Cationic cyanine as a near-infrared fluorescent probe for the determination of nucleic acids

被引:0
|
作者
Hong Zheng
Dong-Hui Li
Chang-Qing Zhu
Xiao-Lan Chen
Jin-Gou Xu
机构
[1] Department of Chemistry,
[2] the Key Laboratory of Analytical Sciences of MOE,undefined
[3] Xiamen University,undefined
[4] Xiamen,undefined
[5] 361005,undefined
[6] P.R.China e-mail: jgxu@xmu.edu.cn,undefined
[7] Department of Chemistry,undefined
[8] Anhui Normal University,undefined
[9] Wuhu,undefined
[10] 241000,undefined
[11] P.R.China,undefined
关键词
Standard Deviation; Aqueous Solution; Nucleic Acid; Detection Limit; Optimal Condition;
D O I
暂无
中图分类号
学科分类号
摘要
A new method with a cationic near-IR cyanine as fluorescent probe was developed for the determination of nucleic acids. The near-IR cyanine shows maximum excitation and emission wavelengths at 765 and 790 nm, respectively, in aqueous solution. The method is based on the fluorescence decrease of near-IR cyanine in the presence of nucleic acids. Under optimal conditions, the ratio of fluorescence intensity in the absence and presence of nucleic acids was proportional to the concentration of ¶nucleic acids over the range 0.10–1.2 μg/mL for CT (calf thymus) DNA or SM (salmon sperm) DNA, and 0.10–¶1.6 μg/mL for yeast RNA. The detection limits were ¶30 ng/mL for CT DNA, 25 ng/mL for SM DNA and ¶70 ng/mL for yeast RNA. The relative standard deviation (n = 6) was 2.1% for 500 ng/mL CT DNA, 2.4% for ¶500 ng/mL SM DNA and 2.7% for 500 ng/mL yeast RNA, respectively.
引用
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页码:504 / 507
页数:3
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