Publications

Found 199 results
Author [ Title(Desc)] Type Year
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
M
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.
Reda NJ, Morin JG, Torres E, Cohen AC, Schawaroch V, Gerrish GA.  2019.  Maristella, a new bioluminescent ostracod genus in the Myodocopida (Cypridinidae). Zoological Journal of the Linnean Society. 187:1078-1118.
Zhou Y, Su JM, Samuel CE, Ma D.  2019.  Measles Virus Forms Inclusion Bodies with Properties of Liquid Organelles. Journal of Virology. 93
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.
DeMartini DG, Krogstad DV, Morse DE.  2013.  Membrane invaginations facilitate reversible water flux driving tunable iridescence in a dynamic biophotonic system. Proceedings of the National Academy of Sciences. 110:2552–2556.
Sivakumar K, Wang VBochuan, Chen X, Bazan GC, Kjelleberg S, Loo SChye Joach, Cao B.  2014.  Membrane permeabilization underlies the enhancement of extracellular bioactivity in Shewanella oneidensis by a membrane-spanning conjugated oligoelectrolyte. Applied microbiology and biotechnology. 98:9021–9031.
Yan H, Catania C, Bazan GC.  2015.  Membrane-Intercalating Conjugated Oligoelectrolytes: Impact on Bioelectrochemical Systems. Advanced Materials.
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.
Seo S, Das S, Zalicki P, Mirshafian R, Eisenbach CD, Israelachvili JN, Waite JHerbert, B Ahn K.  2015.  Micro-phase behavior and enhanced wet-cohesion of synthetic copolyampholytes inspired by a mussel foot protein. Journal of the American Chemical Society.
Yang Y, Bai M, Klug WS, Levine AJ, Valentine MT.  2013.  Microrheology of highly crosslinked microtubule networks is dominated by force-induced crosslinker unbinding. Soft matter. 9:383–393.
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
Best RL, LaPointe NE, Azarenko O, Miller H, Genualdi C, Chih S, Shen B-Q, Jordan MAnn, Wilson L, Feinstein SC et al..  2021.  Microtubule and tubulin binding and regulation of microtubule dynamics by the antibody drug conjugate (ADC) payload, monomethyl auristatin E (MMAE): Mechanistic insights into MMAE ADC peripheral neuropathy. Toxicology and Applied Pharmacology. 421:115534.
Benbow SJ, Wozniak KM, Kulesh B, Savage A, Slusher BS, Littlefield BA, Jordan MAnn, Wilson L, Feinstein SC.  2017.  Microtubule-Targeting Agents Eribulin and Paclitaxel Differentially Affect Neuronal Cell Bodies in Chemotherapy-Induced Peripheral Neuropathy. Neurotoxicity Research. :1–12.
Cook BM, Benbow SJ, Wozniak KM, Slusher BS, Littlefield BA, Wilson L, Feinstein SC, Jordan MAnn.  2014.  Microtubule-targeting agents induce differential myelinated axon degeneration in a mouse model of peripheral neuropathy. Cancer Research. 74:5503–5503.

Pages