Amphiphilic cationic Zn-porphyrins with high photodynamic antimicrobial activity

Author:

Thomas Milini1,Craik James D1,Tovmasyan Artak2,Batinic-Haberle Ines2,Benov Ludmil T1

Affiliation:

1. Department of Biochemistry, Faculty of Medicine, Kuwait University, PO Box 24923, Safat 13110, Kuwait

2. Department of Radiation Oncology, Duke University Medical Center, Durham, NC 27710, USA

Abstract

ABSTRACT  Aim: Photodynamic inactivation of microbes can efficiently eradicate antibiotic-resistant strains. Systematic structural modification was used to investigate how porphyrin-based photosensitizers (PSs) could be designed for improved antibacterial activity. Materials & methods: Zinc(II)5,10,15,20-tetrakis(N-alkylpyridinium-2(3,4)-yl)porphyrins presenting systematic modifications at the periphery of the porphyrin ring were evaluated for toxicity and antimicrobial photodynamic activity by measuring metabolic activity, cell membrane integrity and viability using antibiotic-sensitive and resistant Escherichia coli strains as model Gram-negative targets. Results: Maximal sensitizer uptake, and, upon illumination, decrease of viable bacteria by >6 log10 were achieved by positively charged amphiphilic PSs with longer (six to eight carbon) alkyl substituents. Conclusion: Antibacterial photoefficiency (throughout the text photoefficiency has been used as equivalent of photocytotoxic efficacy) can be increased by orders of magnitude by increasing the lipophilicity of cationic alkylmetalloporphyrin PSs.

Publisher

Future Medicine Ltd

Subject

Microbiology (medical),Microbiology

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