Literature DB >> 20390130

Biological nanofactories facilitate spatially selective capture and manipulation of quorum sensing bacteria in a bioMEMS device.

Rohan Fernandes1, Xiaolong Luo, Chen-Yu Tsao, Gregory F Payne, Reza Ghodssi, Gary W Rubloff, William E Bentley.   

Abstract

The emergence of bacteria that evade antibiotics has accelerated research on alternative approaches that do not target cell viability. One such approach targets cell-cell communication networks mediated by small molecule signaling. In this report, we assemble biological nanofactories within a bioMEMS device to capture and manipulate the behavior of quorum sensing (QS) bacteria as a step toward modifying small molecule signaling. Biological nanofactories are bio-inspired nanoscale constructs which can include modules with different functionalities, such as cell targeting, molecular sensing, product synthesis, and ultimately self-destruction. The biological nanofactories reported here consist of targeting, sensing, synthesis and, importantly, assembly modules. A bacteria-specific antibody constitutes the targeting module while a genetically engineered fusion protein contains the sensing, synthesis and assembly modules. The nanofactories are assembled on chitosan electrodeposited within a microchannel of the bioMEMS device; they capture QS bacteria in a spatially selective manner and locally synthesize and deliver the "universal" small signaling molecule autoinducer-2 (AI-2) at the captured cell surface. The nanofactory based AI-2 delivery is demonstrated to alter the progression of the native AI-2 based QS response of the captured bacteria. Prospects are envisioned for utilizing our technique as a test-bed for understanding the AI-2 based QS response of bacteria as a means for developing the next generation of antimicrobials.

Mesh:

Year:  2010        PMID: 20390130     DOI: 10.1039/b926846d

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  8 in total

Review 1.  Can resistance against quorum-sensing interference be selected?

Authors:  Rodolfo García-Contreras; Toshinari Maeda; Thomas K Wood
Journal:  ISME J       Date:  2015-05-29       Impact factor: 10.302

2.  Homologous Quorum Sensing Regulatory Circuit: A Dual-Input Genetic Controller for Modulating Quorum Sensing-Mediated Protein Expression in E. coli.

Authors:  Pricila Hauk; Kristina Stephens; Chelsea Virgile; Eric VanArsdale; Alex Eli Pottash; John S Schardt; Steven M Jay; Herman O Sintim; William E Bentley
Journal:  ACS Synth Biol       Date:  2020-09-15       Impact factor: 5.110

3.  A Facile Two-Step Enzymatic Approach for Conjugating Proteins to Polysaccharide Chitosan at an Electrode Interface.

Authors:  Narendranath Bhokisham; Yi Liu; Haig Pakhchanian; Gregory F Payne; William E Bentley
Journal:  Cell Mol Bioeng       Date:  2016-11-14       Impact factor: 2.321

4.  Focusing quorum sensing signalling by nano-magnetic assembly.

Authors:  Yongguang Guan; Chen-Yu Tsao; David N Quan; Ying Li; Lei Mei; Yingying Song; Boce Zhang; Yi Liu; Gregory F Payne; William E Bentley; Qin Wang
Journal:  Environ Microbiol       Date:  2018-07       Impact factor: 5.491

Review 5.  Engineering biofilm formation and dispersal.

Authors:  Thomas K Wood; Seok Hoon Hong; Qun Ma
Journal:  Trends Biotechnol       Date:  2010-12-04       Impact factor: 19.536

Review 6.  Controlling biofilms using synthetic biology approaches.

Authors:  Kuili Fang; Oh-Jin Park; Seok Hoon Hong
Journal:  Biotechnol Adv       Date:  2020-01-15       Impact factor: 14.227

7.  Construction and Application of Hepatocyte Model Based on Microfluidic Chip Technique in Evaluating Emodin.

Authors:  Di Chen; Jiyong Yin; Zhuo Yang; Wen Qin; Junsheng Huo; Jian Huang; Jing Sun; Wei Piao
Journal:  Nutrients       Date:  2022-07-05       Impact factor: 6.706

Review 8.  Advances in HBV infection and replication systems in vitro.

Authors:  Ruirui Xu; Pingping Hu; Yuwen Li; Anran Tian; Jun Li; Chuanlong Zhu
Journal:  Virol J       Date:  2021-05-29       Impact factor: 4.099

  8 in total

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