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糖尿病微血管功能障碍的诊断、病理生理学及管理

Diagnosis, Pathophysiology and Management of Microvascular Dysfunction in Diabetes Mellitus.

作者信息

Jan Yih-Kuen, Kelhofer Nicolas, Tu Tony, Mansuri Owaise, Onyemere Kingsley, Dave Shruti, Pappu Suguna

机构信息

Department of Health and Kinesiology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

Carle Illinois College of Medicine, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Diagnostics (Basel). 2024 Dec 16;14(24):2830. doi: 10.3390/diagnostics14242830.

Abstract

Microcirculation is an essential system that regulates oxygen and nutrients to cells and tissues in response to various environmental stimuli and pathophysiological conditions. Diabetes mellitus can cause microvascular complications including nephropathy, neuropathy, and retinopathy. The pathogenesis of microvascular dysfunction in diabetes is associated with hyperglycemia and the result of an interplay of various factors. Research studies have demonstrated that functional microvascular dysfunction appears much earlier than structural alterations in vasculature in diabetes. This finding of the progression from microvascular dysfunction to macrovascular disease establishes a foundation for the screening and early diagnosis of diabetes by assessing the microvascular function. This comprehensive review discusses technologies (laser Doppler, transcutaneous oximetry, infrared thermography and near-infrared spectroscopy) with computational methods (linear (time and frequency domains), nonlinear and machine learning approaches) for diagnosing microvascular dysfunction in diabetes. Pathophysiological changes of microvascular dysfunction leading to impaired vasomotion and blood flow oscillations in diabetes are reviewed. Recent findings in managing microvascular dysfunction using lifestyle modifications and force-based modulations are evaluated. A consensus endorsed by the American Diabetes Association has been reached that an effective exercise program would greatly slow down the progression of microvascular dysfunction and its impact on diabetic foot ulcers, muscle fatigue and weakness and peripheral neuropathy. However, it is imperative to determine the dose-response relationship of exercise and microvascular responses in patients with diabetes. Research studies have demonstrated that local vibration and whole-body vibration can improve microcirculation in various pathological conditions, including diabetes. Due to the complex nature of microvascular regulation, various computational methods have been developed to shed light on the influence of diabetes on microvascular dysfunction. This comprehensive review will contribute to the diagnosis and management of microvascular dysfunction in diabetes.

摘要

微循环是一个重要系统,它可根据各种环境刺激和病理生理状况调节向细胞和组织输送的氧气及营养物质。糖尿病可引发微血管并发症,包括肾病、神经病变和视网膜病变。糖尿病中微血管功能障碍的发病机制与高血糖有关,是多种因素相互作用的结果。研究表明,在糖尿病中,功能性微血管功能障碍比血管结构改变出现得早得多。这一从微血管功能障碍发展为大血管疾病的发现,为通过评估微血管功能来筛查和早期诊断糖尿病奠定了基础。本综述讨论了用于诊断糖尿病微血管功能障碍的技术(激光多普勒、经皮血氧测定、红外热成像和近红外光谱)及计算方法(线性(时域和频域)、非线性和机器学习方法)。综述了糖尿病中导致血管运动和血流振荡受损的微血管功能障碍的病理生理变化。评估了通过生活方式改变和基于力的调节来管理微血管功能障碍的最新研究结果。美国糖尿病协会认可的一项共识是,有效的运动计划将大大减缓微血管功能障碍的进展及其对糖尿病足溃疡、肌肉疲劳和无力以及周围神经病变的影响。然而,确定糖尿病患者运动与微血管反应的剂量反应关系至关重要。研究表明,局部振动和全身振动可改善包括糖尿病在内的各种病理状况下的微循环。由于微血管调节的复杂性,已开发出各种计算方法来阐明糖尿病对微血管功能障碍的影响。本综述将有助于糖尿病微血管功能障碍的诊断和管理。

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