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[原发性根尖周炎感染根管中fimA基因型与kgp基因型的关联]

[Association of fimA genotype to kgp genotype in from infected root canals of primary apical periodontitis].

作者信息

Qi Z N, Shen M L, Tang Z S, Wang C, Mao X J, Zhu X D

机构信息

Department of Endodontics, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine & Shanghai Key Laboratory of Stomatology & Shanghai Research Institute of Stomatology & National Clinical Research Center of Stomatology, Shanghai 200011, China (Present address: Department of Oral Medicine, Shanghai Stomatological Hospital & Oral Biomedical Engineering Laboratory, Shanghai Stomatological Hospital, Fudan University, Shanghai 200031, China).

Department of Endodontics, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine & Shanghai Key Laboratory of Stomatology & Shanghai Research Institute of Stomatology & National Clinical Research Center of Stomatology, Shanghai 200011, China.

出版信息

Zhonghua Kou Qiang Yi Xue Za Zhi. 2018 Jan 9;53(1):20-25. doi: 10.3760/cma.j.issn.1002-0098.2018.01.005.

Abstract

To investigate the distribution of fimA and kgp genotypes as well as the common genotype combination of (Pg) in infected root canals of primary apical periodontitis for virulent isolates screening in future. Thirty-four samples harboring Pg were selected from infected root canals of primary apical periodontitis from patients of the Department of Endodontics, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine from June 2013 to September 2015. FimA type-specific primers were used to amplify the samples, revealing the distribution of various fimA genotypes. The genotypes of kgp were obtained by using Mse Ⅰ restriction endonuclease. The prevalence of each genotype and common genotype combinations were then calculated. Pearson's -squared test was performed to analyze the correlation between genotype combinations and clinical symptoms and major signs of apical periodontitis. In addition, the bioflim architectures between Pg isolates with different fimA and kgp genotype combinations were observed compared using confocal laser scanning microscope. Among the 34 Pg-positive samples, fimA Ⅱ was the most prevalent genotype [47% (16/34)] followed by fimA Ⅰ [26% (9/34)], while fimA Ⅴ was detected in only one sample. The prevalence of kgp Ⅰ [56% (19/34)] was slightly higher than that of kgp Ⅱ [44% (15/34)]. Both fimA Ⅱ+kgp Ⅰ and fimAⅡ+kgp Ⅱ were the most prevalent genotype combinations [24% (8/34) each]. No significant correlation was found between specific genotype combination and such major clinical manifestations as gingival swelling and sinus tract of dental origin (0.05). Three Pg isolates with different genotype combinations were acquired. Isolate A (fimAⅠ+kgpⅠ) formed densest biofilm, while the biofilm of isolate C (fimAⅤ+kgp Ⅰ) was much looser. The biofilm feature of isolate B (fimAⅢ+kgp Ⅱ) fell in between A and C. Pg with fimA Ⅱ was most frequently detected in infected root canals of primary apical periodontitis. The prevalence of Pg with kgp Ⅰ was slightly higher than that with kgp Ⅱ, and fimAⅡ+kgp Ⅰ as well as fimA Ⅱ+kgp Ⅱ were the commonest genotype combinations. According to the comparison of Pg biofilms formed by clinical isolates, it might be possible that different genotype combinations may lead to distinct biofilm architectures.

摘要

为了研究产黑色素普氏菌(Pg)菌毛蛋白A(fimA)和半胱氨酸蛋白酶(kgp)基因型的分布情况以及原发性根尖周炎感染根管中Pg的常见基因型组合,以便将来筛选出毒性菌株。从2013年6月至2015年9月上海交通大学医学院附属第九人民医院牙体牙髓科原发性根尖周炎患者的感染根管中选取34个含有Pg的样本。使用fimA型特异性引物对样本进行扩增,以揭示各种fimA基因型的分布。通过使用MseⅠ限制性内切酶获得kgp的基因型。然后计算每种基因型和常见基因型组合的患病率。采用Pearson卡方检验分析基因型组合与根尖周炎临床症状和主要体征之间的相关性。此外,使用共聚焦激光扫描显微镜比较观察具有不同fimA和kgp基因型组合的Pg分离株之间的生物膜结构。在34个Pg阳性样本中,fimAⅡ是最常见的基因型[47%(16/34)],其次是fimAⅠ[26%(9/34)],而仅在一个样本中检测到fimAⅤ。kgpⅠ的患病率[56%(19/34)]略高于kgpⅡ[44%(15/34)]。fimAⅡ+kgpⅠ和fimAⅡ+kgpⅡ都是最常见的基因型组合[各24%(8/34)]。未发现特定基因型组合与牙龈肿胀和牙源性窦道等主要临床表现之间存在显著相关性(P>0.05)。获得了三种具有不同基因型组合的Pg分离株。分离株A(fimAⅠ+kgpⅠ)形成的生物膜最致密,而分离株C(fimAⅤ+kgpⅠ)的生物膜则疏松得多。分离株B(fimAⅢ+kgpⅡ)的生物膜特征介于A和C之间。在原发性根尖周炎的感染根管中,最常检测到携带fimAⅡ的Pg。携带kgpⅠ的Pg患病率略高于携带kgpⅡ的Pg,且fimAⅡ+kgpⅠ和fimAⅡ+kgpⅡ是最常见的基因型组合。根据临床分离株形成的Pg生物膜的比较,不同的基因型组合可能导致不同的生物膜结构。

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