Publications

Found 58 results
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Evans MA, Huang P-J, Iwamoto Y, Ibsen K[space]N., Chan EM, Hitomi Y, Ford PC, Mitragotri S.  2018.  Macrophage-mediated delivery of light activated nitric oxide prodrugs with spatial{,} temporal and concentration control. Chem. Sci.. :-.
Shlosberg Y, Faynus MA, Huang A, Carlini AS, Clegg DO, Kaner RB.  2023.  Mammalian Fuel Cells Produce Electric Current. ACS Applied Materials & Interfaces. 15:34992-35000.
Lin Y, Fichou Y, Rauch JN, Zhang X, Kosik KS, Han S.  2023.  Mapping Phase Diagram of Tau-RNA LLPS Under Live Cell Coculturing Conditions. Protein Aggregation: Methods and Protocols. :269–284.
Giamblanco N, Fichou Y, Janot J-M, Balanzat E, Han S, Balme S.  2020.  Mechanisms of Heparin-Induced Tau Aggregation Revealed by a Single Nanopore. ACS Sensors. 5:1158-1167.
Brown TD, Nowak M, Bayles AV, Prabhakarpandian B, Karande P, Lahann J, Helgeson ME, Mitragotri S.  2018.  A microfluidic model of human brain (μHuB) for assessment of blood brain barrier. Bioengineering & Translational Medicine.
Brown TD, Nowak M, Bayles AV, Prabhakarpandian B, Karande P, Lahann J, Helgeson ME, Mitragotri S.  2019.  A microfluidic model of human brain (μHuB) for assessment of blood brain barrier. Bioengineering & Translational Medicine. 4:e10126.
Filippidi E, DeMartini DG, de Molina PM, Danner EW, Kim J, Helgeson ME, J Waite H, Valentine MT.  2015.  The microscopic network structure of mussel (Mytilus) adhesive plaques. J. R. Soc. Interface. 12
Huang X, Pallaoro A, Braun GB, Morales DP, Ogunyankin MO, Zasadzinski J, Reich NO.  2014.  Modular plasmonic nanocarriers for efficient and targeted delivery of cancer-therapeutic siRNA. Nano letters. 14:2046–2051.
Huang X, Pallaoro A, Braun G, Morales D, Zasadzinski J, Reich N.  2014.  Modular plasmonic nanocarriers for efficient delivery of siRNA with spatial and temporal control (749.2). The FASEB Journal. 28:749–2.
S
Eschmann NA, Georgieva ER, Ganguly P, Borbat PP, Rappaport MD, Akdogan Y, Freed JH, Shea J-E, Han S.  2017.  Signature of an aggregation-prone conformation of tau.. Sci Rep. 7:44739.
Kaminker I, Wei W, Schrader AM, Talmon Y, Valentine MT, Israelachvili JN, J. Waite H, Han S.  2017.  Simple peptide coacervates adapted for rapid pressure-sensitive wet adhesion. Soft Matter. 13:9122-9131.
Erster O, Thomas JM, Hamzah J, Jabaiah AM, Getz JA, Schoep TD, Hall SS, Ruoslahti E, Daugherty PS.  2012.  Site-specific targeting of antibody activity< i> in vivo mediated by disease-associated proteases. Journal of Controlled Release. 161:804–812.
Erster O, Thomas JM, Hamzah J, Jabaiah AM, Getz JA, Schoep TD, Hall SS, Ruoslahti E, Daugherty PS.  2012.  Site-specific targeting of antibody activity< i> in vivo mediated by disease-associated proteases. Journal of Controlled Release. 161:804–812.
Morales D, Braun G, Pallaoro A, Chen R, Huang X, Zasadzinski J, Reich N.  2014.  Spatiotemporally controlled delivery of biomolecules (1053.5). The FASEB Journal. 28:1053–5.
Lee KJin, Yoon J, Rahmani S, Hwang S, Bhaskar S, Mitragotri S, Lahann J.  2012.  Spontaneous shape reconfigurations in multicompartmental microcylinders. Proceedings of the National Academy of Sciences. 109:16057–16062.
Carrettiero DC, Almeida MC, Longhini AP, Rauch JN, Han D, Zhang X, Najafi S, Gestwicki JE, Kosik KS.  2022.  Stress routes clients to the proteasome via a BAG2 ubiquitin-independent degradation condensate.. Nat Commun. 13(1):3074.
Menegatti S, Ruocco N, Kumar S, Zakrewsky M, De Oliveira JSanchez, Helgeson M.E, Leal GL, Mitragotri S.  2015.  Synthesis and Characterization of a Self-Fluorescent Hyaluronic Acid–Based Gel for Dermal Applications. Advanced Healthcare Materials. 4:2297–2305.

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