Department of Molecular Biology and Microbial Food Safety, Swammerdam Institute for Life Sciences, University of Amsterdam, Amsterdam, the Netherlands.
Department of Medical Microbiology and Infection Prevention, Amsterdam institute for Infection and Immunity, Amsterdam UMC, University of Amsterdam, Amsterdam, the Netherlands.
Appl Environ Microbiol. 2024 Aug 21;90(8):e0036024. doi: 10.1128/aem.00360-24. Epub 2024 Jul 29.
an opportunistic oral pathogen, synergizes with , allowing bacteria to co-invade and systemically disseminate within the host. Studying human-microbe interactions creates the need for a universal culture medium that supports fungal, bacterial, and human cell culturing, while allowing sensitive analytical approaches such as OMICs and chromatography techniques. In this study, we established a fully defined, customizable adaptation of Dulbecco's modified Eagle medium (DMEM), allowing multi-kingdom culturing of , , and human oral cell lines, whereas minimal version of DMEM (mDMEM) did not support growth of , and neither did supplementation with dextrose, MEM non-essential amino acids, pyruvate, and Glutamax. This new medium composition, designated as "mDMEM-DMP," promoted growth of all tested strains. Addition of 25 mM 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid (HEPES) further improved growth, while higher concentrations did not improve growth any further. Higher concentrations of HEPES did result in prolonged stabilization of medium pH. mDMEM-DMP promoted (hyphal) monoculturing and co-culturing on both solid and semi-solid surfaces. In contrast to , addition of HEPES reduced maximum culture optical density (OD). Finally, only buffered mDMEM-DMP (100 mM HEPES) was successful in maintaining the metabolic activity of human oral Ca9-22 and HO1N1 cell lines for 24 hours. Altogether, our findings show that mDMEM-DMP is a versatile and potent culture medium for both microbial and human cell culturing, providing a customizable platform to study human as well as microbial molecular physiology and putative interactions.
Interaction between microbes and the host are in the center of interest both in disease and in health. In order to study the interactions between microbes of different kingdoms and the host, alternative media are required. Synthetic media are useful as they allow addition of specific components. In addition, well-defined media are required if high-resolution analyses such as metabolomics and proteomics are desired. We describe the development of a synthetic medium to study the interactions between and human oral epithelial cells. Our findings show that mDMEM-DMP is a versatile and potent culture medium for both microbial and human cell culturing, providing a customizable platform to study human as well as microbial molecular physiology and putative interactions.
一种机会主义的口腔病原体,与协同作用,允许细菌共同入侵并在宿主体内系统传播。研究人类微生物相互作用需要一种通用的培养基,既能支持真菌、细菌和人类细胞的培养,又能允许使用 OMICS 和色谱技术等敏感的分析方法。在这项研究中,我们建立了一种完全定义的、可定制的改良 Eagle 培养基(DMEM)适应物,允许和人类口腔细胞系进行多王国培养,而最小版本的 DMEM(mDMEM)则不支持的生长,也不支持添加葡萄糖、MEM 非必需氨基酸、丙酮酸盐和 Glutamax。这种新的培养基成分被命名为“mDMEM-DMP”,促进了所有测试菌株的生长。添加 25mM4-(2-羟乙基)-1-哌嗪乙烷磺酸(HEPES)进一步促进了生长,而更高的浓度则不能进一步促进生长。更高浓度的 HEPES 确实导致培养基 pH 值的稳定时间延长。mDMEM-DMP 促进(菌丝)单培养和在固体和半固体表面上的共培养。与相比,添加 HEPES 降低了的最大培养光密度(OD)。最后,只有缓冲的 mDMEM-DMP(100mMHEPES)才能成功维持人类口腔 Ca9-22 和 HO1N1 细胞系 24 小时的代谢活性。总之,我们的研究结果表明,mDMEM-DMP 是一种用于微生物和人类细胞培养的多功能和有效的培养基,为研究人类和微生物的分子生理学和潜在相互作用提供了一个可定制的平台。