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对人β-防御素的抗性在口腔密螺旋体中很常见。

Resistance to human beta-defensins is common among oral treponemes.

作者信息

Brissette C A, Simonson L G, Lukehart S A

机构信息

Department of Pathobiology, University of Washington, Seattle, WA, USA.

出版信息

Oral Microbiol Immunol. 2004 Dec;19(6):403-7. doi: 10.1111/j.1399-302x.2004.00177.x.

Abstract

BACKGROUND/AIMS: Oral treponemes are implicated in the pathogenesis of periodontal disease. We have previously shown that Treponema denticola ATCC type strains and strain GM-1 are resistant to killing by human beta-defensins (hbetaD)-1 and -2. We hypothesize that resistance to beta-defensins is a common feature of oral treponemes, which allows colonization and persistence in the oral cavity. In this study, we tested additional isolates of T. denticola, as well as six other species of treponemes, for resistance to hbetaD-1, -2 and -3. We also examined the four ATCC strains of T. denticola and strain GM-1 for resistance to hbetaD-3.

METHODS

Resistance was determined by motility and Alamar Blue assays for metabolic activity.

RESULTS

All T. denticola strains tested were resistant to hbetaD-1, -2 and -3, with the exception of strain Ambigua, which was sensitive to hbetaD-2 and -3. All other treponemes except Treponema vincentii were resistant to hbetaD-1. Treponema pectinovorum was sensitive to hbetaD-2, while T. vincentii, T. pectinovorum and Treponema maltophilum were sensitive to hbetaD-3. Escherichia coli was used as a control organism and was killed by all three defensins.

CONCLUSION

Resistance to the constitutively expressed hbetaD-1 may assist treponemes in initial colonization of epithelial surfaces, while resistance to the inducible hbetaD-2 and -3 would allow some treponemes to survive in active periodontal lesions.

摘要

背景/目的:口腔密螺旋体与牙周疾病的发病机制有关。我们之前已表明,具核梭杆菌ATCC标准菌株和GM - 1菌株对人β - 防御素(hβD)-1和 -2具有抗性。我们推测,对β - 防御素的抗性是口腔密螺旋体的一个共同特征,这使得它们能够在口腔中定植并持续存在。在本研究中,我们测试了具核梭杆菌的其他分离株以及其他六种密螺旋体对hβD -1、-2和 -3的抗性。我们还检测了具核梭杆菌的四种ATCC菌株和GM - 1菌株对hβD -3的抗性。

方法

通过运动性和用于代谢活性的阿拉玛蓝试验来确定抗性。

结果

除了对hβD -2和 -3敏感的Ambigua菌株外,所有测试的具核梭杆菌菌株均对hβD -1、-2和 -3具有抗性。除文森特密螺旋体外,所有其他密螺旋体均对hβD -1具有抗性。果胶密螺旋体对hβD -2敏感,而文森特密螺旋体、果胶密螺旋体和解麦芽密螺旋体对hβD -3敏感。大肠杆菌用作对照菌,被所有三种防御素杀死。

结论

对组成性表达的hβD -1的抗性可能有助于密螺旋体在上皮表面的初始定植,而对诱导性hβD -2和 -3的抗性将使一些密螺旋体能够在活跃的牙周病变中存活。

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