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生物合成人双精氨酸胰岛素的体外活性

In vitro activity of biosynthetic human diarginylinsulin.

作者信息

Zeuzem S, Stahl E, Jungmann E, Zoltobrocki M, Schöffling K, Caspary W F

机构信息

Zentrum der Inneren Medizin, Johann Wolfgang Goethe-Universität, Frankfurt am Main, FRG.

出版信息

Diabetologia. 1990 Feb;33(2):65-71. doi: 10.1007/BF00401042.

DOI:10.1007/BF00401042
PMID:2184062
Abstract

In diarginylinsulin two arginine residues are located at the C-terminal end of the B-chain (ArgB31 and ArgB32). This accounts for a shift of the isoelectric point from pH 5.4 in native insulin to pH 7.0 in diarginylinsulin leading to pharmacodynamic characteristics of an intermediate acting insulin when administered s.c. as pH 4.0-5.0 solution. We have investigated insulin receptor binding and biological activity of biosynthetic human diarginylinsulin in human adipocytes and compared to native insulin and proinsulin. Association- and dissociation studies of insulin receptor binding revealed no differences for diarginylinsulin and native insulin. In competition studies under steady-state binding conditions, half-maximal displacement of tracer occurred at 352 +/- 33 pmol/l, 337 +/- 32 pmol/l and 3640 +/- 480 pmol/l for diarginylinsulin, insulin and proinsulin, respectively. The biologic potency of human diarginylinsulin was evaluated by the ability to stimulate D-glucose transport and by the assessment of the antilipolytic activity. Activation of D-glucose transport was half-maximal at 49.6 +/- 5.4 pmol/l (diarginylinsulin), 44.8 +/- 5.8 pmol/l (insulin) and at 476.7 +/- 134.3 pmol/l (proinsulin). Half-maximal inhibition of lipolysis occurred at 13.9 +/- 3.4 pmol/l, 15.4 +/- 2.9 pmol/l and 138.4 +/- 38.6 pmol/l, respectively. In conclusion, diarginylinsulin has almost identical insulin receptor binding characteristics and full biological activity in vitro compared to native insulin. This pharmacodynamically intermediate acting insulin preparation is therefore of potential therapeutical value.

摘要

在双精氨酸胰岛素中,两个精氨酸残基位于B链的C末端(精氨酸B31和精氨酸B32)。这导致等电点从天然胰岛素的pH 5.4转移至双精氨酸胰岛素的pH 7.0,当以pH 4.0 - 5.0溶液皮下给药时,产生中效胰岛素的药效学特征。我们研究了生物合成人双精氨酸胰岛素在人脂肪细胞中的胰岛素受体结合及生物活性,并与天然胰岛素和胰岛素原进行了比较。胰岛素受体结合的结合和解离研究显示,双精氨酸胰岛素与天然胰岛素无差异。在稳态结合条件下的竞争研究中,对于双精氨酸胰岛素、胰岛素和胰岛素原,示踪剂的半数最大置换浓度分别为352±33 pmol/l、337±32 pmol/l和3640±480 pmol/l。通过刺激D - 葡萄糖转运的能力以及抗脂解活性评估来评价人双精氨酸胰岛素的生物效力。D - 葡萄糖转运的激活在49.6±5.4 pmol/l(双精氨酸胰岛素)、44.8±5.8 pmol/l(胰岛素)和476.7±134.3 pmol/l(胰岛素原)时达到半数最大效应。脂解的半数最大抑制分别出现在13.9±3.4 pmol/l、15.4±2.9 pmol/l和138.4±38.6 pmol/l。总之,与天然胰岛素相比,双精氨酸胰岛素在体外具有几乎相同的胰岛素受体结合特征和完全的生物活性。因此,这种药效学上的中效胰岛素制剂具有潜在的治疗价值。

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本文引用的文献

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The biosynthesis of insulin and a probable precursor of insulin by a human islet cell adenoma.人胰岛细胞腺瘤中胰岛素及胰岛素可能前体的生物合成。
Proc Natl Acad Sci U S A. 1967 Feb;57(2):473-80. doi: 10.1073/pnas.57.2.473.
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Insulin binding and action on fat cells from young healthy females and males.胰岛素与年轻健康女性和男性脂肪细胞的结合及作用。
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Biosynthesis and periplasmic segregation of human proinsulin in Escherichia coli.人胰岛素原在大肠杆菌中的生物合成及周质区隔化
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Hexose transport in human adipocytes: factors influencing the response to insulin and kinetics of methylglucose and glucose transport.人类脂肪细胞中的己糖转运:影响对胰岛素反应的因素以及甲基葡萄糖和葡萄糖转运的动力学
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Tyrosine A14[125I]monoiodoinsulin: Preparation, Biologic Properties, and long-term stability.酪氨酸A14[125I]单碘胰岛素:制备、生物学特性及长期稳定性
Diabetes. 1981 Jan;30(1):1-8. doi: 10.2337/diab.30.1.1.
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Regulation of the immune response--role of the macrophage.免疫反应的调节——巨噬细胞的作用
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In vitro activity of biosynthetic human proinsulin. Receptor binding and biologic potency of proinsulin and insulin in isolated rat adipocytes.生物合成人胰岛素原的体外活性。胰岛素原和胰岛素在分离的大鼠脂肪细胞中的受体结合及生物学效能。
Diabetes. 1984 Nov;33(11):1062-7. doi: 10.2337/diab.33.11.1062.
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Differential binding of sulphated insulin to adipocytes and hepatocytes.硫酸化胰岛素与脂肪细胞和肝细胞的差异性结合。
Diabetologia. 1984 Aug;27(2):184-8. doi: 10.1007/BF00273803.