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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Increased Activity of Some Enzymes in Serum in Cases of Severely Decompensated Diabetes, with and without Ketoacidosis
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Increased Activity of Some Enzymes in Serum in Cases of Severely Decompensated Diabetes, with and without Ketoacidosis

机译:伴或不伴酮症酸中毒的严重失代偿糖尿病患者血清中某些酶活性的增加

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摘要

In each of 10 highly hyperglycemic decompensated diabetics with ketoacidosis, we found a markedly increased serum activity of two lysosomal hydrolases (N-acetyl-β-glucosaminidase and β-glucuronidase). This was also true to a lesser degree of five diabetics with less severe decompensation and without ketoacidosis. The activity of both enzymes and the degree of hyperglycemia were highly correlated. We think these enzymatic changes result from a process of activation and release of tissue lysosomal enzymes, probably occurring in connection with the increased catabolism present in decompensated diabetes. Nonlysosomal (cytoplasmic or mitochondrial) enzymes were less changed (aspartate and alanine aminotransferases) or normal (aldolase, lactate- and malate dehydrogenase, and creatine kinase). This indicates that tissue damage alone could not account for the increased activity of the two lysosomal hydrolases; it therefore seems primarily to be due to involvement of lysosomes.
机译:在患有酮症酸中毒的10种高血糖失代偿糖尿病患者中,我们发现两种溶酶体水解酶(N-乙酰基-β-氨基葡萄糖苷酶和β-葡萄糖醛酸苷酶)的血清活性显着增加。对于较少程度的失代偿较轻且没有酮症酸中毒的五位糖尿病患者,情况也是如此。两种酶的活性与高血糖程度高度相关。我们认为这些酶促变化是由组织溶酶体酶的激活和释放过程引起的,可能与失代偿性糖尿病中存在的分解代谢增加有关。非溶酶体(胞质或线粒体)酶的变化(天冬氨酸和丙氨酸氨基转移酶)或正常酶(醛缩酶,乳酸和苹果酸脱氢酶以及肌酸激酶)变化较小。这表明仅组织损伤不能解释两种溶酶体水解酶活性的增加。因此,它似乎主要是由于溶酶体的参与。

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