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Size-selective hybridization chain reaction for accurate signal amplification in living cancer cells
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作者 Ting Chen Xiaojiao Wang +4 位作者 Rongrong Gao meihe yuan Mei Chen Xiao-Bing Zhang Guoliang Ke 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第12期4259-4266,共8页
Accurate signal amplification in living cells is highly important in biomedical research and medical diagnostics.Benefiting from its enzyme-free,efficient isothermal signal amplification ability,hybridization chain re... Accurate signal amplification in living cells is highly important in biomedical research and medical diagnostics.Benefiting from its enzyme-free,efficient isothermal signal amplification ability,hybridization chain reaction(HCR)plays an important role in intracellular signal amplification;however,HCR fails the accurate signal amplification in the situation when the properties of some biological targets and analogues are too similar.Particularly,their signal amplification accuracy for mature mi RNAs is unsatisfactory due to the signal interference of precursor micro RNAs(abbreviated as pre-mi RNAs),which also contain the sequence of mature mi RNAs.Herein,we develop the first example of size-selective hybridization chain reaction probe for accurate signal amplification,which achieved accurate and sensitive biosensing of mature mi RNAs in living cancer cells.Our probe,termed as q Tcage,consists of a DNA nanocage for size-selective responsive to mature mi RNAs,as well as a quadrivalent tetrahedral DNA structure for HCR signal amplification.Benefiting from the size-selectivity of DNA nanocage,shorter mature mi RNAs(19–23 nt)rather than longer pre-mi RNAs(60–70 nt)could enter the cavity to release triggers strand,which activates HCR reaction for fluorescence signal recovery.The probe efficiently reduces signal interference of pre-mi RNAs and improves the imaging sensitivity for intracellular mature mi RNAs,which was successfully applied for mature mi RNAs imaging during drug treatment.Overall,this strategy provides the hybridization chain reaction with the feature of size-selective ability,which holds promise for further accurate signal amplification in biological processes study and clinical diagnostics. 展开更多
关键词 hybridization chain reaction microRNA DNA nanotechnology
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