Modified vaginal lactobacilli expressing fluorescent and luminescent proteins for more effective monitoring of their release from nanofibers, safety and cell adhesion.

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-12-19 DOI:10.1186/s12934-024-02612-w
Spase Stojanov, Tina Vida Plavec, Špela Zupančič, Aleš Berlec
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Abstract

Electrospun nanofibers offer a highly promising platform for the delivery of vaginal lactobacilli, providing an innovative approach to preventing and treating vaginal infections. To advance the application of nanofibers for the delivery of lactobacilli, tools for studying their safety and efficacy in vitro need to be established. In this study, fluorescent (mCherry and GFP) and luminescent (NanoLuc luciferase) proteins were expressed in three vaginal lactobacilli (Lactobacillus crispatus, Lactobacillus gasseri and Lactobacillus jensenii) and a control Lactiplantibacillus plantarum with the aim to use this technology for close tracking of lactobacilli release from nanofibers and their adhesion on epithelial cells. The recombinant proteins influenced the growth of the bacteria, but not their ability to produce hydrogen peroxide. Survival of lactobacilli in nanofibers immediately after electrospinning varied among species. Bacteria retained fluorescence upon incorporation into PEO nanofibers, which was vital for evaluation of their rapid release. In addition, fluorescent labelling facilitated efficient tracking of bacterial adhesion to Caco-2 epithelial cells, while luminescence provided important quantitative insights into bacterial attachment, which varied from 0.5 to 50% depending on the species. The four lactobacilli in dispersion or in nanofibers were not detrimental for the viability of Caco-2 cells, and did not demonstrate hemolytic activity highlighting the safety profiles of both bacteria and PEO nanofibers. To summarize, this study contributes to the development of a promising delivery system, tailored for local administration of safe vaginal lactobacilli.

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表达荧光蛋白和发光蛋白的阴道乳酸杆菌更有效地监测其从纳米纤维的释放、安全性和细胞粘附性。
电纺丝纳米纤维为阴道乳酸菌的递送提供了一个非常有前途的平台,为预防和治疗阴道感染提供了一种创新的方法。为了进一步推进纳米纤维在乳酸菌体内的应用,需要建立研究其体外安全性和有效性的工具。本研究在三种阴道乳酸菌(crispatus、Lactobacillus gasseri和Lactobacillus jensenii)和对照植物乳杆菌中表达荧光(mCherry和GFP)和荧光(NanoLuc luciferase)蛋白,目的是利用该技术密切跟踪乳酸菌从纳米纤维中释放及其在上皮细胞上的粘附。重组蛋白影响了细菌的生长,但不影响它们产生过氧化氢的能力。乳杆菌在静电纺丝后立即在纳米纤维中的存活情况因物种而异。细菌在融入PEO纳米纤维后保留荧光,这对评估其快速释放至关重要。此外,荧光标记有助于有效跟踪细菌对Caco-2上皮细胞的粘附,而发光为细菌粘附提供了重要的定量见解,根据物种的不同,粘附率从0.5到50%不等。分散或纳米纤维中的四种乳酸菌对Caco-2细胞的活力没有危害,并且没有表现出溶血活性,这突出了细菌和PEO纳米纤维的安全性。总之,这项研究有助于开发一种有前途的输送系统,为安全阴道乳酸杆菌的局部管理量身定制。
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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
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