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1.
Anal Chem ; 94(13): 5221-5230, 2022 04 05.
Article in English | MEDLINE | ID: mdl-35316027

ABSTRACT

Electron-withdrawing perfluoroalkyl peripheral groups grafted on phthalocyanine (Pc) macrocycles improve their single-site isolation, solubility, and resistance to self-oxidation, all beneficial features for catalytic applications. A high degree of fluorination also enhances the reducibility of Pcs and could alter their singlet oxygen (1O2) photoproduction. The ethanol/toluene 20:80 vol % solvent mixture was found to dissolve perfluorinated FnPcZn complexes, n = 16, 52, and 64, and minimize the aggregation of the sterically unencumbered F16PcZn. The 1O2 production ability of FnPcZn complexes was examined using 9,10-dimethylanthracene (DMA) and 2,2,6,6-tetramethylpiperidine (TEMP) in combination with UV-vis and electron paramagnetic resonance (EPR) spectroscopy, respectively. While the photoreduction of F52PcZn and F64PcZn in the presence of redox-active TEMP lowered 1O2 production, DMA was a suitable 1O2 trap for ranking the complexes. The solution reactivity was complemented by solid-state studies via the construction of photoelectrochemical sensors based on TiO2-supported FnPcZn, FnPcZn|TiO2. Phenol photo-oxidation by 1O2, followed by its electrochemical reduction, defines a redox cycle, the 1O2 production having been found to depend on the value of n and structural features of the supported complexes. Consistent with solution studies, F52PcZn was found to be the most efficient 1O2 generator. The insights on reactivity testing and structural-activity relationships obtained may be useful for designing efficient and robust sensors and for other 1O2-related applications of FnPcZn.


Subject(s)
Phenol , Singlet Oxygen , Halogenation , Isoindoles , Organometallic Compounds , Oxygen/chemistry , Singlet Oxygen/chemistry , Zinc Compounds
2.
Chem Commun (Camb) ; 50(48): 6309-11, 2014 Jun 18.
Article in English | MEDLINE | ID: mdl-24663147

ABSTRACT

The first representative of functionalized fluoroalkyl phthalocyanines, F48H7(COOH)PcZn, is reported. The complex generates (1)O2 affording long-lasting photooxidation of an external substrate without self-decomposition. The carboxylic group couples with an antisense oligonucleotide targeting GRP78 oncogenes, resulting in the F48H7PcZn-cancer targeting oligonucleotide (CTO). The bioconjugated fluorophthalocyanine effectively hybridizes complementary GRP78 DNA and mRNA sequences. Piperidine cleavage assays reveal desired photochemical oligonucleotide oxidative degradation for both F48H7PcZn-CTO:DNA and F48H7PcZn-CTO:mRNA hybrids. This new materials strategy could be extended to other functional fluorinated phthalocyanines-antisense oligonucleotide combinations for long-lasting oncogene-targeting photodynamic therapy.


Subject(s)
Heat-Shock Proteins/chemistry , Indoles/chemistry , Oligonucleotides/chemistry , Organometallic Compounds/chemistry , Endoplasmic Reticulum Chaperone BiP , Heat-Shock Proteins/genetics , Humans , Isoindoles , Molecular Structure , Organometallic Compounds/chemical synthesis , Photochemical Processes
3.
J Biomed Opt ; 17(11): 115005, 2012 Nov.
Article in English | MEDLINE | ID: mdl-23214172

ABSTRACT

Singlet oxygen plays a crucial role in photo-dermatology and photodynamic therapy (PDT) of cancer. Its direct observation by measuring the phosphorescence at 1270 nm, however, is still challenging due to the very low emission probability. It is especially challenging for the time-resolved detection of singlet oxygen kinetics in vivo which is of special interest for biomedical applications. Photosensitized generation of singlet oxygen, in pig ear skin as model for human skin, is investigated here. Two photosensitizers (PS) were topically applied to the pig ear skin and examined in a comparative study, which include the amphiphilic pheophorbide-a and the highly hydrophobic perfluoroalkylated zinc phthalocyanine (F64PcZn). Fluorescence microscopy indicates the exclusive accumulation of pheophorbide-a in the stratum corneum, while F64PcZn can also accumulate in deeper layers of the epidermis of the pig ear skin. The kinetics obtained with phosphorescence measurements show the singlet oxygen interaction with the PS microenvironment. Different generation sites of singlet oxygen correlate with the luminescence kinetics. The results show that singlet oxygen luminescence detection can be used as a diagnostic tool, not only for research, but also during treatment. The detection methodology is suitable for the monitoring of chemical quenchers' oxidation as well as saturation at singlet oxygen concentration levels relevant to PDT treatment protocols.


Subject(s)
Photochemotherapy , Photosensitizing Agents/pharmacology , Singlet Oxygen/analysis , Animals , Chlorophyll/analogs & derivatives , Chlorophyll/pharmacology , Humans , Indoles/pharmacology , Isoindoles , Luminescent Measurements , Microscopy, Fluorescence, Multiphoton , Photolysis , Skin/chemistry , Skin/drug effects , Swine
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