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糖尿病对肾小球足细胞存在及位置的影响

The Presence and Location of Podocytes in Glomeruli as Affected by Diabetes Mellitus.

作者信息

Maraszek Kathryn E, Santo Briana A, Yacoub Rabi, Tomaszewski John E, Mohammad Imtiaz, Worral Amber M, Sarder Pinaki

机构信息

Department of Pathology and Anatomical Sciences, University at Buffalo - The State University of New York.

Medicine - Nephrology, University at Buffalo - The State University of New York.

出版信息

Proc SPIE Int Soc Opt Eng. 2020 Feb;11320. doi: 10.1117/12.2548904. Epub 2020 Mar 16.

Abstract

The primary purpose of the kidney, specifically the glomerulus, is filtration. Filtration is accomplished through the glomerular filtration barrier, which consists of the fenestrated endothelium, glomerular basement membrane, and specialized epithelial cells called podocytes. In pathologic states, such as Diabetes Mellitus (DM) and diabetic kidney disease (DKD), variable glomerular conditions result in podocyte injury and depletion, followed by progressive glomerular injury and DKD progression. In this work we quantified glomerulus and podocyte structural changes in histopathology image data derived from a murine model of DM. Using a variety of image processing techniques, we studied changes in podocyte morphology and intra-glomerular distribution across healthy, mild DM, and DM glomeruli. Our feature analysis provided feature trends which we believe are reflective of DKD pathology; while glomerular area peaked in mild DM, average podocyte number and distance from the urinary pole continued to decrease and increase, respectively, throughout DM. Ultimately, this study aims to augment the set of quantifiable image biomarkers used for evaluation of DKD progression in digital pathology, as well as underscore the importance of engineering biologically-inspired image features.

摘要

肾脏,特别是肾小球的主要功能是过滤。过滤是通过肾小球滤过屏障实现的,该屏障由有孔内皮、肾小球基底膜和称为足细胞的特殊上皮细胞组成。在诸如糖尿病(DM)和糖尿病肾病(DKD)等病理状态下,各种肾小球病变会导致足细胞损伤和耗竭,进而导致肾小球进行性损伤和DKD进展。在这项研究中,我们对源自DM小鼠模型的组织病理学图像数据中的肾小球和足细胞结构变化进行了量化。使用各种图像处理技术,我们研究了健康、轻度DM和DM肾小球中足细胞形态和肾小球内分布的变化。我们的特征分析提供了特征趋势,我们认为这些趋势反映了DKD病理;虽然肾小球面积在轻度DM时达到峰值,但在整个DM过程中,平均足细胞数量和距尿极的距离分别持续下降和增加。最终,本研究旨在增加用于评估数字病理学中DKD进展的可量化图像生物标志物的数量,并强调设计受生物启发的图像特征的重要性。

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