Research

DNA-based

Nano-biotech &
Materials Engineering

DNA-based

Biotech & Biomedical Engineering 

DNA-based

Chemistry &
Nanoscale Engineering

Full Publication List After 2016

DNA-BASED NANO-BIOTECH & MATERIALS ENGINEERING

Y. Pardo, K.G. Yancey, D.S. Rosenwasser, D.M. Bassen, J.T. Butcher, J.E. Sabin, M. Ma, S. Hamada, D. Luo. Interfacing DNA Hydrogels with Ceramics for Biofunctional Architectural Materials. Materials Today 53, 98-105 (2022)

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S. Hamada, K.G. Yancey, Y. Pardo, M. Gan, M. Vanatta, D. An, Y. Hu, T.L. Derrien, R. Ruiz, P. Liu, J. Sabin, D. Luo. Dynamic DNA Material with Emergent Locomotion Behavior Powered by Artificial Metabolism. Science Robotics 4, eaaw3512 (2019)

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D. An, A. Warning, K.G. Yancey, C.-T. Chang, V.R. Kern, A.K. Datta, P.H. Steen, D. Luo, M. Ma. Mass production of shaped particles through vortex ring freezing. Nature Comm. 7, 12401 (2016)

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Hamada, S., Tan, S. J., & Luo, D. (2014). DNA-bonded'atoms'. Nature Materials13(2), 121-122.

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Lee, J. B., Peng, S., Yang, D., Roh, Y. H., Funabashi, H., Park, N., ... & Luo, D. (2012). A mechanical metamaterial made from a DNA hydrogel. Nature nanotechnology7(12), 816-820.

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Tan, S. J., Campolongo, M. J., Luo, D., & Cheng, W. (2011). Building plasmonic nanostructures with DNA. Nature nanotechnology6(5), 268-276.

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Lee, J. B., Roh, Y. H., Um, S. H., Funabashi, H., Cheng, W., Cha, J. J., ... & Luo, D. (2009). Multifunctional nanoarchitectures from DNA-based ABC monomers. Nature nanotechnology4(7), 430-436.

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Park, N., Um, S. H., Funabashi, H., Xu, J., & Luo, D. (2009). A cell-free protein-producing gel. Nature materials8(5), 432-437.

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Cheng, W., Campolongo, M. J., Cha, J. J., Tan, S. J., Umbach, C. C., Muller, D. A., & Luo, D. (2009). Free-standing nanoparticle superlattice sheets controlled by DNA. Nature materials8(6), 519-525.

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Cheng, W., Park, N., Walter, M. T., Hartman, M. R., & Luo, D. (2008). Nanopatterning self-assembled nanoparticle superlattices by moulding microdroplets. Nature Nanotechnology3(11), 682-690.

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Um, S. H., Lee, J. B., Park, N., Kwon, S. Y., Umbach, C. C., & Luo, D. (2006). Enzyme-catalysed assembly of DNA hydrogel. Nature materials5(10), 797-801.

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Li, Y., Tseng, Y. D., Kwon, S. Y., d'Espaux, L., Bunch, J. S., McEuen, P. L., & Luo, D. (2004). Controlled assembly of dendrimer-like DNA. Nature materials3(1), 38-42.

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DNA-BASED Biotech & biomedical engineering

Chen, M., & Luo, D. (2020). A CRISPR path to cutting-edge materials. New England Journal of Medicine382(1), 85-88.

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Zhao, X., Meng, Z., Wang, Y., Chen, W., Sun, C., Cui, B., ... & Cui, H. (2017). Pollen magnetofection for genetic modification with magnetic nanoparticles as gene carriers. Nature plants3(12), 956-964.

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Zhao, X., Meng, Z., Wang, Y., Chen, W., Sun, C., Cui, B., ... & Cui, H. (2017). Pollen magnetofection for genetic modification with magnetic nanoparticles as gene carriers. Nature plants3(12), 956-964.

