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肾小球毛细血管光镜和电镜形态计量学参数与血清肌酐和蛋白尿的相关性。

Correlation of light and electron microscopic morphometric parameters of glomerular capillaries with serum creatinine and proteinuria.

机构信息

Department of Pathology, Armed Forces Medical College, Pune, India.

出版信息

J Histotechnol. 2024 Sep;47(3):97-108. doi: 10.1080/01478885.2024.2326274. Epub 2024 Mar 11.

Abstract

Waste products in the bloodstream are filtered by the glomerular capillaries in the kidneys and excreted into the urine. When making a differential diagnosis of kidney diseases, structural assessment of glomeruli using histological, ultrastructural, and immunological studies is crucial. This study assessed the microscopic and ultrastructural morphometric parameters of glomerular capillaries and examined their correlation with serum creatinine and proteinuria. A total of 60 kidney biopsy cases received by the transmission electron microscope (TEM) laboratory for diagnosis were included in the study. Toluidine blue stained 300 nm thick sections of TEM tissue blocks were scanned for glomerular morphometry by a whole slide imaging system, and the estimation of Bowman's capsule (BC) area, glomerular capillary lumen diameter (GCLD), glomerular capillary density (GCD), glomerular capillary surface area density (GCSA), and percentage of glomerular capillary lumen space (%GCLS) was performed with QuPath software. TEM images of 70 nm thick sections were used for the evaluation of endothelial fenestration diameter (EFD), glomerular basement membrane (GBM) thickness, and podocyte foot process (PFP) effacement. Proteinuria and serum creatinine showed positive correlations with GBM thickness and PFP effacement. Negative correlations of serum creatinine were observed with EFD, %GCLS, and GCSA. Hence, glomerular filtration is greatly affected by the total area of the glomerular capillary surface and structural changes of GBM. Reduction of glomerulus filtration due to foot process effacement and thickening of GBM results in damage to the filtration barrier leading to the leakage of plasma protein into urine.

摘要

血液中的废物产物通过肾脏中的肾小球毛细血管过滤,并排泄到尿液中。在对肾脏疾病进行鉴别诊断时,使用组织学、超微结构和免疫学研究对肾小球进行结构评估至关重要。本研究评估了肾小球毛细血管的微观和超微结构形态计量学参数,并检查了它们与血清肌酐和蛋白尿的相关性。共有 60 例经透射电镜 (TEM) 实验室诊断的肾活检病例纳入本研究。用甲苯胺蓝对 TEM 组织块的 300nm 厚切片进行染色,然后通过全玻片成像系统对肾小球形态计量学进行扫描,使用 QuPath 软件估计鲍曼囊 (BC) 面积、肾小球毛细血管腔直径 (GCLD)、肾小球毛细血管密度 (GCD)、肾小球毛细血管表面积密度 (GCSA) 和肾小球毛细血管腔空间百分比 (%GCLS)。用 70nm 厚的 TEM 图像评估内皮窗孔直径 (EFD)、肾小球基底膜 (GBM) 厚度和足细胞足突消失。蛋白尿和血清肌酐与 GBM 厚度和 PFP 消失呈正相关。血清肌酐与 EFD、%GCLS 和 GCSA 呈负相关。因此,肾小球滤过功能受肾小球毛细血管表面积总和和 GBM 结构变化的极大影响。由于足突消失和 GBM 增厚导致肾小球滤过减少,导致滤过屏障受损,从而导致血浆蛋白漏入尿液。

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