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January 30, 2013Journal of the American Chemical Society238 citationsOpen Access

Substrate-Initiated Synthesis of Cell-Penetrating Poly(disulfide)s

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EBEun‐Kyoung BangGGGiulio GaspariniGMGuillaume Molinard

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Abstract

Lessons from surface-initiated polymerization are applied to grow cell-penetrating poly(disulfide)s directly on substrates of free choice. Reductive depolymerization after cellular uptake should then release the native substrates and minimize toxicity. In the presence of thiolated substrates, propagators containing a strained disulfide from asparagusic or, preferably, lipoic acid and a guanidinium cation polymerize into poly(disulfide)s in less than 5 min at room temperature at pH 7. Substrate-initiated polymerization of cationic poly(disulfide)s and their depolymerization with dithiothreitol causes the appearance and disappearance of transport activity in fluorogenic vesicles. The same process is further characterized by gel-permeation chromatography and fluorescence resonance energy transfer.

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Cite This Study

Bang et al. (2013) studied this question.

synapsesocial.com/papers/6a00a3e2831589f3542ddfc1https://doi.org/10.1021/ja311961k
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