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Um, S. H., Lee, J. B., Kwon, S. Y., Li, Y., & Luo, D. (2006). Dendrimer-like DNA-based fluorescence nanobarcodes. Nature Protocols1(2), 995-1000.

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Li, Y., Cu, Y. T. H., & Luo, D. (2005). Multiplexed detection of pathogen DNA with DNA-based fluorescence nanobarcodes. Nature biotechnology23(7), 885-889.

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Luo, D., & Saltzman, W. M. (2000). Enhancement of transfection by physical concentration of DNA at the cell surface. Nature biotechnology18(8), 893-895.

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Luo, D., & Saltzman, W. M. (2000). Enhancement of transfection by physical concentration of DNA at the cell surface. Nature biotechnology18(8), 893-895.

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DNA-BASED CHEMISTRY & Nanoscale engineering

Wang, D., Liu, P., & Luo, D. (2022). Putting DNA to work as generic polymeric materials. Angewandte Chemie134(4), e202110666.

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Liao, R., Zhao, F., Hamada, S., Yang, P., Xu, H., Luo, D., & Yang, D. (2020). DNA-based engineering system for improving human and environmental health: Identification, detection, and treatment. Nano Today35, 100958.

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Wang, D., Cui, J., Gan, M., Xue, Z., Wang, J., Liu, P., ... & Luo, D. (2020). Transformation of biomass DNA into biodegradable materials from gels to plastics for reducing petrochemical consumption. Journal of the American Chemical Society142(22), 10114-10124.

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Yao, C., Tang, H., Wu, W., Tang, J., Guo, W., Luo, D., & Yang, D. (2020). Double rolling circle amplification generates physically cross-linked DNA network for stem cell fishing. Journal of the American Chemical Society142(7), 3422-3429.

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Tang, J., Yao, C., Gu, Z., Jung, S., Luo, D., & Yang, D. (2020). Super‐Soft and Super‐Elastic DNA Robot with Magnetically Driven Navigational Locomotion for Cell Delivery in Confined Space. Angewandte Chemie International Edition59(6), 2490-2495.

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Yang, D., Hartman, M. R., Derrien, T. L., Hamada, S., An, D., Yancey, K. G., ... & Luo, D. (2014). DNA materials: bridging nanotechnology and biotechnology. Accounts of Chemical Research47(6), 1902-1911.

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Tan, S. J., Kahn, J. S., Derrien, T. L., Campolongo, M. J., Zhao, M., Smilgies, D. M., & Luo, D. (2014). Crystallization of DNA‐Capped Gold Nanoparticles in High‐Concentration, Divalent Salt Environments. Angewandte Chemie126(5), 1340-1343.

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Tran, T. N., Cui, J., Hartman, M. R., Peng, S., Funabashi, H., Duan, F., ... & Luo, D. (2013). A universal DNA-based protein detection system. Journal of the American Chemical Society135(38), 14008-14011.

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Hartman, M. R., Yang, D., Tran, T. N., Lee, K., Kahn, J. S., Kiatwuthinon, P., ... & Luo, D. (2013). Thermostable branched DNA nanostructures as modular primers for polymerase chain reaction. Angewandte Chemie125(33), 8861-8864.

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Roh, Y. H., Ruiz, R. C., Peng, S., Lee, J. B., & Luo, D. (2011). Engineering DNA-based functional materials. Chemical Society Reviews40(12), 5730-5744.

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Cheng, W., Hartman, M. R., Smilgies, D. M., Long, R., Campolongo, M. J., Li, R., ... & Luo, D. (2010). Probing in real time the soft crystallization of DNA‐capped nanoparticles. Angewandte Chemie International Edition49(2), 380-384.

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Prata, C. A., Zhao, Y., Barthelemy, P., Li, Y., Luo, D., McIntosh, T. J., ... & Grinstaff, M. W. (2004). Charge-reversal amphiphiles for gene delivery. Journal of the American Chemical Society126(39), 12196-12197.

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