selected scholarly activity
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chapters
- Design Strategy to Access siRNA-Encapsulating DNA “Nanosuitcases” That Can Conditionally Release Their Cargo.. Methods in molecular biology (Clifton, N.J.). 69-81. 2019
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journal articles
- Outstanding Reviewers for Chemical Science in 2023. Chemical Science. 15:12634-12635. 2024
- Innovative developments and emerging technologies in RNA therapeutics. RNA Biology. 19:313-332. 2022
- DNA Dendrons as Agents for Intracellular Delivery. Journal of the American Chemical Society. 143:13513-13518. 2021
- Automated Synthesis and Purification of Guanidine‐Backbone Oligonucleotides. Current Protocols in Nucleic Acid Chemistry. 81:e110. 2020
- Defining the Design Parameters for in Vivo Enzyme Delivery Through Protein Spherical Nucleic Acids. ACS Central Science. 6:815-822. 2020
- Mercury-Free Automated Synthesis of Guanidinium Backbone Oligonucleotides. Journal of the American Chemical Society. 141:20171-20176. 2019
- Multivalent Cation-Induced Actuation of DNA-Mediated Colloidal Superlattices. Journal of the American Chemical Society. 141:19973-19977. 2019
- A Cross-Linking Approach to Stabilizing Stimuli-Responsive Colloidal Crystals Engineered with DNA. Journal of the American Chemical Society. 141:11827-11831. 2019
- DNA Nanostructures at the Interface with Biology. Chem. 4:495-521. 2018
- Optimized DNA “Nanosuitcases” for Encapsulation and Conditional Release of siRNA. Journal of the American Chemical Society. 138:14030-14038. 2016
- Controlled Growth of DNA Structures From Repeating Units Using the Vernier Mechanism. Biomacromolecules. 15:3002-3008. 2014
- Sequence-responsive unzipping DNA cubes with tunable cellular uptake profiles. Chemical Science. 5:2449-2455. 2014
- Intercalators as Molecular Chaperones in DNA Self-Assembly. Journal of the American Chemical Society. 135:11283-11288. 2013
- Correction to Rolling Circle Amplification-Templated DNA Nanotubes Show Increased Stability and Cell Penetration Ability. Journal of the American Chemical Society. 134:5426-5426. 2012
- Rolling Circle Amplification-Templated DNA Nanotubes Show Increased Stability and Cell Penetration Ability. Journal of the American Chemical Society. 134:2888-2891. 2012
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patents