The ability to quantify cocaine in biological fluids is crucial for both the diagnosis of intoxication and overdose in the clinic as well as investigation of the drug's pharmacological and toxicological effects in the laboratory. To this end, we have performed high-stringency in vitro selection to generate DNA aptamers that bind cocaine with nanomolar affinity and clinically relevant specificity, thus representing a dramatic improvement over the current-generation, micromolar-affinity, low-specificity cocaine aptamers. Using these novel aptamers, we then developed two sensors for cocaine detection. The first, an in vitro fluorescent sensor, successfully detects cocaine at clinically relevant levels in 50% human serum without responding significantly to other drugs of abuse, endogenous substances, or a diverse range of therapeutic agents. The second, an electrochemical aptamer-based sensor, supports the real-time, seconds-resolved measurement of cocaine concentrations in vivo in the circulation of live animals. We believe the aptamers and sensors developed here could prove valuable for both point-of-care and on-site clinical cocaine detection as well as fundamental studies of cocaine neuropharmacology.
High-Affinity Aptamers for In Vitro and In Vivo Cocaine Sensing.
用于体外和体内可卡因检测的高亲和力适体
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作者:Alkhamis Obtin, Canoura Juan, Wu Yuyang, Emmons Nicole A, Wang Yuting, Honeywell Kevin M, Plaxco Kevin W, Kippin Tod E, Xiao Yi
| 期刊: | Journal of the American Chemical Society | 影响因子: | 15.600 |
| 时间: | 2024 | 起止号: | 2024 Feb 7; 146(5):3230-3240 |
| doi: | 10.1021/jacs.3c11350 | ||
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