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实验性肾衰竭条件下骨内植入二氧化硅基生物活性玻璃颗粒对大鼠肾脏的影响

Effects of intraosseous implantation of silica-based bioactive glass particles on rat kidney under experimental renal failure.

作者信息

Gorustovich Alejandro A, Monserrat Alberto J, Guglielmotti Maria B, Cabrini Romulo L

机构信息

Research Laboratory, National Atomic Energy Commission Regional Noroeste, Av. Bolivia 4650 (A4408FVT) Salta, Argentina.

出版信息

J Biomater Appl. 2007 Apr;21(4):431-42. doi: 10.1177/0885328206068061. Epub 2006 Aug 18.

Abstract

The aim of the present study is to evaluate the effects of intraosseous implantation of silica-based bioactive glass (BG) particles on rat kidney under experimental renal failure. The animals are assigned to one of the two groups: renal failure (RF) and renal failure + bioactive glass (RF + BG). Particles of melt-derived 45S5 BG are implanted in the marrow of one tibia of each animal in the RF + BG group. The animals are killed 24 h and 14 days postimplantation. The RF + BG group exhibits a statistically significant increase in serum urea 24 h postimplantation. The tibiae of the RF + BG group are resected and embedded in methyl-methacrylate resin. Ground sections are analyzed by light microscopy and energy-dispersive X-ray (EDX) analysis. The presence of silicon, calcium, and phosphorus is evaluated in the BG particles. A 55% reduction in silicon content is observed at 14 days postimplantation as compared with that at 24 h.Light microscopy analysis reveals lesions in kidney parenchyma. Hyperplasia associated with nuclear vacuolization in the tubules and a marked thickening of the basal membrane are observed in the renal cortex of the RF + BG animals killed at 24 h postimplantation, but not in those at 14 days. The present results demonstrate reversible renal cell injury in rats exposed to intraosseous implantation of silica-based BG particles under experimental RF.

摘要

本研究的目的是评估在实验性肾衰竭条件下,骨内植入二氧化硅基生物活性玻璃(BG)颗粒对大鼠肾脏的影响。将动物分为两组之一:肾衰竭(RF)组和肾衰竭+生物活性玻璃(RF+BG)组。在RF+BG组中,将熔融衍生的45S5 BG颗粒植入每只动物一侧胫骨的骨髓中。在植入后24小时和14天处死动物。RF+BG组在植入后24小时血清尿素出现统计学上的显著升高。切除RF+BG组动物的胫骨并嵌入甲基丙烯酸甲酯树脂中。通过光学显微镜和能量色散X射线(EDX)分析对磨片进行分析。评估BG颗粒中硅、钙和磷的存在情况。与植入后24小时相比,植入后14天硅含量降低了55%。光学显微镜分析显示肾实质有病变。在植入后24小时处死的RF+BG组动物的肾皮质中观察到肾小管增生伴有核空泡化以及基底膜明显增厚,但在14天时处死的动物中未观察到。目前的结果表明,在实验性肾衰竭条件下,大鼠暴露于骨内植入二氧化硅基BG颗粒会出现可逆性肾细胞损伤。

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