Direct cytosolic delivery of proteins through coengineering of proteins and polymeric delivery vehicles YW Lee, DC Luther, R Goswami, T Jeon, V Clark, J Elia, ... Journal of the American Chemical Society 142 (9), 4349-4355, 2020 | 113 | 2020 |
Cytosolic Protein Delivery Using Modular Biotin–Streptavidin Assembly of Nanocomposites DC Luther, YW Lee, H Nagaraj, V Clark, T Jeon, R Goswami, ... ACS nano 16 (5), 7323-7330, 2022 | 18 | 2022 |
Explaining the decay of nucleic acid-based sensors under continuous voltammetric interrogation V Clark, MA Pellitero, N Arroyo-Currás Analytical Chemistry 95 (11), 4974-4983, 2023 | 17 | 2023 |
High affinity protein surface binding through co-engineering of nanoparticles and proteins M Ray, G Brancolini, DC Luther, Z Jiang, R Cao-Milán, AM Cuadros, ... Nanoscale 14 (6), 2411-2418, 2022 | 9 | 2022 |
Perspective—the feasibility of continuous protein monitoring in interstitial fluid T Young, V Clark, N Arroyo-Currás, J Heikenfeld ECS Sensors Plus 2 (2), 027001, 2023 | 7 | 2023 |
Human Cyclophilin B Nuclease Activity Revealed via Nucleic Acid‐Based Electrochemical Sensors V Clark, K Waters, B Orsburn, NN Bumpus, N Kundu, JT Sczepanski, ... Angewandte Chemie 134 (45), e202211292, 2022 | 5 | 2022 |
Extending the Operational Lifetime of Nucleic Acid-Based Electrochemical Sensors via Protection Against Competitive Displacement of Oligonucleotides V Clark, Y Yuan, F Guzman, E Demek, PS Lukeman, B Powell-Gray, ... arXiv preprint arXiv:2406.17208, 2024 | | 2024 |
Deepening biomedical research training: Community-Building Wellness Workshops for Post-Baccalaureate Research Education Program (PREP) Trainees D Cole, AS Eneim, CJ White, CR Eddings, MQ Beckett, V Clark, J Jeffery, ... bioRxiv, 2024 | | 2024 |