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超声定位显微镜在评估2型糖尿病进展中的应用

Application of Ultrasound Localization Microscopy in Evaluating the Type 2 Diabetes Progression.

作者信息

Zhang Tao, Yan Jipeng, Zhou Xinhuan, Wu Bihan, Zhang Chao, Tang Mengxing, Huang Pintong

机构信息

Department of Ultrasound in Medicine, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, Zhejiang 310000, China.

Research Center of Ultrasound in Medicine and Biomedical Engineering, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, Zhejiang 310000, China.

出版信息

Cyborg Bionic Syst. 2025 Mar 10;6:0117. doi: 10.34133/cbsystems.0117. eCollection 2025.

Abstract

Type 2 diabetes is considered as a chronic inflammatory disease in which the dense microvasculature reorganizes with disease progression and is highly correlated with β cell mass and islet function. In this study, we constructed rat models of type 2 diabetes and used ultrasound localization microscopy (ULM) imaging to noninvasively map the pancreatic microvasculature at microscopy resolution in vivo to reflect β cell loss and islet function deterioration, and evaluate the efficacy after anti-cytokine immunotherapy. It was unveiled that ULM morphological and hemodynamic parameters have a strong link with β cell loss and deterioration of pancreatic islet function. This correlation aligns with the observed pathological alterations in the microvessels of islet and demonstrated that ULM can effectively mirror the functionality of β cells during rapid fluctuations in blood glucose levels by observing changes in mean velocity. Furthermore, it was revealed that treatment with anti-cytokine immunotherapy enhances the function and health of β cells by restoring the microvascular environment. Remarkable improvements in vessel morphology (measured by fractal dimension) and hemodynamics (indicated by mean velocity and vessel density) were noted following the anti-cytokine immunotherapy, signifying a significant enhancement at the treatment's conclusion ( < 0.05). These observations suggested that ULM technology holds promise as a visible and efficient tool for monitoring the effectiveness of anti-cytokine immunotherapy in managing type 2 diabetes. Pancreatic microvessel-based ULM may serve as a novel noninvasive method to assess β cells, providing a valuable clinical tool for tracking the progression of type 2 diabetes.

摘要

2型糖尿病被认为是一种慢性炎症性疾病,其中密集的微血管会随着疾病进展而重新组织,并且与β细胞量和胰岛功能高度相关。在本研究中,我们构建了2型糖尿病大鼠模型,并使用超声定位显微镜(ULM)成像在体内以显微镜分辨率对胰腺微血管进行无创成像,以反映β细胞丢失和胰岛功能恶化,并评估抗细胞因子免疫治疗后的疗效。结果表明,ULM的形态学和血流动力学参数与β细胞丢失和胰岛功能恶化密切相关。这种相关性与胰岛微血管中观察到的病理改变一致,并表明ULM可以通过观察平均速度的变化有效地反映血糖水平快速波动期间β细胞的功能。此外,研究发现抗细胞因子免疫治疗通过恢复微血管环境来增强β细胞的功能和健康。抗细胞因子免疫治疗后,血管形态(通过分形维数测量)和血流动力学(以平均速度和血管密度表示)有显著改善,表明治疗结束时显著增强(<0.05)。这些观察结果表明,ULM技术有望成为监测抗细胞因子免疫治疗2型糖尿病有效性的一种直观且有效的工具。基于胰腺微血管的ULM可能作为一种评估β细胞的新型无创方法,为追踪2型糖尿病的进展提供有价值的临床工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00c9/11893074/326f1d28986a/cbsystems.0117.fig.001.jpg

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