Harnessing the benefits of glycine supplementation for improved pancreatic microcirculation in type 1 diabetes mellitus

IF 2.9 4区 医学 Q2 PERIPHERAL VASCULAR DISEASE
Bing Wang , Xiaohong Song , Xu Zhang , Yuan Li , Mengting Xu , Xueting Liu , Bingwei Li , Sunjing Fu , Hao Ling , Yingyu Wang , Xiaoyan Zhang , Ailing Li , Mingming Liu
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Abstract

Type 1 diabetes mellitus (T1DM) is predominantly managed using insulin replacement therapy, however, pancreatic microcirculatory disturbances play a critical role in T1DM pathogenesis, necessitating alternative therapies. This study aimed to investigate the protective effects of glycine supplementation on pancreatic microcirculation in T1DM. Streptozotocin-induced T1DM and glycine-supplemented mice (n = 6 per group) were used alongside control mice. Pancreatic microcirculatory profiles were determined using a laser Doppler blood perfusion monitoring system and wavelet transform spectral analysis. The T1DM group exhibited disorganized pancreatic microcirculatory oscillation. Glycine supplementation significantly restored regular biorhythmic contraction and relaxation, improving blood distribution patterns. Further-more, glycine reversed the lower amplitudes of endothelial oscillators in T1DM mice. Ultrastructural deterioration of islet microvascular endothelial cells (IMECs) and islet microvascular pericytes, including membrane and organelle damage, collagenous fiber proliferation, and reduced edema, was substantially reversed by glycine supplementation. Additionally, glycine supplementation inhibited the production of IL-6, TNF-α, IFN-γ, pro-MMP-9, and VEGF-A in T1DM, with no significant changes in energetic metabolism observed in glycine-supplemented IMECs. A statistically significant decrease in MDA levels accompanied by an increase in SOD levels was also observed with glycine supplementation. Notably, negative correlations emerged between inflammatory cytokines and microhemodynamic profiles. These findings suggest that glycine supplementation may offer a promising therapeutic approach for protecting against pancreatic microcirculatory dysfunction in T1DM.

利用补充甘氨酸改善1型糖尿病胰腺微循环的益处。
1型糖尿病(T1DM)主要通过胰岛素替代疗法来治疗,然而,胰腺微循环障碍在T1DM的发病机制中起着关键作用,因此需要替代疗法。本研究旨在探讨补充甘氨酸对T1DM患者胰腺微循环的保护作用。链脲佐菌素诱导的T1DM和甘氨酸补充的小鼠(n = 每组6只)与对照小鼠一起使用。使用激光多普勒血液灌注监测系统和小波变换频谱分析来确定胰腺微循环谱。T1DM组胰腺微循环振荡紊乱。补充甘氨酸显著恢复了有规律的生物节律收缩和放松,改善了血液分布模式。此外,甘氨酸逆转了T1DM小鼠内皮振荡器的较低振幅。补充甘氨酸可显著逆转胰岛微血管内皮细胞(IMECs)和胰岛微血管周细胞的超微结构恶化,包括膜和细胞器损伤、胶原纤维增殖和水肿减轻。此外,补充甘氨酸可抑制T1DM患者IL-6、TNF-α、IFN-γ、pro-MMP-9和VEGF-A的产生,在补充甘氨酸的IMECs中未观察到能量代谢的显著变化。补充甘氨酸也观察到MDA水平的统计学显著降低伴随着SOD水平的升高。值得注意的是,炎性细胞因子和微观血液动力学特征之间出现了负相关。这些发现表明,补充甘氨酸可能为预防T1DM胰腺微循环功能障碍提供一种有前景的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Microvascular research
Microvascular research 医学-外周血管病
CiteScore
6.00
自引率
3.20%
发文量
158
审稿时长
43 days
期刊介绍: Microvascular Research is dedicated to the dissemination of fundamental information related to the microvascular field. Full-length articles presenting the results of original research and brief communications are featured. Research Areas include: • Angiogenesis • Biochemistry • Bioengineering • Biomathematics • Biophysics • Cancer • Circulatory homeostasis • Comparative physiology • Drug delivery • Neuropharmacology • Microvascular pathology • Rheology • Tissue Engineering.
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