Stomatology Center, Qingdao Municipal Hospital, Qingdao, China.
School of Stomatology, Qingdao University, Qingdao, China.
Front Cell Infect Microbiol. 2022 Feb 23;12:772378. doi: 10.3389/fcimb.2022.772378. eCollection 2022.
Disinfectants are crucial for root canal therapy (RCT), as metabolism of canal-inhabiting microbes can cause refractory infections. To develop effective yet patient- and environment-friendly disinfectant formulations, we quantitatively assessed the metabolism-inhibiting effects of intracanal disinfectants DO-probed Single-Cell Raman Spectra (SCRS), using () as a pathogen model. For chlorhexidine gluconate (CHX), sodium hypochlorite (NaClO), and hydrogen peroxide (HO), at their MIC of 4, 168, and 60 μg/ml, respectively, despite the complete growth halt, metabolic activity of individual fungal cells was reduced on average by 0.4%, 93.9%, and 94.1% at 8 h, revealing a "nongrowing but metabolically active" (NGMA) state that may underlie potential refractory infections, particularly for CHX. In contrast, at their Metabolic Activity-based Minimum Inhibitory Concentrations (MIC-MA) of 8, 336, and 120 μg/ml, respectively, metabolic activity of all cells was completely halted throughout 8 h exposure. Moreover, combined use of NaClO+HO (combination at 0.5× MIC-MA each) outperforms solo uses of CHX, NaClO, HO, or other binary combinations. Furthermore, dynamics of SCRS revealed distinct fungicidal mechanisms of CHX, NaClO, HO, and their pairwise combinations. MIC-MA is advantageous in critically assessing antifungal efficacy, and NaClO+HO can potentially serve as a more efficient disinfectant formula for fungal pathogens.
消毒剂对于根管治疗(RCT)至关重要,因为根管内微生物的代谢可能导致难治性感染。为了开发有效且对患者和环境友好的消毒剂配方,我们使用()作为病原体模型,通过 DO 探测单细胞拉曼光谱(SCRS)定量评估了根管内消毒剂的代谢抑制作用。对于葡萄糖酸氯己定(CHX)、次氯酸钠(NaClO)和过氧化氢(HO),在其 MIC 分别为 4、168 和 60μg/ml 时,尽管完全停止生长,但单个真菌细胞的代谢活性在 8 小时时分别平均降低了 0.4%、93.9%和 94.1%,呈现出“非生长但代谢活跃”(NGMA)状态,这可能是潜在难治性感染的基础,特别是对于 CHX。相比之下,在其基于代谢活性的最小抑菌浓度(MIC-MA)分别为 8、336 和 120μg/ml 时,所有细胞的代谢活性在 8 小时暴露期间均完全停止。此外,NaClO+HO(组合浓度为各自 MIC-MA 的 0.5×)的联合使用优于单独使用 CHX、NaClO、HO 或其他二元组合。此外,SCRS 的动力学揭示了 CHX、NaClO、HO 及其两两组合的不同杀菌机制。MIC-MA 在评估抗真菌功效方面具有优势,NaClO+HO 可能成为真菌病原体更有效的消毒剂配方。