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Associations between Vitamin D and Type 2 Diabetes Mellitus: The Role of Vitamin D Receptor and Binding Protein
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作者 Eman S. Arafat Inass M. Taha +2 位作者 Shahad W. Kattan Nouf Abubakr Babteen Iman Fawzy 《Journal of Diabetes Mellitus》 2020年第4期222-235,共14页
<strong>Background:</strong> Type 2 diabetes mellitus (T2DM) is a chronic disease that is characterized by <em>β</em>-cell dysfunction and resistance for insulin. Vitamin D is necessary for in... <strong>Background:</strong> Type 2 diabetes mellitus (T2DM) is a chronic disease that is characterized by <em>β</em>-cell dysfunction and resistance for insulin. Vitamin D is necessary for insulin secretion so it is a crucial factor in the development of T2DM. This study was done to investigate the association between serum 25-hydroxy Vitamin D [25(OH)3D], VDR (Vitamin D receptor) and VDBP (Vitamin D binding protein) with type 2 diabetic patients compared to control subjects.<strong> Subjects and Methods:</strong> This study carried out 110 female patients who were previously diagnosed with type 2 diabetes and 110 age, sex and weight matched as controls. All participants were subjected to full history taking, clinical examination and assessment of fasting blood glucose, HbA1c , lipid profile, 25-hydroxy Vitamin D [25(OH)3D], VDR and VDBP. <strong>Results:</strong> Results showed that the level of 25(OH)3D was significantly lower in diabetic group compared to controls and was significantly negatively correlated with glycated hemoglobin, serum total cholesterol and low density lipoprotein cholesterol in type 2 DM. Decreasing Vitamin D level was significantly associated with decreasing VDR. No significant association was found between Vit D and VDBP levels. <strong>Conclusions:</strong> Vitamin D deficiency is frequent in diabetic patients and associated with poor control and outcome. This suggests a role of Vitamin D in the pathogenesis and control of T2DM. Serum VDBP in diabetes may be independent to the level of 25(OH)3D and needs further studies. 展开更多
关键词 diabetes Mellitus Type 2 25-hydroxy vitamin d vitamin d Receptor vitamin d Binding Protein
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重组枯草芽孢杆菌全细胞催化合成钙二醇的初步研究 被引量:2
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作者 李雨虹 耿鹏 +4 位作者 刘建民 时祎 辛瑜 石贵阳 张梁 《食品与发酵工业》 CAS CSCD 北大核心 2021年第12期17-22,共6页
钙二醇(25-hydroxy vitamin D_(3),25-OH V_(D3))是一种具有广泛生理活性及药用价值的物质。该文旨在通过分子生物学手段构建1株异源表达V_(D3)羟化酶(V_(D3)hydroxylase,Vdh)的重组枯草芽孢杆菌Bacillus subtilis WB600/pMA5-vdh,使其... 钙二醇(25-hydroxy vitamin D_(3),25-OH V_(D3))是一种具有广泛生理活性及药用价值的物质。该文旨在通过分子生物学手段构建1株异源表达V_(D3)羟化酶(V_(D3)hydroxylase,Vdh)的重组枯草芽孢杆菌Bacillus subtilis WB600/pMA5-vdh,使其可以利用细胞催化系统合成25-OH V_(D3)。该重组菌株经诱导表达后,首先利用CO差光谱法评价Vdh的体外活性,并将其用作全细胞催化剂合成25-OH V_(D3),随后通过优化温度、时间、转速及pH等全细胞转化条件,提高其转化合成25-OH V_(D3)的产量。结果表明,37℃下培养24 h后,重组枯草芽孢杆菌B.subtilis WB600/pMA5-vdh的菌体裂解物酶活力达0.56 nmol/g;并且在底物质量浓度为0.1 g/L、外加18 g/L葡萄糖和22.5 g/L的2-羟丙基-β-环糊精的条件下,控制初始pH为7、反应温度30℃、转速200 r/min时进行全细胞转化反应48 h,得到25-OH V_(D3)的转化率为10.36%,以上研究结果为制备和生产食品级25-OH V_(D3)提供了新的思路。 展开更多
关键词 钙二醇(25-hydroxy vitamin d_(3) 25-OH V_(d3)) 枯草芽孢杆菌 V_(d3)羟化酶 异源表达 全细胞催化
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