2005
DOI: 10.1021/ma0519415
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Sequence-Defined Polypeptide−Polymer Conjugates Utilizing Reversible Addition Fragmentation Transfer Radical Polymerization

Abstract: Straightforward solid-phase-supported synthesis routes were presented to obtain novel oligopeptide-based reversible addition fragmentation transfer (RAFT) agents. These approaches include the coupling of a functional RAFT agent to a resin-bound peptide and the functionality switch of an oligopeptide ATRP macroinitiator into an oligopeptide transfer agent. The solid-phase-supported methods allowed easy purification of the transfer agents, making difficult column purification steps unnecessary. Well-defined conj… Show more

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Cited by 126 publications
(83 citation statements)
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“…438,439 Similar strategies have been employed to synthesize peptides bearing initiators for controlled polymerization in solution via ATRP, 14,440442 as well as RAFT. 443 Solid phase strategies have also been utilized for the preparation of conjugated polymer-peptide hybrids, 444 various PEG-peptide block copolymers, 445,446 dendrimer hybrids 89,447 among many other examples. 406,413 …”
Section: Functionalization Of Biological Systemsmentioning
confidence: 99%
“…438,439 Similar strategies have been employed to synthesize peptides bearing initiators for controlled polymerization in solution via ATRP, 14,440442 as well as RAFT. 443 Solid phase strategies have also been utilized for the preparation of conjugated polymer-peptide hybrids, 444 various PEG-peptide block copolymers, 445,446 dendrimer hybrids 89,447 among many other examples. 406,413 …”
Section: Functionalization Of Biological Systemsmentioning
confidence: 99%
“…Peptide BA [489] 25 Polyisobutylene (127) MMA [296] St 95 Poly(3-hexylthiophene) (99) 303 [264] Graft 115 Chitosan AA [487] 115 Silica (amine modified) MA [490] 25 Silicon wafer (amine modified) MMA [179] 103 * Silicon wafer (amine modified) NIPAM [273] A Substrate used in forming macro-RAFT agent. B Monomer polymerized in presence of Block A macro-RAFT agent.…”
Section: Block Copolymersmentioning
confidence: 99%
“…Controlled emulsion polymerization was achieved, as evidenced by linear first-order kinetics and narrow M w /M n ¼ 1.2-1. 4 [ Fig. 9(b)].…”
Section: Seeded Emulsion Polymerization In the Presence Of Controlledmentioning
confidence: 99%