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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Exploring the dark side of MTT viability assay of cells cultured onto electrospun PLGA-based composite nanofibrous scaffolding materials
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Exploring the dark side of MTT viability assay of cells cultured onto electrospun PLGA-based composite nanofibrous scaffolding materials

机译:探索在静电纺丝基于PLGA的复合纳米纤维支架材料上培养的细胞的MTT活力测定的阴暗面

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摘要

One major method used to evaluate the biocompatibility of porous tissue engineering scaffolding materials is MTT (3-(4,5-Dimethylthiazol-2-yl)-2,5- diphenyltetrazolium bromide) assay. The MTT cell viability assay is based on the absorbance of the dissolved MTT formazan crystals formed in living cells, which is proportional to the number of viable cells. Due to the strong dye sorption capability of porous scaffolding materials, we propose that the cell viability determined from the MTT assay is likely to give a false negative result. In this study, we aim to explore the effect of the adsorption of MTT formazan on the accuracy of the viability assay of cells cultured onto porous electrospun poly(lactic-co-glycolic acid) (PLGA) nanofibers, HNTs (halloysite nanotubes)/PLGA, and CNTs (multiwalled carbon nanotubes)/PLGA composite nanofibrous mats. The morphology of electrospun nanofibers and L929 mouse fibroblasts cultured onto the nanofibrous scaffolds were observed using scanning electron microscopy. The viability of cells proliferated for 3 days was evaluated through the MTT assay. In the meantime, the adsorption of MTT formazan onto the same electrospun nanofibers was evaluated and the standard concentration-absorbance curve was obtained in order to quantify the contribution of the adsorbed MTT formazan during the MTT cell viability assay. We show that the PLGA, and the HNTs- or CNTs-doped PLGA nanofibers display appreciable MTT formazan dye sorption, corresponding to 35.6-50.2% deviation from the real cell viability assay data. The better dye sorption capability of the nanofibers leads to further deviation from the real cell viability. Our study gives a general insight into accurate MTT cytotoxicity assessment of various porous tissue engineering scaffolding materials, and may be applicable to other colorimetric assays for analyzing the biological properties of porous scaffolding materials.
机译:用于评估多孔组织工程支架材料的生物相容性的一种主要方法是MTT(3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide)测定。 MTT细胞生存力测定基于在活细胞中形成的溶解的MTT甲maz晶体的吸光度,该吸光度与活细胞的数量成正比。由于多孔支架材料具有很强的染料吸附能力,因此我们认为从MTT分析确定的细胞活力可能会给出假阴性结果。在这项研究中,我们旨在探讨MTT甲adsorption的吸附对培养在多孔电纺聚乳酸-乙醇酸乙醇(PLGA)纳米纤维,HNTs(铝硅酸盐纳米管)/ PLGA上的细胞活力测定准确性的影响,以及CNT(多壁碳纳米管)/ PLGA复合纳米纤维垫。使用扫描电子显微镜观察了电纺纳米纤维和培养到纳米纤维支架上的L929小鼠成纤维细胞的形态。通过MTT分析评估增殖3天的细胞的生存力。同时,评估了MTT甲onto在相同的电纺纳米纤维上的吸附,并获得了标准浓度-吸光度曲线,以量化MTT细胞存活率测定过程中吸附的MTT甲maz的贡献。我们表明,PLGA和HNTs或CNTs掺杂的PLGA纳米纤维显示出可观的MTT甲dye染料吸附,对应于实际细胞活力测定数据的35.6-50.2%偏差。纳米纤维的更好的染料吸附能力导致与实际细胞活力的进一步偏离。我们的研究为各种多孔组织工程支架材料的准确MTT细胞毒性评估提供了一般性见识,并且可能适用于其他比色分析,以分析多孔支架材料的生物学特性。

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