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2-氧代羧酸与肥胖高血糖小鼠胰岛的功能。胰岛素分泌与45Ca摄取及代谢的关系。

2-oxocarboxylic acids and function of pancreatic islets in obese-hyperglycaemic mice. Insulin secretion in relation to 45Ca uptake and metabolism.

作者信息

Lenzen S, Panten U

出版信息

Biochem J. 1980 Jan 15;186(1):135-44. doi: 10.1042/bj1860135.

Abstract

The effects of aliphatic 2-oxocarboxylic acids, at concentrations of up to 40mm, on the function of pancreatic islets from ob/ob (obese-hyperglycaemic) mice were investigated. 1. 2-Oxopentanoate, dl-3-methyl-2-oxopentanoate, 4-methyl-2-oxopentanoate and 2-oxohexanoate all induced insulin release by isolated incubated islets and a biphasic insulin-secretory pattern in perfused mouse pancreas. The last two substances were similar in potency to glucose. Pyruvate, 2-oxobutyrate, 3-methyl-2-oxobutyrate and 2-oxo-octanoate did not induce insulin release significantly. 2. 2-Oxocarboxylic acids with significant insulin-secretory potency also induced significant (45)Ca uptake by isolated incubated islets. 3. The rates of decarboxylation of [1-(14)C]pyruvate, 3-methyl-2-oxo[1-(14)C]butyrate and 4-methyl-2-oxo[1-(14)C]pentanoate were twice as high as the rates of oxidation of the corresponding U-(14)C-labelled compounds. However, whereas the rates of metabolism of labelled pyruvate and 3-methyl-2-oxobutyrate steadily increased over the concentration range 1-40mm, those of labelled 4-methyl-2-oxopentanoate and d-[U-(14)C]glucose levelled off at concentrations above 10mm. 4. Omission of (40)CaCl(2) from the incubation medium reduced the rate of oxidation of the insulin secretagogue [U-(14)C]4-methyl-2-oxopentanoate, but left that of the non-(insulin secretagogue) [U-(14)C]3-methyl-2-oxobutyrate unaffected. 5. Only glucose, and not pyruvate, 3-methyl-2-oxobutyrate and 4-methyl-2-oxopentanoate, significantly inhibited oxidation of endogenous fatty acids. 6. It is suggested that stimulus-secretion coupling and the resulting exocytosis of insulin in pancreatic beta-cells may modulate both fuel oxidation and (45)Ca uptake.

摘要

研究了浓度高达40mmol的脂肪族2-氧代羧酸对ob/ob(肥胖-高血糖)小鼠胰岛功能的影响。1. 2-氧代戊酸、dl-3-甲基-2-氧代戊酸、4-甲基-2-氧代戊酸和2-氧代己酸均能诱导分离培养的胰岛释放胰岛素,并使灌注的小鼠胰腺呈现双相胰岛素分泌模式。后两种物质的效力与葡萄糖相似。丙酮酸、2-氧代丁酸、3-甲基-2-氧代丁酸和2-氧代辛酸未显著诱导胰岛素释放。2. 具有显著胰岛素分泌效力的2-氧代羧酸也能诱导分离培养的胰岛显著摄取(45)Ca。3. [1-(14)C]丙酮酸、3-甲基-2-氧代[1-(14)C]丁酸和4-甲基-2-氧代[1-(14)C]戊酸的脱羧速率是相应的U-(14)C标记化合物氧化速率的两倍。然而,虽然标记的丙酮酸和3-甲基-2-氧代丁酸的代谢速率在1-40mmol的浓度范围内稳步增加,但标记的4-甲基-2-氧代戊酸和d-[U-(14)C]葡萄糖的代谢速率在浓度高于10mmol时趋于平稳。4. 从孵育培养基中省略(40)CaCl2会降低胰岛素分泌促进剂[U-(14)C]4-甲基-2-氧代戊酸的氧化速率,但对非(胰岛素分泌促进剂)[U-(14)C]3-甲基-2-氧代丁酸的氧化速率没有影响。5. 只有葡萄糖,而不是丙酮酸、3-甲基-2-氧代丁酸和4-甲基-2-氧代戊酸,能显著抑制内源性脂肪酸的氧化。6. 提示胰腺β细胞中的刺激-分泌偶联以及由此产生的胰岛素胞吐作用可能调节燃料氧化和(45)Ca摄取。

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Studies in obese-hyperglycemic mice.对肥胖高血糖小鼠的研究。
Ann N Y Acad Sci. 1965 Oct 8;131(1):541-58. doi: 10.1111/j.1749-6632.1965.tb34819.x.
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Glucose metabolism in mouse pancreatic islets.小鼠胰岛中的葡萄糖代谢。
Biochem J. 1970 Jun;118(1):143-54. doi: 10.1042/bj1180143.

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