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Detection of Low-abundance Point Mutations by Competitive Strand Assisted Endonuclease Ⅳ Signal Amplification System 被引量:1

Detection of Low-abundance Point Mutations by Competitive Strand Assisted Endonuclease Ⅳ Signal Amplification System
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摘要 Genetic mutations are important molecular biomarkers for cancer diagnosis and surveillance. Therefore, the development of methods for mutation detection characterized with straightforward, highly specific and sensitive to low-level mutations within various sequence contexts is extremely needed. Although some of the currently available methods have shown very encouraging results, their discrimination efficiency is still very low. Herein, we demonstrate a fluorescent probe coupled with blocker and property of melting temperature discrimination, which is able to identify the presence of known or unknown single-base variations at abundances down to 0.1% within 20 min. The discrimination factors between the perfect-match target and single-base mismatched target are determined to be 10.15–38.48. The method is sequence independent, which assures a wide range of application. The new method would be an ideal choice for high-throughput in vitro diagnosis and precise clinical treatment. Genetic mutations are important molecular biomarkers for cancer diagnosis and surveillance. Therefore, the development of methods for mutation detection characterized with straightforward, highly specific and sensitive to low-level mutations within various sequence contexts is extremely needed. Although some of the currently available methods have shown very encouraging results, their discrimination efficiency is still very low. Herein, we demonstrate a fluorescent probe coupled with blocker and property of melting temperature discrimination, which is able to identify the presence of known or unknown single-base variations at abundances down to 0.1% within 20 min. The discrimination factors between the perfect-match target and single-base mismatched target are determined to be 10.15–38.48. The method is sequence independent, which assures a wide range of application. The new method would be an ideal choice for high-throughput in vitro diagnosis and precise clinical treatment.
出处 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2017年第5期803-806,共4页 华中科技大学学报(医学英德文版)
关键词 low-abundance point mutation competitive DNA probe endonuclease melting temperature discrimination low-abundance point mutation competitive DNA probe endonuclease Ⅳ melting temperature discrimination
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