Lipid was automatically coupled to DNA chains with i motif structure marked Cy3 and Cy5 at both ends by DNA synthesizer to form a DNA-lipid probe. The probe could be directly inserted into the surface of cell membrane by strong hydrophobic interaction between lipid and cell membranes, and realized the ratio detection of extracellular pH value under hypoxic and normoxic conditions. Under the condition of high pH, the fluorescent groups at both ends of the DNA strand with i-motif structure were separated without any FRET effect, while in the condition of low pH, the DNA strand with i-motif structure formed tetramer structure on the cell surface, and the fluorescent groups at both ends were close to each other, resulting in strong FRET effect.Quantitative detection of pH could be achieved by measuring the fluorescence intensity ratio of the two fluorophores.Accurate detection on extracellular pH in hypoxic environment using this probe is of great significance in physiology and pathology.
关键词
缺氧环境细胞外pH值i-motif结构二酰基脂质体荧光共振能量转移成像分析
Keywords
hypoxic conditionextracellular pHi-motif structurelipidfluorescence resonance energy transferimaging analysis
Detection of 17β-Estradiol in Water by Time-resolved Fluorescence Lateral Flow Assay
Fabrication of Nitrogen Fluoride Co doped Carbon Dots and Their Application in Riboflavin Detection
Determination of Cimetidine Using a Fluorescent Probe Based on Fluorescence Resonance Energy Transfer Effect between Carbon Quantum Dots and Silver Nanoparticles
Progress on Application of Resonance Energy Transfer in Food Safety Detection
Study on the Fluorescence Resonance Energy Transfer System of Carbon Dots-Calcein and Its Application in the Detection of Kaempferol
Related Author
No data
Related Institution
State Key Laboratory of Food Science and Technology,Jiangnan University
Institute of Analytical Food Safety,School of Food Science and Technology,Jiangnan University