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ROS-Sensitive Thioketal-Linked Polyphosphoester-Doxorubicin Conjugate For Precise Phototriggered Locoregional Chemotherapy

Posted on:2020-05-05Degree:MasterType:Thesis
Country:ChinaCandidate:P PeiFull Text:PDF
GTID:2381330575992933Subject:Pharmaceutical Engineering
Abstract/Summary:PDF Full Text Request
Minimizing drug leakage at off-target sites and triggering sufficient drug release in tumor tissue are major objectives for effective nanoparticle(NP)-based cancer therapy.The current covalent and cleavable drug-NP conjugation strategy is promising but lacks high controllability to realize tumor-specific drug release.As a proof-of concept,the reactive oxygen species(ROS)-activatable thioketal(TK)bond was explored as the linkage between doxorubicin(DOX)and polyphosphoester(PPE-TK-DOX).The Ce6@PPE-TK-DOX NPs constructed by co-selfcoassembly of PPE-TK-DOX and the photosensitizer Ce6,which efficiently prevented premature drug leakage in the offtarget tissue and cells because of the high stability of the thioketal bond under physiological conditions.Once circulating into the tumor site,the 660-nm red light was precisely employed to irradiate the tumor area under the guidance of fluorescence/magnetic resonance(MR)dual-model imaging,which can induce localized ROS generation,resulting in rapid cleavage of the thioketal bond.Consequently,the DOX prodrug was locoregionally released and activated,achieving tumor-specific drug delivery with high controllability by light.Such phototriggered prodrug release and activation at the desired site significantly enhanced the therapeutic efficacy and minimized the side effect,providing new avenues to develop drug delivery systems for remote on-demand drug delivery in vivo.
Keywords/Search Tags:ROS-Sensitive polymer, Phototriggered drug release, Photoactivated prodrug, On-demand drug release, Cancer therapy
PDF Full Text Request
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