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利用酵母模型和人软骨细胞通过微量量热法对 63S 生物活性玻璃和骨源性羟基磷灰石颗粒的直接细胞毒性进行评价。

Direct cytotoxicity evaluation of 63S bioactive glass and bone-derived hydroxyapatite particles using yeast model and human chondrocyte cells by microcalorimetry.

机构信息

Biomaterials Group, Materials Engineering Department, Isfahan University of Technology, Isfahan, 84156-83111, Iran.

出版信息

J Mater Sci Mater Med. 2011 Oct;22(10):2293-300. doi: 10.1007/s10856-011-4400-x. Epub 2011 Jul 24.

Abstract

In this study, the cytotoxicity evaluation of prepared 63S bioactive glass and bone-derived hydroxyapatite particles with yeast and human chondrocyte cells was carried out using isothermal micro-nano calorimetry (IMNC), which is a new method for studying cell/biomaterial interactions. Bioactive glass particles were made via sol-gel method and hydroxyapatite was obtained from bovine bone. Elemental analysis was carried out by XRF and EDXRF. Amorphous structure of the glass and completely crystalline structure of HA were detected by XRD analysis. Finally, the cytotoxicity of bioactive glass and bone-derived HA particles with yeast and cultured human chondrocyte cells was evaluated using IMNC. The results confirmed the viability, growth and proliferation of human chondrocyte cells in contact with 63S bioactive glass, and bone-derived HA particles. Also the results indicated that yeast model which is much easier to handle, can be considered as a good proxy and can provide a rapid primary estimate of the ranges to be used in assays involving human cells. All of these results confirmed that IMNC is a convenient method which caters to measuring the cell-biomaterial interactions alongside the current methods.

摘要

在这项研究中,使用等温微量量热法(IMNC)对制备的 63S 生物活性玻璃和骨源性羟基磷灰石颗粒与酵母和人软骨细胞的细胞毒性进行了评估,这是一种研究细胞/生物材料相互作用的新方法。生物活性玻璃颗粒通过溶胶-凝胶法制备,羟基磷灰石从牛骨中获得。通过 XRF 和 EDXRF 进行元素分析。通过 XRD 分析检测到玻璃的无定形结构和 HA 的完全结晶结构。最后,使用 IMNC 评估了生物活性玻璃和骨源性 HA 颗粒对酵母和培养的人软骨细胞的细胞毒性。结果证实了与 63S 生物活性玻璃和骨源性 HA 颗粒接触的人软骨细胞的活力、生长和增殖。此外,结果表明,酵母模型更易于处理,可以作为良好的替代品,并可以提供涉及人细胞的测定中使用的范围的快速初步估计。所有这些结果都证实,IMNC 是一种方便的方法,可以与当前的方法一起测量细胞-生物材料相互作用。

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