Literature DB >> 22168316

C-terminal functionalization of nylon-3 polymers: effects of C-terminal groups on antibacterial and hemolytic activities.

Jihua Zhang1, Matthew J Markiewicz, Brendan P Mowery, Bernard Weisblum, Shannon S Stahl, Samuel H Gellman.   

Abstract

pan class="Chemical">Nylon-3 polymers contain β-amino-acid-derived subunits and can be viewed as higher homologues of pan class="Chemical">poly(α-amino acids). This structural relationship raises the possibility that nylon-3 polymers offer a platform for development of new materials with a variety of biological activities, a prospect that has recently begun to receive experimental support. Nylon-3 homo- and copolymers can be prepared via anionic ring-opening polymerization of β-lactams, and use of an N-acyl-β-lactam as coinitiator in the polymerization reaction allows placement of a specific functional group, borne by the N-acyl-β-lactam, at the N-terminus of each polymer chain. Controlling the unit at the C-termini of nylon-3 polymer chains, however, has been problematic. Here we describe a strategy for specifying C-terminal functionality that is based on the polymerization mechanism. After the anionic ring-opening polymerization is complete, we introduce a new β-lactam, approximately 1 equiv relative to the expected number of polymer chains. Because the polymer chains bear a reactive imide group at their C-termini, this new β-lactam should become attached at this position. If the terminating β-lactam bears a distinctive functional group, that functionality should be affixed to most or all C-termini in the reaction mixture. We use the new technique to compare the impact of N- and C-terminal placement of a critical hydrophobic fragment on the biological activity profile of nylon-3 copolymers. The synthetic advance described here should prove to be generally useful for tailoring the properties of nylon-3 materials.

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Year:  2011        PMID: 22168316      PMCID: PMC3309603          DOI: 10.1021/bm2013058

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  35 in total

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  9 in total

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3.  Functionally Diverse Nylon-3 Copolymers from Readily Accessible β-Lactams.

Authors:  Jihua Zhang; Matthew J Markiewicz; Bernard Weisblum; Shannon S Stahl; Samuel H Gellman
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8.  Effect of Relative Arrangement of Cationic and Lipophilic Moieties on Hemolytic and Antibacterial Activities of PEGylated Polyacrylates.

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  9 in total

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