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不同唾液pH值下不锈钢冠生物降解性的评估。

An evaluation of biodegradability of stainless steel crowns at various salivary pH.

作者信息

Anusha K, Sridevi E, Sai Sankar A J, Sridhar M, Sankar K Siva, Chowdary K Harish

机构信息

Department of Pedodontics and Preventive Dentistry, Sibar Institute of Dental Sciences, Guntur, Andhra Pradesh, India.

出版信息

Indian J Dent Res. 2020 Jul-Aug;31(4):569-573. doi: 10.4103/ijdr.IJDR_761_18.

Abstract

AIM

To evaluate the biodegradability of preformed stainless steel crowns at varying salivary pH and the cytotoxic effect of leached out elements on fibroblasts.

METHODOLOGY

A total of 243 stainless steel crowns were selected and were divided into 3 groups (I, II, III) based on Ph of immersion media. The pH of samples in group I, II, III were 4.3, 5.5 and 6.3 with 81 crowns in each group. Each group has 9 samples with 8 crowns in each sample. All samples were immersed in polyethylene bottles containing 10ml of artificial saliva and incubated at 37°C for 4 weeks. All the samples were analyzed on 1,7,14 and 21 days by atomic absorption spectrophotometer for the quantitative assement of Ni, Cr and Fe. Fibroblast tissue culture was used to assess the cytotoxicity of the samples.

STATISTICAL ANALYSIS

Analysis of variance.

RESULTS

Maximum release of Ni, Cr, Fe ions were observed at pH 4.3 followed by pH 5.5 and least release of ions were observed at pH 6.3 from SS crowns. The cytotoxic results showed that the least cell viability of cells was seen at pH 4.3.

CONCLUSION

With decrease in pH, there is an increase in ion release from stainless steel crowns and the mean release of nickel, chromium and iron were very much below the average dietary intake. But the allergic manifestations of ions like nickel can't be ruled out.

摘要

目的

评估预制不锈钢冠在不同唾液pH值下的生物降解性以及浸出元素对成纤维细胞的细胞毒性作用。

方法

共选取243个不锈钢冠,根据浸泡介质的pH值分为3组(I、II、III)。I组、II组、III组样品的pH值分别为4.3、5.5和6.3,每组81个冠。每组有9个样本,每个样本8个冠。所有样本均浸入装有10ml人工唾液的聚乙烯瓶中,在37°C下孵育4周。在第1、7、14和21天通过原子吸收分光光度计对所有样本进行分析,以定量评估镍、铬和铁。采用成纤维细胞组织培养来评估样本的细胞毒性。

统计分析

方差分析。

结果

在pH 4.3时观察到镍、铬、铁离子的最大释放量,其次是pH 5.5,在pH 6.3时从不锈钢冠中观察到的离子释放量最少。细胞毒性结果表明,在pH 4.3时细胞活力最低。

结论

随着pH值降低,不锈钢冠的离子释放量增加,镍、铬和铁的平均释放量远低于平均膳食摄入量。但不能排除镍等离子的过敏表现。

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