diffraction analyses showed that the as deposited thin films have amorphous structures. At annealing temperature of 100°C and 200°C, the films show enhanced crystalline nature, but at 300°C the film shows a polycrystalline structure with Rhombohedral phas
To prepare a new ligand, many compounds were used to synthesize Schiff-Mannich base, such as isatin, Para chloro Aniline, 2-mercaptobenzimidazole and indole. The resulting compound 1-((2-((1H-indol-1-ylthio)-1H-benzo[d]imidazol1-yl)methyl)-3-(4-chlorophenylimino)indolin-2-one (L). (L) was used to create a series of metal ion complexes with Co (II), Ni (II), Cu (II), Pd (II), Pt (IV), and Au (III). C.H.N.S., FTIR, mass spectra UV-ViS, 1H-NMR, 13CNMR, magnetic moment, and molar conductivity were used to characterize all of these compounds. Except for the palladium(II) and gold(III) complexes, all of the produced complexes had an octahedral geometry, according to the data. The antibacterial activity of the produced compounds was tested by usin
... Show MoreA novel Schiff base ligand (DBC) synthesized from 4-chlorobenzoic acid, along with its Cu (II) and Co (II) complexes, was prepared and characterized using FT-IR, 1H and 13C-NMR, UV-Vis spectroscopy, as well as magnetic and conductivity measurements. Based on this, a tetrahedral structure of [M(DBC)Cl2] was proposed for the complexes. Antioxidant activity of the compounds was assessed and compared to ascorbic acid, revealing that the copper complex exhibited superior antioxidant properties compared to the cobalt complex and the ligand. Furthermore, the antibiofilm potential of the copper and cobalt complexes was assessed against five clinically relevant bacterial species (P.aeruginosa, E.coli, K.pneumoniae, S.aureus and S.typhi) usin
... Show MoreThe biggest problem of structural materials for fusion reactor is the damage caused by the fusion product neutrons to the structural material. If this problem is overcomed, an important milestone will be left behind in fusion energy. One of the important problems of the structural material is that nuclei forming the structural material interacting with fusion neutrons are transmuted to stable or radioactive nuclei via (n, x) (x; alpha, proton, gamma etc.) reactions. In particular, the concentration of helium gas in the structural material increases through deuteron- tritium (D-T) and (n, α) reactions, and this increase significantly changes the microstructure and the properties of the structural materials. T
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