Search ResultsElectronic Resources 
by
Trump, Benjamin F.
ScienceDirect http://www.sciencedirect.com/science/book/9780127015019
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Excerpt:
Pathobiology of cell membranes. Volume 1 / Trump, Benjamin F.
by
Konetski, Danielle S., author.
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Synthetic Cell Membranes / Konetski, Danielle S., author.
by
Luis, Patricia, author.
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Cell membranes.
by
Lipowsky, R. (Reinhard), 1953-
ScienceDirect http://www.sciencedirect.com/science/book/9780444819758
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cell membranes
by
Bhat, Anupama, author.
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interaction of nanoparticles (NPs) with cell membranes effectively alters certain physical properties such as
by
Gide, Mussie, author.
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mimic the antibacterial mechanism of HDPs by compromising bacterial cell membranes. The developed
by
Zhao, T. S.
ScienceDirect http://www.sciencedirect.com/science/bookseries/1752301X/
ScienceDirect http://www.sciencedirect.com/science/book/9780080453941
ScienceDirect http://www.sciencedirect.com/science/book/9780080453941
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Excerpt:
polymers as proton-exchange fuel cell membranes, polymer electrolyte membranes for direct methanol fuel
by
Angsantikul, Pavimol, author.
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cells, particularly their natural adhesion property was exploit by the natural cell membranes
by
Bush, Jeffrey Alan, author.
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Machine learning tools were used to automatically segment cell membranes and mitochondria in large
by
Bajimaya, Shringkhala, author.
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progeny virions. The cholesterol reducing agents prevented cell surface accumulation of PIV glycoproteins
by
McBride, Zach M., author.
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form. Dozens were dual localized proteins that partitioned between the cytosol and cell membranes: a
by
Climer, Leslie K., author.
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) remove COG-interacting proteins to dislodge the COG complex from Golgi membranes and disrupt COG function
by
Hsu, Hung-Lun, author.
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neuraminidase (NA). During virus infection, HA first binds to sialic acid moieties on epithelial cell membranes
by
Hall, Allison Elizabeth, author.
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(ZCF), degrade their cell walls, and fuse their plasma membranes. Because improper cell wall
by
Willson, Terrence R, author.
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solutions of different concentrations. The core components of a RED cell, and the largest factor affecting
by
Drahushuk, Lee William, author.
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Single-layer graphene membranes and other 2D membranes can realize very high gas permeation fluxes
by
Weed, Darin James, author. (orcid)0000-0002-5432-8074
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with viruses that utilize low pH entry to fuse with host cell membranes. Here, we show that fusion is
by
Chon, Nara Lee, author.
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) to interact with membranes during exocytosis, acting as Ca2+-sensors. To explore Ca2+ ion binding and
by
Doğangün, Merve, author.
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specific molecular level information regarding the interactions between nanomaterials and cell membranes
by
Milton, Margarita, author.
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assembled a cell with 0.4 M electron concentration with negligible capacity loss for over 450 cycles (>74
by
Al-Juboori, Saif I., author.
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-protein, protein-protein interactions and cell signaling processes. Since these membrane microdomains have small
by
McGeachy, Alicia Christine, author. (orcid)0000-0003-1519-308X
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regarding how nanoparticles interact with aqueous/solid interfaces, including biological membranes, is
by
Griep, Emily Rose, author.
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. Investigation of cell size and surface properties determined that this difference in effectiveness was a
by
Weinman, Steven Thomas, author.
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) functionalized polyethersulfone membranes accumulated half the biovolume as unmodified membranes. Poly(CBOH
by
Shrestha, Samana, author.
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-pHLIP is seen clearly on all the images and some staining of internal organelles and nuclei membranes as
by
Islam, Shariful, author.
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tissue such as the mucous membranes, gut and the bone marrow. TIP are common in standard anti

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