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首页> 外文期刊>Advances in urology >Novel Bioceramic Urethral Bulking Agents Elicit Improved Host Tissue Responses in a Rat Model
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Novel Bioceramic Urethral Bulking Agents Elicit Improved Host Tissue Responses in a Rat Model

机译:新型生物陶瓷尿道膨胀剂引发改善大鼠模型中的宿主组织反应

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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。测试对生物陶瓷颗粒的物理性质和宿主响应,大鼠动物模型中的二氧化硅磷酸钙(SCPC10)和Cristobalite,并将其生物相容性与目前临床使用的尿道膨胀材料进行比较。材料与方法。新型膨胀材料,SCPC10和Cristobalite,悬浮在透明质酸钠盐中并注入大鼠的中尿道。目前在临床用途中注射额外的动物。使用空隙试验评估生理反应,并使用硬组织组织学和免疫组化分析评估宿主组织响应。评估静止器官的颗粒或其组分的存在。结果。注射后五个月的尿道组织的组织学分析表明,SCPC10和Cristobalite诱导更强大的纤维细胞和组织细胞反应,促进颗粒聚集体的整合和包封,导致较大的膨胀效果。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膨胀剂的这种并排检查将两种新开发的生物活性陶瓷颗粒与三个目前使用的填充剂进行了比较。生物陶瓷颗粒的局部宿主组织响应和膨胀效应在同时具有可比安全性的同时优异。

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