Jang Eun-Young, Kim Minjung, Noh Mi Hee, Moon Ji-Hoi, Lee Jin-Yong
Department of Maxillofacial Biomedical Engineering, School of Dentistry, and Institute of Oral Biology, Kyung Hee University, Seoul, Republic of Korea.
Department of Life and Nanopharmaceutical Sciences, Kyung Hee University, Seoul, Republic of Korea.
Antimicrob Agents Chemother. 2015 Nov 23;60(2):818-26. doi: 10.1128/AAC.01861-15. Print 2016 Feb.
Polyphosphate (polyP) has gained a wide interest in the food industry due to its potential as a decontaminating agent. In this study, we examined the effect of sodium tripolyphosphate (polyP3; Na5P3O10) against planktonic and biofilm cells of Prevotella intermedia, a major oral pathogen. The MIC of polyP3 against P. intermedia ATCC 49046 determined by agar dilution method was 0.075%, while 0.05% polyP3 was bactericidal against P. intermedia in time-kill analysis performed using liquid medium. A crystal violet binding assay for the assessment of biofilm formation by P. intermedia showed that sub-MICs of polyP3 significantly decreased biofilm formation. Under the scanning electron microscope, decreased numbers of P. intermedia cells forming the biofilms were observed when the bacterial cells were incubated with 0.025% or higher concentrations of polyP3. Assessment of biofilm viability with LIVE/DEAD staining and viable cell count methods showed that 0.05% or higher concentrations of polyP3 significantly decreased the viability of the preformed biofilms in a concentration-dependent manner. The zone sizes of alpha-hemolysis formed on horse blood agar produced by P. intermedia were decreased in the presence of polyP3. The expression of the genes encoding hemolysins and the genes of the hemin uptake (hmu) locus was downregulated by polyP3. Collectively, our results show that polyP is an effective antimicrobial agent against P. intermedia in biofilms as well as planktonic phase, interfering with the process of hemin acquisition by the bacterium.
多聚磷酸盐(polyP)因其作为去污剂的潜力而在食品工业中引起了广泛关注。在本研究中,我们检测了三聚磷酸钠(polyP3;Na5P3O10)对主要口腔病原体中间普氏菌的浮游细胞和生物膜细胞的作用。通过琼脂稀释法测定,polyP3对中间普氏菌ATCC 49046的最低抑菌浓度(MIC)为0.075%,而在使用液体培养基进行的时间杀菌分析中,0.05%的polyP3对中间普氏菌具有杀菌作用。用于评估中间普氏菌生物膜形成的结晶紫结合试验表明,polyP3的亚最低抑菌浓度显著降低了生物膜的形成。在扫描电子显微镜下,当细菌细胞与0.025%或更高浓度的polyP3孵育时,观察到形成生物膜的中间普氏菌细胞数量减少。用活/死染色和活菌计数方法评估生物膜活力表明,0.05%或更高浓度的polyP3以浓度依赖的方式显著降低了预先形成的生物膜的活力。在polyP3存在的情况下,中间普氏菌在马血琼脂上形成的α溶血环大小减小。polyP3下调了编码溶血素的基因和血红素摄取(hmu)位点的基因表达。总的来说,我们的结果表明,polyP是一种有效的抗微生物剂,可对抗中间普氏菌的生物膜和浮游阶段,干扰该细菌获取血红素的过程。