DNA Photocleavage in the Near-Infrared Wavelength Range by 2-Quinolinium Dicarbocyanine Dyes

被引:10
作者
Ahoulou, Effibe O. [1 ]
Drinkard, Kaitlyn K. [1 ]
Basnet, Kanchan [1 ]
St Lorenz, Anna [2 ]
Taratula, Oleh [2 ]
Henary, Maged [1 ,3 ]
Grant, Kathryn B. [1 ]
机构
[1] Georgia State Univ, Dept Chem, Atlanta, GA 30303 USA
[2] Oregon State Univ, Dept Pharmaceut Sci, Coll Pharm, Portland, OR 97201 USA
[3] Georgia State Univ, Ctr Diagnost & Therapeut, Atlanta, GA 30303 USA
来源
MOLECULES | 2020年 / 25卷 / 12期
基金
美国国家卫生研究院;
关键词
cyanine dyes; DNA strand scission; hydroxyl radicals; near-infrared photosensitizers; photodynamic therapy; MINOR-GROOVE BINDING; CYANINE DYES; PHOTODYNAMIC THERAPY; FLUORESCENCE; PHOTOSENSITIZER; SENSITIZERS; PENTAMIDINE; CLEAVAGE; SURGERY; CANCER;
D O I
10.3390/molecules25122926
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Here, we report the syntheses of two pentamethine cyanine dyes containing quinolinium rings and substituted with either hydrogen (3) or bromine (4) at themesocarbon. The electron withdrawing bromine atom stabilizes dye4in aqueous buffer, allowing complex formation to occur between the dye and double-helical DNA. UV-visible, CD, and fluorescence spectra recorded at low DNA concentrations suggest that dye4initially binds to the DNA as a high-order aggregate. As the ratio of DNA to dye is increased, the aggregate is converted to monomeric and other low-order dye forms that interact with DNA in a non-intercalative fashion. The brominated dye4is relatively unreactive in the dark, but, under 707-759 nm illumination, generates hydroxyl radicals that cleave DNA in high yield (pH 7.0, 22 degrees C). Dye4is also taken up by ES2 ovarian carcinoma cells, where it is non-toxic under dark conditions. Upon irradiation of the ES2 cells at 694 nm, the brominated cyanine reduces cell viability from 100 +/- 10% to 14 +/- 1%. Our results suggest that 2-quinolinium-based carbocyanine dyes equipped with stabilizing electron withdrawing groups may have the potential to serve as sensitizing agents in long-wavelength phototherapeutic applications.
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页数:17
相关论文
共 58 条
[41]   OPTICAL STUDIES ON COMPLEXES BETWEEN DNA AND PSEUDOISOCYANINE [J].
NORDEN, B ;
TJERNELD, F .
BIOPHYSICAL CHEMISTRY, 1976, 6 (01) :31-45
[42]   Photophysical and photobiological processes in the photodynamic therapy of tumours [J].
Ochsner, M .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 1997, 39 (01) :1-18
[43]   Dye Sensitizers for Photodynamic Therapy [J].
Ormond, Alexandra B. ;
Freeman, Harold S. .
MATERIALS, 2013, 6 (03) :817-840
[44]   Correlating Molecular Character of NIR Imaging Agents with Tissue-Specific Uptake [J].
Owens, Eric A. ;
Hyun, Hoon ;
Tawney, Joseph G. ;
Choi, Hak Soo ;
Henary, Maged .
JOURNAL OF MEDICINAL CHEMISTRY, 2015, 58 (10) :4348-4356
[45]   DIMERIZATION REACTIONS OF CYANINE RADICAL DICATIONS [J].
PARTON, RL ;
LENHARD, JR .
JOURNAL OF ORGANIC CHEMISTRY, 1990, 55 (01) :49-57
[46]  
PATNAIK LN, 1976, J INDIAN CHEM SOC, V53, P391
[47]   Thermodynamic characterization of the association of cyanine dyes with DNA [J].
Petty, JT ;
Bordelon, JA ;
Robertson, ME .
JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (30) :7221-7227
[48]   Oxidative strand scission of nucleic acids: Routes initiated by hydrogen abstraction from the sugar moiety [J].
Pogozelski, WK ;
Tullius, TD .
CHEMICAL REVIEWS, 1998, 98 (03) :1089-1107
[49]   ROS-induced nanotherapeutic approach for ovarian cancer treatment based on the combinatorial effect of photodynamic therapy and DJ-1 gene suppression [J].
Schumann, Canan ;
Taratula, Olena ;
Khalimonchuk, Oleh ;
Palmer, Amy L. ;
Cronk, Lauren M. ;
Jones, Carson V. ;
Escalante, Cesar A. ;
Taratula, Oleh .
NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2015, 11 (08) :1961-1970
[50]   Spontaneous assembly of helical cyanine dye aggregates on DNA nanotemplates [J].
Seifert, JL ;
Connor, RE ;
Kushon, SA ;
Wang, M ;
Armitage, BA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (13) :2987-2995