用 Mtt 检测法测试牛脱矿骨基质对人间质干细胞的细胞毒性

Paulus Ronald Hibono
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引用次数: 0

摘要

在印度尼西亚,骨移植的使用量逐年增加。虽然自体骨移植被认为是骨移植的黄金标准,但其使用往往面临着与异体骨移植类似的各种挑战。为解决这一问题,牛脱矿骨基质(DBM)可被视为骨移植的替代品,其优点是可无限量供应且成本更低廉。目前,Dr. Soetomo 医院的组织库正在开发牛脱矿骨基质,但尚未对其潜在的毒性进行研究。本研究旨在评估牛脱矿骨基质是否会对人类间充质干细胞产生细胞毒性作用。本实验研究共涉及 48 个样本,包括一个对照组和两个处理组(50% 和 25%),每组 16 个样本。培养间充质干细胞后,分别添加 50%和 25% 的 DBM 进行处理。收集的数据经过正态性和均匀性检验,然后用独立 t 检验进行比较分析。MTT 检测结果显示,对照组的平均光学密度(OD)为 0.656 ± 0.021(范围 0.620-0.696),而治疗组分别为 0.565 ± 0.022(范围 0.529-0.614)和 0.520 ± 0.022(范围 0.461-0.552)。从统计学角度看,对照组和两个处理组(50% 和 25%)的 OD 值差异显著(P<0.05)。两个处理组的平均细胞存活率均超过 60%,表明牛去矿物质骨基质对人间充质干细胞无毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CYTOTOXICITY TEST OF BOVINE DEMINERALIZED BONE MATRIX ON HUMAN MESENCHYMAL STEM CELLS USING THE MTT ASSAY METHOD
The use of bone grafts in Indonesia continues to increase each year. Although Autograft is considered the gold standard in bone grafting, its use is often confronted with various challenges, similar to allograft. To address this issue, Bovine Demineralized Bone Matrix (DBM) can be considered as a substitute for bone grafts with the advantages of unlimited availability and more affordable costs. Currently, the Tissue Bank of Dr. Soetomo Hospital is developing bovine DBM, although there is no research yet on its potential toxicity.This study aims to evaluate whether bovine DBM has cytotoxic effects on human mesenchymal stem cells. In this experimental study, a total of 48 samples were involved, including a control group and two treatment groups (50% and 25%), each consisting of 16 samples. Mesenchymal stem cells were cultured and then treated with the addition of 50% and 25% DBM. Subsequently, cell viability was measured using the MTT Assay method.The collected data were processed by conducting normality and homogeneity tests and then analyzed using comparative tests with an independent t-test. The criteria for declaring cell toxicity were set at a viability of not less than 60% compared to the control group.The results of the MTT assay measurements showed that the mean Optical Density (OD) in the control group was 0.656 ± 0.021 (range 0.620-0.696), while in the treatment groups, it was 0.565 ± 0.022 (range 0.529-0.614) and 0.520 ± 0.022 (range 0.461-0.552), respectively. Statistically, the differences in OD between the control group and both treatment groups (50% and 25%) were significant (p<0.05). The average cell viability in both treatment groups was found to be more than 60%, indicating that Bovine Demineralized Bone Matrix is not toxic to human mesenchymal stem cells.
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