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Engineering a Rigid Nucleic Acid Structure to Improve the Limit of Detection for Genetic Assays.
Malekjahani, Ayden; Lekuti, Ayokunle A; Valiente, Pedro A; Osborne, Matthew; Li, Vanessa Y C; Kim, Philip M; Chan, Warren C W.
Afiliação
  • Malekjahani A; Institute of Biomedical Engineering, University of Toronto, 164 College Street, Toronto, Ontario M5S 3G9, Canada.
  • Lekuti AA; Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, 160 College Street, Toronto, Ontario M5S 3E1, Canada.
  • Valiente PA; Institute of Biomedical Engineering, University of Toronto, 164 College Street, Toronto, Ontario M5S 3G9, Canada.
  • Osborne M; Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, 160 College Street, Toronto, Ontario M5S 3E1, Canada.
  • Li VYC; Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, 160 College Street, Toronto, Ontario M5S 3E1, Canada.
  • Kim PM; Department of Molecular Genetics, University of Toronto, 184 College Street, Toronto, Ontario M5S 3E1, Canada.
  • Chan WCW; Institute of Biomedical Engineering, University of Toronto, 164 College Street, Toronto, Ontario M5S 3G9, Canada.
Anal Chem ; 96(23): 9729-9736, 2024 06 11.
Article em En | MEDLINE | ID: mdl-38801277
ABSTRACT
Detecting nucleic acids at ultralow concentrations is critical for research and clinical applications. Particle-based assays are commonly used to detect nucleic acids. However, DNA hybridization on particle surfaces is inefficient due to the instability of tethered sequences, which negatively influences the assay's detection sensitivity. Here, we report a method to stabilize sequences on particle surfaces using a double-stranded linker at the 5' end of the tethered sequence. We termed this method Rigid Double Stranded Genomic Linkers for Improved DNA Analysis (RIGID-DNA). Our method led to a 3- and 100-fold improvement of the assays' clinical and analytical sensitivity, respectively. Our approach can enhance the hybridization efficiency of particle-based assays without altering existing assay workflows. This approach can be adapted to other platforms and surfaces to enhance the detection sensitivity.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA / Limite de Detecção / Hibridização de Ácido Nucleico Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA / Limite de Detecção / Hibridização de Ácido Nucleico Idioma: En Ano de publicação: 2024 Tipo de documento: Article