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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Artificial urine and FBS supplemented media in cytocompatibility assays for PLGA-PEG-based intravesical devices using the urothelium cell line UROtsa
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Artificial urine and FBS supplemented media in cytocompatibility assays for PLGA-PEG-based intravesical devices using the urothelium cell line UROtsa

机译:使用尿液细胞系尿尿组织的PLGA-PEG基膀胱内装置中的人工尿液和FBS补充培养基中的培养基

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摘要

European and German directives for approval of new medical devices require tests for cytotoxicity in relevant media, since urine can influence cytotoxicity of biodegradable devices. The aim of this study was to determine the long-term cytotoxicity of PLGA-b-mPEG (PLGA-PEG) polymer carriers and artificial urine (AU) to human UROtsa cells. Benign urothelial UROtsa cells were incubated in fetal bovine serum-containing RPMI 1640 medium supplemented with a range of concentrations of AU for 24 h and 7 days. Cell viability was determined by the XTT assay and by live/dead staining. The cytotoxicity of medium containing degradation products from PLGA-PEG carriers was also tested on the UROtsa cells in AU-containing and control medium. PLGA-PEG carriers exhibited no cytotoxicity to UROtsa cells after 24 h of incubation. However, after 7 days, cytotoxicity was observed, but this was largely attributable to the effects of 30% AU on the cells. Compared to phosphate buffer saline PBS) and normalized to RPMI 1640 medium, significant cytotoxicity was observed by 24 h in medium containing 50% AU and by 7 days in medium containing 30% AU. Live/Dead staining confirmed proliferation results and no pH-changes could be observed. Here we demonstrate for the first time the impact of AU on standard cytotoxicity tests related to biomaterials for urinary-tract applications. Our study showed cytotoxic effects of high concentrations of 50% AU by 24 h and by physiological concentrations of AU (i.e., 30%) by 7 days. We have also demonstrated that PLGA-PEG has no cytotoxic effects in the appropriate AU-containing test environment. (C)2017 Wiley Periodicals, Inc.
机译:欧洲和德国新医疗装置批准指令需要在相关培养基中进行细胞毒性的测试,因为尿液可以影响可生物降解装置的细胞毒性。本研究的目的是确定PLGA-B-MPEG(PLGA-PEG)聚合物载体和人造尿液(AU)的长期细胞毒性对人口细胞。良性尿液口尿布细胞在含有一系列浓度Au浓度的胎儿牛血清RPMI 1640培养基中孵育24小时和7天。通过XTT测定和通过活/死染料测定细胞活力。含PLGA-PEG载体的培养基的细胞毒性也在含Au和对照培养基中的尿囊细胞上进行测试。在孵育24小时后,PLGA-PEG载体没有对口细胞的细胞毒性表现出细胞毒性。然而,在7天后,观察到细胞毒性,但这主要是归因于30%Au对细胞的影响。与磷酸盐缓冲盐水PBS相比并标准化为RPMI 1640培养基,在含有50%Au的培养基中,在含有30%Au的培养基中培养7天,观察到显着的细胞毒性。 Live / Dead染色确认的增殖结果,不能观察到pH变化。在这里,我们首次证明Au对与泌尿器应用的生物材料有关的标准细胞毒性试验的影响。我们的研究表明,高浓度为50%Au的细胞毒性效应24小时并通过7天内的Au(即30%)的生理浓度。我们还证明了PLGA-PEG在适当的AU的测试环境中没有细胞毒性作用。 (c)2017 Wiley期刊,Inc。

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