鞘脂酶对血糖水平、糖尿病发展和周细胞参与的影响。

IF 4.6 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Diabetes/Metabolism Research and Reviews Pub Date : 2024-03-22 DOI:10.1002/dmrr.3792
Karsten Buschard, Knud Josefsen, Lars Krogvold, Ivan Gerling, Knut Dahl-Jørgensen, Flemming Pociot
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引用次数: 0

摘要

目的:硫肽是β细胞制造胰岛素的伴侣。在此,我们探讨血糖正常值是否与这种鞘脂,尤其是其两种构建酶 CERS2 和 CERS6 有关。T1D 和 T2D 在临床诊断时,血液中的硫肽水平都很低,β 细胞也存在胰岛素抵抗。此外,我们还检测了胰岛周细胞的硫肽含量和β细胞的GLP-1受体,这两者都与胰岛素的产生有关:我们检测了 DiViD 和 nPOD 研究中胰岛的 mRNA 水平,进行了遗传关联分析,并对胰岛周细胞的硫肽进行了组织学调查:结果:负责合成硫酰胺前体二氢甘油酰胺的 CERS6 酶的基因多态性与非糖尿病患者的随机血糖值有关。这与我们在胰岛周细胞中发现的硫肽非常吻合,硫肽能调节朗格汉斯胰岛的毛细血管血流,而毛细血管血流对胰岛素生产的氧气供应非常重要。在新诊断的 T1D 患者的胰岛中,我们观察到 GLP-1 受体水平较低;这可能是他们的 beta 细胞出现胰岛素抵抗和胰岛素分泌较低的原因。在 T2D 患者中,我们发现了 CERS2 和 CERS6 的相关多态性:在此,我们描述了与非糖尿病患者血糖水平和 HbA1c 相关的硫化物酶的几种多态性。这些人的胰岛周细胞中含有硫甙。此外,新诊断的 T1D 患者胰岛素分泌低的原因可能是 GLP-1 受体水平低导致的β细胞胰岛素抵抗。
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Influence of sphingolipid enzymes on blood glucose levels, development of diabetes, and involvement of pericytes

Aims

Sulfatide is a chaperone for insulin manufacturing in beta cells. Here we explore whether the blood glucose values normally could be associated with this sphingolipid and especially two of its building enzymes CERS2 and CERS6. Both T1D and T2D have low blood sulfatide levels, and insulin resistance on beta cells at clinical diagnosis. Furthermore, we examined islet pericytes for sulfatide, and beta-cell receptors for GLP-1, both of which are related to the insulin production.

Materials and Methods

We examined mRNA levels in islets from the DiViD and nPOD studies, performed genetic association analyses, and histologically investigated pericytes in the islets for sulfatide.

Results

Polymorphisms of the gene encoding the CERS6 enzyme responsible for synthesising dihydroceramide, a precursor to sulfatide, are associated with random blood glucose values in non-diabetic persons. This fits well with our finding of sulfatide in pericytes in the islets, which regulates the capillary blood flow in the islets of Langerhans, which is important for oxygen supply to insulin production. In the islets of newly diagnosed T1D patients, we observed low levels of GLP-1 receptors; this may explain the insulin resistance in their beta cells and their low insulin production. In T2D patients, we identified associated polymorphisms in both CERS2 and CERS6.

Conclusions

Here, we describe several polymorphisms in sulfatide enzymes related to blood glucose levels and HbA1c in non-diabetic individuals. Islet pericytes from such persons contain sulfatide. Furthermore, low insulin secretion in newly diagnosed T1D may be explained by beta-cell insulin resistance due to low levels of GLP-1 receptors.

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来源期刊
Diabetes/Metabolism Research and Reviews
Diabetes/Metabolism Research and Reviews 医学-内分泌学与代谢
CiteScore
17.20
自引率
2.50%
发文量
84
审稿时长
4-8 weeks
期刊介绍: Diabetes/Metabolism Research and Reviews is a premier endocrinology and metabolism journal esteemed by clinicians and researchers alike. Encompassing a wide spectrum of topics including diabetes, endocrinology, metabolism, and obesity, the journal eagerly accepts submissions ranging from clinical studies to basic and translational research, as well as reviews exploring historical progress, controversial issues, and prominent opinions in the field. Join us in advancing knowledge and understanding in the realm of diabetes and metabolism.
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