Literature DB >> 28758395

Hydrophilic Phage-Mimicking Membrane Active Antimicrobials Reveal Nanostructure-Dependent Activity and Selectivity.

Yunjiang Jiang1, Wan Zheng1, Liangju Kuang2, Hairong Ma1, Hongjun Liang1,3.   

Abstract

The prevalent wisdom on developing membrane active antimicrobials (MAAs) is to seek a delicate, yet unquantified, cationic-hydrophobic balance. Inspired by phages that use nanostructured protein devices to invade bacteria efficiently and selectively, we study here the antibiotic role of nanostructures by designing spherical and rod-like polymer molecular brushes (PMBs) that mimic the two basic structural motifs of bacteriophages. Three model PMBs with different well-defined geometries consisting of multiple, identical copies of densely packed poly(4-vinyl-N-methylpyridine iodide) branches are synthesized by controlled/"living" polymerization, reminiscent of the viral structural motifs comprised of multiple copies of protein subunits. We show that, while the individual linear-chain polymer branch that makes up the PMBs is hydrophilic and a weak antimicrobial, amphiphilicity is not a required antibiotic trait once nanostructures come into play. The nanostructured PMBs induce an unusual topological transition of bacterial but not mammalian membranes to form pores. The sizes and shapes of the nanostructures further help define the antibiotic activity and selectivity of the PMBs against different families of bacteria. This study highlights the importance of nanostructures in the design of MAAs with high activity, low toxicity, and target specificity.

Entities:  

Keywords:  antibiotic resistant bacteria; double selectivity; membrane active antimicrobials; nanostructures; polymer molecular brush

Mesh:

Substances:

Year:  2017        PMID: 28758395     DOI: 10.1021/acsinfecdis.7b00076

Source DB:  PubMed          Journal:  ACS Infect Dis        ISSN: 2373-8227            Impact factor:   5.084


  7 in total

1.  Design, Synthesis, and Nanostructure-Dependent Antibacterial Activity of Cationic Peptide Amphiphiles.

Authors:  Nathalia Rodrigues de Almeida; Yuchun Han; Jesus Perez; Sydney Kirkpatrick; Yilin Wang; Martin Conda Sheridan
Journal:  ACS Appl Mater Interfaces       Date:  2019-01-10       Impact factor: 9.229

2.  Cationic Homopolymers Inhibit Spore and Vegetative Cell Growth of Clostridioides difficile.

Authors:  Joshua B Jones; Lei Liu; Leslie A Rank; Daniela Wetzel; Emily C Woods; Naomi Biok; Sarah E Anderson; Myung-Ryul Lee; Runhui Liu; Sean Huth; Brindar K Sandhu; Samuel H Gellman; Shonna M McBride
Journal:  ACS Infect Dis       Date:  2021-03-19       Impact factor: 5.084

Review 3.  Antimicrobial and Osseointegration Properties of Nanostructured Titanium Orthopaedic Implants.

Authors:  Marcus Jäger; Herbert P Jennissen; Florian Dittrich; Alfons Fischer; Hedda Luise Köhling
Journal:  Materials (Basel)       Date:  2017-11-13       Impact factor: 3.623

4.  Peptides With Triplet-Tryptophan-Pivot Promoted Pathogenic Bacteria Membrane Defects.

Authors:  Shuli Chou; Qiuke Li; Zaitseva Nina; Lu Shang; Jiawei Li; Jinze Li; Zhihua Wang; Anshan Shan
Journal:  Front Microbiol       Date:  2020-04-09       Impact factor: 5.640

5.  "Metaphilic" Cell-Penetrating Polypeptide-Vancomycin Conjugate Efficiently Eradicates Intracellular Bacteria via a Dual Mechanism.

Authors:  Yunjiang Jiang; Ming Han; Yang Bo; Yujun Feng; Wenming Li; Jason Ren Wu; Ziyuan Song; Zihao Zhao; Zhengzhong Tan; Yingying Chen; Tianrui Xue; Zihuan Fu; Shanny Hsuan Kuo; Gee W Lau; Erik Luijten; Jianjun Cheng
Journal:  ACS Cent Sci       Date:  2020-12-03       Impact factor: 14.553

6.  Hydrophilic nanoparticles that kill bacteria while sparing mammalian cells reveal the antibiotic role of nanostructures.

Authors:  Yunjiang Jiang; Wan Zheng; Keith Tran; Elizabeth Kamilar; Jitender Bariwal; Hairong Ma; Hongjun Liang
Journal:  Nat Commun       Date:  2022-01-11       Impact factor: 17.694

Review 7.  The Quest for Novel Antimicrobial Compounds: Emerging Trends in Research, Development, and Technologies.

Authors:  Pavan K Mantravadi; Karunakaran A Kalesh; Renwick C J Dobson; André O Hudson; Anutthaman Parthasarathy
Journal:  Antibiotics (Basel)       Date:  2019-01-24
  7 in total

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