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重离子辐射直接导致口腔微生物群移位,并增加致龋性。

Heavy Ion Radiation Directly Induced the Shift of Oral Microbiota and Increased the Cariogenicity of .

机构信息

State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases & West China Hospital of Stomatology, Sichuan University, Chengdu, China.

College of Stomatology, Chongqing Medical University, Chongqing, China.

出版信息

Microbiol Spectr. 2023 Aug 17;11(4):e0132223. doi: 10.1128/spectrum.01322-23. Epub 2023 Jun 13.

Abstract

Radiation caries is one of the most common complications of head and neck radiotherapy. A shift in the oral microbiota is the main factor of radiation caries. A new form of biosafe radiation, heavy ion radiation, is increasingly being applied in clinical treatment due to its superior depth-dose distribution and biological effects. However, how heavy ion radiation directly impacts the oral microbiota and the progress of radiation caries are unknown. Here, unstimulated saliva samples from both healthy and caries volunteers and caries-related bacteria were directly exposed to therapeutic doses of heavy ion radiation to determine the effects of radiation on oral microbiota composition and bacterial cariogenicity. Heavy ion radiation significantly decreased the richness and diversity of oral microbiota from both healthy and caries volunteers, and a higher percentage of Streptococcus was detected in radiation groups. In addition, heavy ion radiation significantly enhanced the cariogenicity of saliva-derived biofilms, including the ratios of the genus Streptococcus and biofilm formation. In the Streptococcus mutans-Streptococcus sanguinis dual-species biofilms, heavy ion radiation increased the ratio of S. mutans. Next, S. mutans was directly exposed to heavy ions, and the radiation significantly upregulated the and cariogenic virulence genes to enhance the biofilm formation and exopolysaccharides synthesis of S. mutans. Our study demonstrated, for the first time, that direct exposure to heavy ion radiation can disrupt the oral microbial diversity and balance of dual-species biofilms by increasing the virulence of S. mutans, increasing its cariogenicity, indicating a potential correlation between heavy ions and radiation caries. The oral microbiome is crucial to understanding the pathogenesis of radiation caries. Although heavy ion radiation has been used to treat head and neck cancers in some proton therapy centers, its correlation with dental caries, especially its direct effects on the oral microbiome and cariogenic pathogens, has not been reported previously. Here, we showed that the heavy ion radiation directly shifted the oral microbiota from a balanced state to a caries-associated state by increasing the cariogenic virulence of S. mutans. Our study highlighted the direct effect of heavy ion radiation on oral microbiota and the cariogenicity of oral microbes for the first time.

摘要

辐射性龋齿是头颈部放疗最常见的并发症之一。口腔微生物群的转变是辐射性龋齿的主要因素。重离子辐射作为一种新型的生物安全辐射,因其优越的深度剂量分布和生物学效应,越来越多地应用于临床治疗。然而,重离子辐射如何直接影响口腔微生物群以及辐射性龋齿的进展尚不清楚。在这里,我们直接将来自健康志愿者和龋齿志愿者的未刺激唾液样本以及与龋齿相关的细菌暴露于治疗剂量的重离子辐射下,以确定辐射对口腔微生物群组成和细菌致龋性的影响。重离子辐射显著降低了来自健康志愿者和龋齿志愿者的口腔微生物群的丰富度和多样性,并且在辐射组中检测到更高比例的链球菌。此外,重离子辐射显著增强了唾液衍生生物膜的致龋性,包括链球菌属的比例和生物膜形成。在变形链球菌-血链球菌双物种生物膜中,重离子辐射增加了变形链球菌的比例。接下来,直接将变形链球菌暴露于重离子下,辐射显著上调了 和 致龋毒力基因,以增强变形链球菌的生物膜形成和胞外多糖合成。我们的研究首次表明,直接暴露于重离子辐射可通过增加变形链球菌的毒力来破坏双物种生物膜的口腔微生物多样性和平衡,增加其致龋性,表明重离子与辐射性龋齿之间存在潜在关联。口腔微生物组对于理解辐射性龋齿的发病机制至关重要。尽管重离子辐射已在一些质子治疗中心用于治疗头颈部癌症,但它与龋齿的相关性,尤其是它对口腔微生物组和致龋病原体的直接影响,以前尚未报道过。在这里,我们表明,重离子辐射通过增加变形链球菌的致龋毒力,直接将口腔微生物群从平衡状态转变为与龋齿相关的状态。我们的研究首次强调了重离子辐射对口腔微生物群以及口腔微生物致龋性的直接影响。

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