Photodynamic therapy(PDT) has shown promise as an effective treatment modality for cancer and other localized diseases due to its noninvasive properties and spatiotemporal selectivity. Near-infrared(NIR)fluorescent dy...Photodynamic therapy(PDT) has shown promise as an effective treatment modality for cancer and other localized diseases due to its noninvasive properties and spatiotemporal selectivity. Near-infrared(NIR)fluorescent dyes based on organic small molecules are characterized with low cytotoxicity, good biocompatibility and excellent phototoxicity, which are widely used in PDT. In this review, we attempt to summarize the development of imaging-induced PDT based on organic small molecules and classify it according to the structures of dyes including cyanines, 4,4-difluoro-4-bora-3 a,4 a-diaza-s-indacene(BODIPY) analogues, phthalocyanine and other agents such as rhodamine analogues.展开更多
Near-infrared(NIR)fluorescent dyes based on small organic molecules are characterized with low cytotoxicity,good biocompatibility and minimum interference from auto-fluorescence background,which are widely used in tum...Near-infrared(NIR)fluorescent dyes based on small organic molecules are characterized with low cytotoxicity,good biocompatibility and minimum interference from auto-fluorescence background,which are widely used in tumor diagnosis.Intensive research on molecular properties and photothermal properties of fluorescent dyes have been explored for non-invasive photothermal treatment of cancer.In this review,we focus on the development of imaging-induced photothermal therapy of small molecules and classification according to the structures of organic molecules including cyanines,phthalocyanines,rhodamine analogues and BODIPYs.展开更多
Mono- and bis-dialkylaminophenylbuta-l,3-dienyl boron-dipyrromethenes (BODIPYs) 1-12 were synthesized in 36%-42% yields by a Knoevenagel-type condensation. The absorption and emission maxima (λabs = 614-739 rim; ,...Mono- and bis-dialkylaminophenylbuta-l,3-dienyl boron-dipyrromethenes (BODIPYs) 1-12 were synthesized in 36%-42% yields by a Knoevenagel-type condensation. The absorption and emission maxima (λabs = 614-739 rim; ,λem = 655-776 nm in CHCI3) of 1-12 covered from the visible to the near- infrared region. Probe I was ratiometric Vis pH probes. Such probe was almost non-fluorescent. Upon the protonation of the tertiary amine function of 1, the strong fluorescence (φf =0.97) was released and the florescence intensity was dramatically increased by one thousand folds. The sharp isosbestic points were discovered at 590 nm, which was a ratiometric pH probe.展开更多
基金the Natural Science Foundation Committee of China (NSFC,No.81671803)the National Key Research and Development Program (No.2017YFC0107700)+6 种基金the Outstanding Youth Foundation of Jiangsu Province (Nos.GX20171114003, BK20170030)Fok Ying Tung Education Foundation (No.161033)"Double First-Class" University Project (Nos.CPU2018GY06 and CPU2018GY24)the Priority Academic Program Development of Jiangsu Higher Education Institutions for their financial supportthe National Natural Science Foundation of China (Nos.21676113,21402057,21772054,21472059)Distinguished Young Scholar of Hubei Province (No.2018CFA079) for the financial supportsupported by the 111 Project (No.B17019)
文摘Photodynamic therapy(PDT) has shown promise as an effective treatment modality for cancer and other localized diseases due to its noninvasive properties and spatiotemporal selectivity. Near-infrared(NIR)fluorescent dyes based on organic small molecules are characterized with low cytotoxicity, good biocompatibility and excellent phototoxicity, which are widely used in PDT. In this review, we attempt to summarize the development of imaging-induced PDT based on organic small molecules and classify it according to the structures of dyes including cyanines, 4,4-difluoro-4-bora-3 a,4 a-diaza-s-indacene(BODIPY) analogues, phthalocyanine and other agents such as rhodamine analogues.
基金the Natural Science Foundation Committee of China(NSFC, No. 81671803)the National Key Research and Development Program(No. 2017YFC0107700)+6 种基金the Outstanding Youth Foundation of Jiangsu Province (Nos. GX20171114003, BK20170030)Fok Ying Tung Education Foundation(No. 161033)"Double First-Class" University project(Nos. CPU2018GY06 and CPU2018GY24)the Priority Academic Program Development of Jiangsu Higher Education Institutions, for their financial supportthe National Natural Science Foundation of China(Nos. 21676113,21402057, 21772054, 21472059)Distinguished Young Scholar of Hubei Province(No. 2018CFA079)for the financial supportsupported by the 111 Project (No. B17019)
文摘Near-infrared(NIR)fluorescent dyes based on small organic molecules are characterized with low cytotoxicity,good biocompatibility and minimum interference from auto-fluorescence background,which are widely used in tumor diagnosis.Intensive research on molecular properties and photothermal properties of fluorescent dyes have been explored for non-invasive photothermal treatment of cancer.In this review,we focus on the development of imaging-induced photothermal therapy of small molecules and classification according to the structures of organic molecules including cyanines,phthalocyanines,rhodamine analogues and BODIPYs.
基金supported by NNSFC (No. 21372063)Program for Changjiang Scholars and Innovative Research Team in University (No. PCS IRT1126)+1 种基金the Foundation of the Education Department of Henan Province for Science and Technology Research Projects (No. 13A150046)the Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry
文摘Mono- and bis-dialkylaminophenylbuta-l,3-dienyl boron-dipyrromethenes (BODIPYs) 1-12 were synthesized in 36%-42% yields by a Knoevenagel-type condensation. The absorption and emission maxima (λabs = 614-739 rim; ,λem = 655-776 nm in CHCI3) of 1-12 covered from the visible to the near- infrared region. Probe I was ratiometric Vis pH probes. Such probe was almost non-fluorescent. Upon the protonation of the tertiary amine function of 1, the strong fluorescence (φf =0.97) was released and the florescence intensity was dramatically increased by one thousand folds. The sharp isosbestic points were discovered at 590 nm, which was a ratiometric pH probe.