Membrane-active antimicrobial poly(amino-modified alkyl) β-cyclodextrins synthesized via click reactions

The emergence of drug-resistant bacteria has led to the high demand for new antibiotics. In this report, we investigated membrane-active antimicrobial β-cyclodextrins. These contain seven amino-modified alkyl groups on a molecule, which act as functional moieties to permeabilize bacterial cell membr...

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Veröffentlicht in:MedChemComm 2018-03, Vol.9 (3), p.509-518
Hauptverfasser: Yamamura, Hatsuo, Nonaka, Miho, Okuno, Shingo, Mitsuhashi, Ryogo, Kato, Hisato, Katsu, Takashi, Masuda, Kazufumi, Tanimoto, Koichi, Tomita, Haruyoshi, Miyagawa, Atsushi
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Sprache:eng
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Zusammenfassung:The emergence of drug-resistant bacteria has led to the high demand for new antibiotics. In this report, we investigated membrane-active antimicrobial β-cyclodextrins. These contain seven amino-modified alkyl groups on a molecule, which act as functional moieties to permeabilize bacterial cell membranes. The polyfunctionalization of cyclodextrins was achieved through a click reaction assisted by microwave irradiation. A survey using derivatives with systematically varied functionalities clarified the unique correlation of the antimicrobial activity of these compounds with their molecular structure and hydrophobicity/hydrophilicity balances. The optimum hydrophobicity for the compounds being membrane-active was specific to bacterial strains and animal cells; this led to specific compounds having selective toxicity against bacteria including multidrug-resistant pathogens. The results demonstrate that cyclodextrin is a versatile molecular scaffold for rationally designed structures and can be used for the development of new antibiotics.
ISSN:2040-2503
2040-2511
DOI:10.1039/c7md00592j