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Intermolecular Structural Change for Thermoswitchable Polymeric Photosensitizer.


ABSTRACT: We developed a thermoswitchable polymeric photosensitizer (T-PPS) by conjugating PS (Pheophorbide-a, PPb-a) to a temperature-responsive polymer backbone of biocompatible hydroxypropyl cellulose. Self-quenched PS molecules linked in close proximity by ?-? stacking in T-PPS were easily transited to an active monomeric state by the temperature-induced phase transition of polymer backbones. The temperature-responsive intermolecular interaction changes of PS molecules in T-PPS were demonstrated in synchrotron small-angle X-ray scattering and UV-vis spectrophotometer analysis. The T-PPS allowed switchable activation and synergistically enhanced cancer cell killing effect at the hyperthermia temperature (45 °C). Our developed T-PPS has the considerable potential not only as a new class of photomedicine in clinics but also as a biosensor based on temperature responsiveness.

SUBMITTER: Park W 

PROVIDER: S-EPMC5047665 | biostudies-literature | 2016 Aug

REPOSITORIES: biostudies-literature

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Intermolecular Structural Change for Thermoswitchable Polymeric Photosensitizer.

Park Wooram W   Park Sin-Jung SJ   Cho Soojeong S   Shin Heejun H   Jung Young-Seok YS   Lee Byeongdu B   Na Kun K   Kim Dong-Hyun DH  

Journal of the American Chemical Society 20160823 34


We developed a thermoswitchable polymeric photosensitizer (T-PPS) by conjugating PS (Pheophorbide-a, PPb-a) to a temperature-responsive polymer backbone of biocompatible hydroxypropyl cellulose. Self-quenched PS molecules linked in close proximity by π-π stacking in T-PPS were easily transited to an active monomeric state by the temperature-induced phase transition of polymer backbones. The temperature-responsive intermolecular interaction changes of PS molecules in T-PPS were demonstrated in sy  ...[more]

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