Indexed by:期刊论文
Date of Publication:2016-11-09
Journal:JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Included Journals:SCIE、EI、PubMed、ESI高被引论文、Scopus
Volume:138
Issue:44
Page Number:14586-14591
ISSN No.:0002-7863
Abstract:Tissue penetration depth is a major challenge in practical photodynamic therapy (PDT). A biocompatible and highly effective near infrared (NIR)-light-absorbing carbazole-substituted BODIPY (Car-BDP) molecule is reported as a class of imaging guidable deep-tissue activatable photosensitizers for PDT. Car-BDP possesses an intense, broad NLR. absorption band (600-800 nm) with a remarkably high singlet oxygen quantum yield (Phi(Delta) = 67%). After being encapsulated with biodegradable PLA-PEG-FA polymers, Car-BDP can form uniform and small organic nano particles that are water-soluble and tumor-targetable. Rather than using laser light, such nanoparticles offer an unprecedented deep-tissue, tumor targeting photodynamic therapeutic effect by using an exceptionally low-power-density and cost-effective lamp light (12 mW cm(-2)). In addition, these nanoparticles can be simultaneously traced in vivo due to their excellent NIR fluorescence. This study signals a major step forward in photodynamic therapy by developing a new class of NIR-absorbing biocompatible organic nanoparticles for effective targeting and treatment of deep-tissue tumors. This work also provides a potential new platform for precise tumor-targeting theranostics and novel opportunities for future affordable clinical cancer treatment.
Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Gender:Male
Alma Mater:Jilin University
Degree:Doctoral Degree
School/Department:School of Chemistry Engineering
Discipline:Organic Chemistry. Applied Chemistry. Physical Chemistry (including Chemical Physics)
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Contact Information:0411-84986236
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