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Novel Bioceramic Urethral Bulking Agents Elicit Improved Host Tissue Responses in a Rat Model

机译:新型生物陶瓷尿道填充剂在大鼠模型中引发改善的宿主组织反应

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摘要

Objectives. To test the physical properties and host response to the bioceramic particles, silica-calcium phosphate (SCPC10) and Cristobalite, in a rat animal model and compare their biocompatibility to the current clinically utilized urethral bulking materials. Material and Methods. The novel bulking materials, SCPC10 and Cristobalite, were suspended in hyaluronic acid sodium salt and injected into the mid urethra of a rat. Additional animals were injected with bulking materials currently in clinical use. Physiological response was assessed using voiding trials, and host tissue response was evaluated using hard tissue histology and immunohistochemical analysis. Distant organs were evaluated for the presence of particles or their components. Results. Histological analysis of the urethral tissue five months after injection showed that both SCPC10 and Cristobalite induced a more robust fibroblastic and histiocytic reaction, promoting integration and encapsulation of the particle aggregates, leading to a larger bulking effect. Concentrations of Ca, Na, Si, and P ions in the experimental groups were comparable to control animals. Conclusions. This side-by-side examination of urethral bulking agents using a rat animal model and hard tissue histology techniques compared two newly developed bioactive ceramic particles to three of the currently used bulking agents. The local host tissue response and bulking effects of bioceramic particles were superior while also possessing a comparable safety profile.
机译:目标。为了在大鼠动物模型中测试物理特性和宿主对生物陶瓷颗粒,二氧化硅磷酸钙(SCPC10)和方石英的响应,并将其生物相容性与当前临床使用的尿道填充材料进行比较。材料与方法。将新型填充材料SCPC10和方石英悬浮在透明质酸钠盐中,并注入大鼠尿道中段。向其他动物注射目前在临床上使用的填充材料。使用排尿试验评估生理反应,并使用硬组织组织学和免疫组织化学分析评估宿主组织反应。评估远处器官是否存在颗粒或其成分。结果。注射后五个月对尿道组织的组织学分析表明,SCPC10和方石英都诱导了更强的成纤维细胞和组织细胞反应,促进了颗粒聚集体的整合和包封,从而产生了更大的膨胀效应。实验组中Ca,Na,Si和P离子的浓度与对照动物相当。结论。使用大鼠动物模型和硬组织组织学技术对尿道填充剂进行并排检查,将两个新开发的生物活性陶瓷颗粒与三个当前使用的填充剂进行了比较。生物陶瓷颗粒对本地宿主组织的反应和膨松效果均优越,同时还具有可比的安全性。

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