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[牙髓石中纳米细菌的分离、培养及初步鉴定]

[Isolation, cultivation and initial identification of Nanobacteria from dental pulp stone].

作者信息

Zeng Jin-feng, Zhang Wei, Jiang Hong-wei, Ling Jun-Qi

机构信息

Department of Operative Dentistry and Endodontics, Guanghua School of Stomatology, Sun Yat-sen University, Guangzhou 510055, China.

出版信息

Zhonghua Kou Qiang Yi Xue Za Zhi. 2006 Aug;41(8):498-501.

Abstract

OBJECTIVE

To isolate Nanobacteria from dental pulp stone and perform culturing and the identification of Nanobacteria.

METHODS

Freshly collected 27 dental pulp stones were divided into nine samples. Each sample contained three dental pulp stones. All samples were used for the isolation and culture of Nanobacteria. The shape and the growth characteristics of the cultured bacteria were observed. Nanobacteria were identified by von Kossa staining, immunohistochemical staining and indirect immunofluorescence staining, double staining including Hoechst staining and von Kossa staining.

RESULTS

The characteristics growth and morphology of the bacteria detected in seven samples were similar to Nanobacteria. von Kossa staining, immunohistochemical staining, indirect immunofluorescent staining were positive for Nanobacteria. In double staining method, Hoechst staining of the samples was negative for Nanobacteria, but von Kossa staining was positive. Hoechst staining of the dental pulp cells was positive. No Nanobacteria was found in the other two samples.

CONCLUSIONS

The bacteria isolated from dental pulp stone in this study was similar to Nanobacteria in terms of growth rate, morphology and staining properties. These unusual properties of the bacteria may play an important role in the formation of pulp stone.

摘要

目的

从牙髓石中分离纳米细菌并进行培养及鉴定。

方法

将新鲜采集的27颗牙髓石分成9个样本。每个样本包含3颗牙髓石。所有样本均用于纳米细菌的分离和培养。观察培养细菌的形态和生长特性。通过冯·科萨染色、免疫组织化学染色、间接免疫荧光染色、包括Hoechst染色和冯·科萨染色的双重染色对纳米细菌进行鉴定。

结果

7个样本中检测到的细菌的生长和形态特征与纳米细菌相似。纳米细菌的冯·科萨染色、免疫组织化学染色、间接免疫荧光染色均呈阳性。在双重染色法中,样本的Hoechst染色对纳米细菌呈阴性,但冯·科萨染色呈阳性。牙髓细胞Hoechst染色呈阳性。另外两个样本中未发现纳米细菌。

结论

本研究从牙髓石中分离出的细菌在生长速度、形态和染色特性方面与纳米细菌相似。这些细菌的这些不寻常特性可能在牙髓石的形成中起重要作用。

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