口腔微生物-宿主相互作用的生理相关共培养模型

IF 10.8 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Zeyang Pang, Nicole M. Cady, Lujia Cen, Thomas M. Schmidt, Xuesong He, Jiahe Li
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引用次数: 0

摘要

了解口腔中微生物与宿主的相互作用对于阐明口腔疾病的发病机制及其系统性影响至关重要。体外细菌-宿主细胞共培养模型使基础研究能够以还原但可重复的方式表征细菌感染和宿主反应。然而,现有的体外共培养模型未能建立适合哺乳动物细胞和厌氧菌生长的条件,从而阻碍了对它们相互作用的全面理解。在这里,我们提出了一个不对称气体共培养系统,通过分别维持牙龈上皮细胞和厌氧菌不同的常氧和厌氧条件来模拟口腔微环境。使用一种关键的口腔病原体,核梭杆菌,作为主要的试验台,我们证明了该系统保留了细菌的活力,并支持端粒酶永生化的牙龈角化细胞的完整性。与传统模型相比,该系统增强了细菌侵袭,提高了细胞内细菌负荷,并引发了更强大的宿主促炎反应,包括CXCL10、IL-6和IL-8的分泌增加。此外,该模型能够精确评估抗生素对细胞内病原体的疗效。最后,我们验证了不对称系统支持一种对氧更敏感的口腔病原体牙龈卟啉单胞菌增殖的能力。这些结果强调了这种共培养平台在研究口腔微生物发病机制和筛选治疗方法方面的实用性,为推进口腔和全身健康研究提供了一种生理学相关的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Physiologically relevant coculture model for oral microbial-host interactions

Physiologically relevant coculture model for oral microbial-host interactions

Understanding microbial-host interactions in the oral cavity is essential for elucidating oral disease pathogenesis and its systemic implications. In vitro bacteria-host cell coculture models have enabled fundamental studies to characterize bacterial infection and host responses in a reductionist yet reproducible manner. However, existing in vitro coculture models fail to establish conditions that are suitable for the growth of both mammalian cells and anaerobes, thereby hindering a comprehensive understanding of their interactions. Here, we present an asymmetric gas coculture system that simulates the oral microenvironment by maintaining distinct normoxic and anaerobic conditions for gingival epithelial cells and anaerobic bacteria, respectively. Using a key oral pathobiont, Fusobacterium nucleatum, as the primary test bed, we demonstrate that the system preserves bacterial viability and supports the integrity of telomerase-immortalized gingival keratinocytes. Compared to conventional models, this system enhanced bacterial invasion, elevated intracellular bacterial loads, and elicited more robust host pro-inflammatory responses, including increased secretion of CXCL10, IL-6, and IL-8. In addition, the model enabled precise evaluation of antibiotic efficacy against intracellular pathogens. Finally, we validate the ability of the asymmetric system to support the proliferation of a more oxygen-sensitive oral pathobiont, Porphyromonas gingivalis. These results underscore the utility of this coculture platform for studying oral microbial pathogenesis and screening therapeutics, offering a physiologically relevant approach to advance oral and systemic health research.

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来源期刊
International Journal of Oral Science
International Journal of Oral Science DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
31.80
自引率
1.30%
发文量
53
审稿时长
>12 weeks
期刊介绍: The International Journal of Oral Science covers various aspects of oral science and interdisciplinary fields, encompassing basic, applied, and clinical research. Topics include, but are not limited to: Oral microbiology Oral and maxillofacial oncology Cariology Oral inflammation and infection Dental stem cells and regenerative medicine Craniofacial surgery Dental material Oral biomechanics Oral, dental, and maxillofacial genetic and developmental diseases Craniofacial bone research Craniofacial-related biomaterials Temporomandibular joint disorder and osteoarthritis The journal publishes peer-reviewed Articles presenting new research results and Review Articles offering concise summaries of specific areas in oral science.
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