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 PMID:40456731  

Label-Free Quantification of DNA Loading on Centrifugation-Resistant Spherical Nucleic Acids.

Seungheon Lee | Subrata Pandit | Gabriel Gilman | Atri Bhattacharya | Devleena Samanta
Analytical chemistry | 2025

The accurate determination of DNA loading on spherical nucleic acids (SNAs) is critical for biosensing and therapeutic applications, as DNA loading directly affects target binding, cellular uptake, and therapeutic efficacy. Traditional methods involve centrifugation to separate unbound DNA from SNAs, followed by DNA quantification to calculate the number of strands per particle. However, this approach is ineffective for centrifugation-resistant SNAs. Alternative methods, such as centrifugal filtration, require multiple washing steps, often resulting in sample loss, and can be labor- and time-intensive, taking several hours. Additionally, many existing techniques rely on expensive labels or toxic reagents. Here, we present a simple, rapid, and label-free method for determining DNA loading using diethylaminoethyl (DEAE)-functionalized beads. We demonstrate its effectiveness on centrifugation-resistant SNAs, including those with metallic or protein-based cores and various DNA lengths, sequences, and densities. This approach exploits the different binding strengths of free and nanoparticle-bound DNA to DEAE, allowing the selective elution of free DNA by adjusting the ionic strength. The eluted DNA is quantified to determine the unbound fraction, which is then used to calculate the number of bound DNA strands per nanoparticle. Requiring only standard laboratory equipment─such as a benchtop centrifuge, a shaker, and either a UV-vis spectrophotometer or a commonly available plate reader─this method provides a fast and reliable alternative to conventional approaches, delivering results in under 15 min. Its versatility and broad applicability across diverse SNA core materials and sizes make it a valuable tool for DNA quantification in a wide range of nanoparticle-based platforms.

Pubmed ID: 40456731

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University of Texas at Austin Biological Mass Spectrometry Proteomics Core Facility (service resource)

RRID:SCR_021728

Proteomics and Metabolomics services and collaborative efforts are provided at Biological Mass Spectrometry Facility. We use high resolution Orbitrap mass spectrometers with UPLC at high flow for metabolomics and nanoUPLC for proteomics work. We have Bruker Autoflex for self service MALDI. Our proteomics services are protein ID, quantitation, and modification analysis, with fractionation for deeper coverage and de novo sequencing of mAbs available. We collaborate for customized projects. We have untargeted metabolomics for quantitative or qualitative analysis of extracted metabolites using C18 column.

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University of Texas at Austin Biological Mass Spectrometry Proteomics Core Facility (service resource)

RRID:SCR_021728

Proteomics and Metabolomics services and collaborative efforts are provided at Biological Mass Spectrometry Facility. We use high resolution Orbitrap mass spectrometers with UPLC at high flow for metabolomics and nanoUPLC for proteomics work. We have Bruker Autoflex for self service MALDI. Our proteomics services are protein ID, quantitation, and modification analysis, with fractionation for deeper coverage and de novo sequencing of mAbs available. We collaborate for customized projects. We have untargeted metabolomics for quantitative or qualitative analysis of extracted metabolites using C18 column.

View all literature mentions