Optimal Balance of Hydrophobic Content and Degree of Polymerization Results in a Potent Membrane-Targeting Antibacterial Polymer

被引:20
作者
Tyagi, Anju [1 ]
Mishra, Abhijit [2 ]
机构
[1] Indian Inst Technol Gandhinagar, Dept Chem, Gandhinagar 382355, Gujarat, India
[2] Indian Inst Technol Gandhinagar, Dept Mat Engn, Gandhinagar 382355, Gujarat, India
关键词
ANTIMICROBIAL PEPTIDES; MOLECULAR-WEIGHT; NYLON-3; COPOLYMERS; CATIONIC POLYMERS; SYNTHETIC MIMICS; MECHANISM; POLYCATIONS; DESIGN; POLYMETHACRYLATES; CYTOTOXICITY;
D O I
10.1021/acsomega.1c05148
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Globally, excessive use of antibiotics has drastically raised the resistance frequency of disease-causing microorganisms among humans, leading to a scarcity of efficient and biocompatible drugs. Antimicrobial polymers have emerged as a promising candidate to combat drug-resistance pathogens. Along with the amphiphilic balance, structural conformation and molecular weight M-n) play an indispensable role in the antimicrobial potency and cytotoxic activity of polymers. Here, we synthesize cationic and amphiphilic methacrylamide random copolymers using free-radical copolymerization. The mole fraction of the hydrophobic groups is kept constant at approximately 20%, while the molecular weight (average number of linked polymeric units) is varied and the antibacterial and cytotoxic activities are studied. The chemical composition of the copolymers is characterized by( 1)H NMR spectroscopy. We observe that the average number of linked units in a polymer chain (i.e., molecular weight) significantly affects the polymer activity and selectivity. The antibacterial efficacy against both of the examined bacteria, Escherichia coli and Staphylococcus aureus, increases with increasing molecular weight. The bactericidal activity of polymers is confirmed by live/dead cell viability assay. Polymers with high molecular weight display high antibacterial activity, yet are highly cytotoxic even at 1 x MIC. However, low-molecular-weight polymers are biocompatible while retaining antibacterial potency. Furthermore, no resistance acquisition is observed against the polymers in E. coli and S. aureus. A comprehensive analysis using confocal and scanning electron microscopy (SEM) techniques shows that the polymers target bacterial membranes, resulting in membrane permeabilization that leads to cell death.
引用
收藏
页码:34724 / 34735
页数:12
相关论文
共 48 条
[31]   Structural Determinants of Antimicrobial Activity and Biocompatibility in Membrane-Disrupting Methacrylamide Random Copolymers [J].
Palermo, Edmund F. ;
Sovadinova, Iva ;
Kuroda, Kenichi .
BIOMACROMOLECULES, 2009, 10 (11) :3098-3107
[32]   Chemical Structure of Cationic Groups in Amphiphilic Polymethacrylates Modulates the Antimicrobial and Hemolytic Activities [J].
Palermo, Edmund F. ;
Kuroda, Kenichi .
BIOMACROMOLECULES, 2009, 10 (06) :1416-1428
[33]   Antimicrobial resistance: a global multifaceted phenomenon [J].
Prestinaci, Francesca ;
Pezzotti, Patrizio ;
Pantosti, Annalisa .
PATHOGENS AND GLOBAL HEALTH, 2015, 109 (07) :309-318
[34]   Successful use of oral linezolid as a single active agent in endocarditis unresponsive to conventional antibiotic therapy [J].
Ravindran, V ;
John, J ;
Kaye, GC ;
Meigh, RE .
JOURNAL OF INFECTION, 2003, 47 (02) :164-166
[35]   Simple oligomers as antimicrobial peptide mimics [J].
Rennie, J ;
Arnt, L ;
Tang, HZ ;
Nüsslein, K ;
Tew, GN .
JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2005, 32 (07) :296-300
[36]   Antimicrobial polymer nanostructures: Synthetic route, mechanism of action and perspective [J].
Song, Jooyoung ;
Jang, Jyongsik .
ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2014, 203 :37-50
[37]   Activity and Mechanism of Antimicrobial Peptide-Mimetic Amphiphilic Polymethacrylate Derivatives [J].
Sovadinova, Iva ;
Palermo, Edmund F. ;
Urban, Michael ;
Mpiga, Philomene ;
Caputo, Gregory A. ;
Kuroda, Kenichi .
POLYMERS, 2011, 3 (03) :1512-1532
[38]   Cationic Amphiphilic Polymers with Antimicrobial Activity for Oral Care Applications: Eradication of S-mutans Biofilm [J].
Takahashi, Haruko ;
Nadres, Enrico T. ;
Kuroda, Kenichi .
BIOMACROMOLECULES, 2017, 18 (01) :257-265
[39]   Release of antimicrobial and antiviral drugs from methacrylate copolymer system: Effect of copolymer molecular weight and drug loading on drug release [J].
Tallury, Padmavathy ;
Airrabeelli, Ramadevi ;
Li, Jun ;
Paquette, David ;
Kalachandra, Sid .
DENTAL MATERIALS, 2008, 24 (02) :274-280
[40]   Synthetic Mimics of Antimicrobial Peptides with Immunomodulatory Responses [J].
Thaker, Hitesh D. ;
Som, Abhigyan ;
Ayaz, Furkan ;
Lui, Dahui ;
Pan, Wenxi ;
Scott, Richard W. ;
Anguita, Juan ;
Tew, Gregory N. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (27) :11088-11091