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Monitoring skin microvascular dysfunction of type 1 diabetic mice using in vivo skin optical clearing

机译:在体内皮肤清洁中监测1型糖尿病小鼠的皮肤微血管功能障碍

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To monitor skin microvascular dysfunction of alloxan-induced type 1 diabetic mice model. In this work, we used laser speckle contrast imaging and hyperspectral imaging through in vivo skin optical clearing method to simultaneously monitor the noradrenaline-induced response of microvascular blood flow and blood oxygen with the development of diabetes. The main results showed that venous and arterious blood flow steadily decreased without recovery after injecting noradrenaline (NE), furthermore the influence of NE-induced arterious blood oxygen response greatly decreased, especially for 2-weeks and 4-weeks diabetic mice. This study demonstrated that skin microvascular function was a potential research biomarker for early warning in the occurrence and development of diabetes. And it provides a feasible solution to realize visualization of cutaneous microvessels for monitoring microvascular reactivity.
机译:监测联洛康诱导的1型糖尿病小鼠模型的皮肤微血管功能障碍。在这项工作中,我们使用激光散斑对比度成像和高光谱成像通过体内皮肤光学清除方法,同时监测NORADRENALINE诱导的微血管血流和血氧随着糖尿病的发育。主要结果表明,注射去甲肾上腺素(NE)后,静脉和动脉血液稳定地减少而不会恢复,此外NE诱导的动脉血氧反应的影响大大降低,特别是2周和4周的糖尿病小鼠。本研究表明,皮肤微血管功能是一种潜在的研究生物标志物,用于在糖尿病的发生和发展中进行预警。并且它提供了一种可行的解决方案来实现皮肤微血管的可视化以监测微血管反应性。

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