儿童肾脏皮质物质发育的形态学评估

Anton Sologub, E. Slesareva
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摘要

动脉高血压发展的因素之一是肾素-血管紧张素-醛固酮系统活性的增加。研究皮层下肾单位和髓周肾单位的结构对确定其在出生后个体发生中的形态功能特征具有重要意义。本研究的目的是探讨不同年龄组儿童肾皮质结构的年龄相关特征。材料与方法。该研究是对无任何血管和肾实质疾病的儿童的尸检肾脏材料进行的,这些儿童在2个月至10岁之间死亡。确定了6个年龄组:死亡年龄为2-4个月、6 - 9个月、10 - 12个月、3岁、6岁和10岁。按标准方法制备石蜡显微镜载玻片,并用苏木精和伊红染色。作者使用Levenhuk形态测量程序测定了皮质下和髓周肾小体的数量、皮质和髓周肾小体面积、皮质下和髓周肾小体的肾小球面积及其平均包膜面积。结果。在出生后的个体发育中,可以观察到肾皮质物质的不均匀成熟。最初,包膜下区肾单位发育较快,以曲小管为主。髓周区肾单位数量少于皮质下区。活跃的小管和间质从3岁开始生长。到10岁时,皮质下和髓周肾单位的数量变得相同,并与成人的肾脏结构相对应。在个体发育过程中,脑周肾的小体和血管肾小球比囊下肾的大。然而,囊下肾单位的尿空间更宽,这表明它们更早参与排尿过程。髓周肾单位的血管肾小球的显著发育表明它们主要参与通过肾素合成调节血压的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MORPHOLOGICAL ASSESSMENT OF KIDNEY CORTICAL SUBSTANCE DEVELOPMENT IN CHILDHOOD
One of the factors for arterial hypertension development is an increase in the activity of the renin-angiotensin-aldosterone system. It is supposed to be relevant to study the structure of subcortical and perimedullary nephrons in order to identify their morphofunctional characteristics in postnatal ontogenesis. The aim of the study was to investigate the age-related characteristics of the renal cortex structure in children of different age groups. Materials and Methods. The study was performed on the autopsy renal material obtained from children without any vascular and renoparenchymal diseases, who died at the age of 2 months – 10 years. Six age groups were identified: those who died at the age of 2–4 months, 6–9 months, 10–12 months, 3 years, 6 years, and 10 years. Paraffin microscope slides were prepared according to a standard method and stained with hematoxylin and eosin. The authors determined the number of subcortical and perimedullary renal corpuscles, cortical and perimedullary nephron area, glomeruli area of subcortical and perimedullary nephrons and their average capsule area using the Levenhuk morphometric program. Results. In postnatal ontogenesis, uneven maturation of the cortical renal substance is observed. Initially, the nephrons of the subcapsular zone develop faster, with predominant growth of convoluted tubules. Nephron number in the perimedullary zone is lower than in the subcortical one. Active tubule and stroma growth is observed since the age of 3. By the age of 10, the number of subcortical and perimedullary nephrons becomes the same and corresponds to the kidney structure in adults. In ontogenesis, the corpuscles and vascular glomeruli of the pericerebral nephrons are larger than those of the subcapsular ones. However, the urinary space is wider in the subcapsular nephrons, which indicates their earlier involvement in the urination process. A significant development of the vascular glomeruli of the perimedullary nephrons indicates their predominant involvement in the processes of blood pressure regulation through renin synthesis.
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