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代谢酶的变化导致芯片中高糖处理细胞的硫酸乙酰肝素和透明质酸的差异变化。

Variations in metabolic enzymes cause differential changes of heparan sulfate and hyaluronan in high glucose treated cells on chip.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 1):126627. doi: 10.1016/j.ijbiomac.2023.126627. Epub 2023 Sep 1.

Abstract

Glycocalyx dysfunction is believed as the first step in diabetic vascular disease. However, few studies have systematically investigated the influence of HG on the glycocalyx as a whole and its major constituent glycans towards one type of cell. Furthermore, most studies utilized traditional two-dimensional (2D) cultures in vitro, which can't provide the necessary fluid environment for glycocalyx. Here, we utilized vascular glycocalyx on chips to evaluate the changes of glycocalyx and its constituent glycans in HG induced HUVECs. Fluorescence microscopy showed up-regulation of hyaluronan (HA) but down-regulation of heparan sulfate (HS). By analyzing the metabolic enzymes of both glycans, a decrease in the ratio of synthetic/degradative enzymes for HA and an increase in that for HS were demonstrated. Two substrates (UDP-GlcNAc, UDP-GlcA) for the synthesis of both glycans were increased according to omics analysis. Since they were firstly pumped into Golgi apparatus to synthesize HS, less substrates may be left for HA synthesis. Furthermore, the differential changes of HA and HS were confirmed in vessel slides from db/db mice. This study would deepen our understanding of impact of HG on glycocalyx formation and diabetic vascular disease.

摘要

糖萼功能障碍被认为是糖尿病血管病变的第一步。然而,很少有研究系统地研究高糖(HG)对糖萼及其主要成分聚糖对一种细胞的整体影响。此外,大多数研究都采用传统的二维(2D)体外培养,这不能为糖萼提供必要的流体环境。在这里,我们利用血管糖萼芯片来评估 HG 诱导的 HUVECs 中糖萼及其成分聚糖的变化。荧光显微镜显示透明质酸(HA)上调,硫酸乙酰肝素(HS)下调。通过分析两种聚糖的代谢酶,证明了 HA 的合成/降解酶的比值下降,而 HS 的比值上升。根据组学分析,两种聚糖合成的底物(UDP-GlcNAc、UDP-GlcA)增加。由于它们首先被泵入高尔基体合成 HS,因此用于 HA 合成的底物可能会减少。此外,在 db/db 小鼠的血管切片中证实了 HA 和 HS 的差异变化。这项研究将加深我们对 HG 对糖萼形成和糖尿病血管病变影响的理解。

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