摘要
Optothermal nanotweezers have emerged as an innovative optical manipulation technique in the past decade,which revolutionized classical optical manipulation by efficiently capturing a broader range of nanoparticles.However,the optothermal temperature field was merely employed for in-situ manipulation of nanoparticles,its potential for identifying bio-nanoparticles remains largely untapped.Hence,based on the synergistic effect of optothermal manipulation and CRIPSR-based bio-detection,we developed CRISPR-powered optothermal nanotweezers(CRONT).Specifically,by harnessing diffusiophoresis and thermo-osmotic flows near the substrate upon optothermal excitation,we successfully trapped and enriched DNA functionalized gold nanoparticles,CRISPR-associated proteins,as well as DNA strands.Remarkably,we built an optothermal scheme for enhancing CRISPR-based single-nucleotide polymorphism(SNP)detection at single molecule level,while also introducing a novel CRISPR methodology for observing nucleotide cleavage.Therefore,this innovative approach has endowed optical tweezers with DNA identification ability in aqueous solution which was unattainable before.With its high specificity and feasibility for in-situ bio-nanoparticle manipulation and identification,CRONT will become a universal tool in point-of-care diagnosis,biophotonics,and bio-nanotechnology.
基金
supported by the National Natural Science Foundation of China(62275164,61905145,62275168,61775148)
National Key Research and Development Program of China(No.2022YFA1206300)
Guangdong Natural Science Foundation and Province Project(2021A1515011916,2023A1515012250)
Foundation from Department of Science and Technology of Guangdong Province(2021QN02Y124)
Shenzhen Science and Technology R&D and Innovation Foundation(JCYJ20200109105608771)
Shenzhen Key Laboratory of Photonics and Biophotonics(ZDSYS20210623092006020)
The Research Grants Council(RGC)of Hong Kong China(RGC14207920)
Innovation Team Project of Department of Education of Guangdong Province(2018KCXTD026)
Deanship of Scientific Research(DSR)at King Abdulaziz University,Jeddah(KEP-MSc-70-130-42)
King Khalid University through Research Center for Advanced Materials Science(RCAMS)(RCAMS/KKU/006/21)
Medical-Engineering Interdisciplinary Research Foundation of Shenzhen University。