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[Fontaine II期糖尿病大血管病变中的病理流动性、糖化血红蛋白及红细胞代谢紊乱]

[Pathologic fluidity, glycohemoglobin and erythrocyte metabolism disorder in Fontaine II diabetic macroangiopathy].

作者信息

Goebel K M, Goebel F D, Lanser K G

出版信息

Schweiz Med Wochenschr. 1983 Dec 17;113(50):1936-8.

PMID:6665540
Abstract

This pilot study set out to evaluate the influence of metabolic disorders due to diabetes mellitus on red blood cell (RBC) substrates, deformability and glycohaemoglobin (HbA1) levels. RBC deformability was measured optoelectronically by microcomputer-assisted polymicroviscometry (filtrometry) following separation of RBC into old (dense) and young (buoyant) fractions by means of density-layer centrifugation. 20 adult patients with type II diabetes mellitus associated with Fontaine II macroangiopathy underwent RBC investigations before and after diabetic therapy. Those RBC fractions containing older cells exhibited impaired metabolism, increased HbA1 levels and markedly altered deformability which significantly differed from values obtained from young RBC fractions. However, old RBC fractions only of patients treated for diabetes persistently displayed a slight increase in HbA1 levels associated with a still altered deformability, in contrast to the young RBC fractions which showed normal values again after diabetic treatment. The preliminary results suggest an adaptive alteration of RBC metabolism and function in diabetes, predominantly existing in old RBC, which still persists only in old RBC fractions after diabetic therapy. Thus, a prolonged pathologic effect of older RBC on the peripheral microcirculation may occur in diabetes, resulting in a further persistent maintenance of diabetic vascular disease.

摘要

这项初步研究旨在评估糖尿病引起的代谢紊乱对红细胞(RBC)底物、可变形性和糖化血红蛋白(HbA1)水平的影响。通过密度梯度离心将红细胞分为衰老(致密)和年轻(有浮力)部分后,采用微机辅助多微粘度计(滤过法)以光电方式测量红细胞可变形性。20例患有与Fontaine II期大血管病变相关的II型糖尿病的成年患者在糖尿病治疗前后接受了红细胞检查。那些含有较老细胞的红细胞部分表现出代谢受损、HbA1水平升高和可变形性明显改变,这与年轻红细胞部分的值有显著差异。然而,与年轻红细胞部分在糖尿病治疗后再次显示正常数值不同,仅接受糖尿病治疗患者的衰老红细胞部分持续显示HbA1水平略有升高,且可变形性仍有改变。初步结果表明,糖尿病中红细胞代谢和功能存在适应性改变,主要存在于衰老红细胞中,且在糖尿病治疗后仅衰老红细胞部分仍持续存在。因此,在糖尿病中,衰老红细胞可能会对外周微循环产生长期的病理影响,导致糖尿病血管疾病的进一步持续存在。

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