Search Results - "Epand, R.M"

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  1. 1

    Membrane-Active Peptides and the Clustering of Anionic Lipids by Wadhwani, P., Epand, R.F., Heidenreich, N., Bürck, J., Ulrich, A.S., Epand, R.M.

    Published in Biophysical journal (18-07-2012)
    “…There is some overlap in the biological activities of cell-penetrating peptides (CPPs) and antimicrobial peptides (AMPs). We compared nine AMPs, seven CPPs,…”
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  2. 2

    The mechanism of lamellar-to-inverted hexagonal phase transitions in phosphatidylethanolamine: implications for membrane fusion mechanisms by Siegel, D.P., Epand, R.M.

    Published in Biophysical journal (01-12-1997)
    “…We studied the mechanism of the lamellar-to-inverted hexagonal (L alpha/H[II]) phase transition, using time-resolved cryotransmission electron microscopy…”
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  3. 3

    DSC studies on interactions between low molecular mass peptide dendrimers and model lipid membranes by Klajnert, B., Janiszewska, J., Urbanczyk-Lipkowska, Z., Bryszewska, M., Epand, R.M.

    Published in International journal of pharmaceutics (11-12-2006)
    “…It has recently been shown that a newly synthesized peptide dendrimers possess antimicrobial activity against Gram-positive ( Staphylococcus aureus) and…”
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  4. 4

    Lipopeptaibols, a novel family of membrane active, antimicrobial peptides by Toniolo, C, Crisma, M, Formaggio, F, Peggion, C, Epand, R F, Epand, R M

    “…Lipopeptaibols are members of a novel group of naturally occurring, short peptides with antimicrobial activity, characterized by a lipophilic acyl chain at the…”
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  5. 5

    The oxysterol 3β-hydroxy-5-oxo-5,6-secocholestan-6-al changes the phase behavior and structure of phosphatidylethanolamine–phosphatidylcholine mixtures by Bach, D., Epand, R.F., Epand, R.M., Miller, I.R., Wachtel, E.

    Published in Chemistry and physics of lipids (01-10-2011)
    “…► Small amounts of PC change PE/oxysterol membrane structure and thermotropic behavior. ► Membrane curvature depends on sterol and phospholipid acyl chain…”
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  6. 6

    Osmotically Induced Membrane Tension Modulates Membrane Permeabilization by Class L Amphipathic Helical Peptides: Nucleation Model of Defect Formation by Polozov, I.V., Anantharamaiah, G.M., Segrest, J.P., Epand, R.M.

    Published in Biophysical journal (01-08-2001)
    “…The mechanism of action of lytic peptides on membranes is widely studied and is important in view of potential medical applications. Previously (I. V. Polozov,…”
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  7. 7

    Interaction of Influenza Virus Fusion Peptide with Lipid Membranes: Effect of Lysolipid by Ohki, S, Baker, G.A, Page, P.M, McCarty, T.A, Epand, R.M, Bright, F.V

    Published in The Journal of membrane biology (01-01-2006)
    “…The effect of lysophosphatidylcholine (LPC) on lipid vesicle fusion and leakage induced by influenza virus fusion peptides and the peptide interaction with…”
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  8. 8

    Role of the position of unsaturation on the phase behavior and intrinsic curvature of phosphatidylethanolamines by Epand, R.M., Fuller, N., Rand, R.P.

    Published in Biophysical journal (01-10-1996)
    “…The bilayer-to-hexagonal phase transition temperatures (T(H)) of di-18:1(C) phosphatidylethanolamine with double bonds at positions 6, 9, and 11 are 37 degrees…”
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  9. 9

    Reciprocal effects of apolipoprotein and lytic peptide analogs on membranes. Cross-sectional molecular shapes of amphipathic alpha helixes control membrane stability by Tytler, E M, Segrest, J P, Epand, R M, Nie, S Q, Epand, R F, Mishra, V K, Venkatachalapathi, Y V, Anantharamaiah, G M

    Published in The Journal of biological chemistry (15-10-1993)
    “…Apolipoprotein (class A) amphipathic helixes are postulated to act as detergents by virtue of their cross-section being wedge-shaped. Using computer analysis…”
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  10. 10

    Amphipathic peptide affects the lateral domain organization of lipid bilayers by Polozov, I.V, Polozova, A.I, Molotkovsky, J.G, Epand, R.M

    Published in Biochimica et biophysica acta (04-09-1997)
    “…Using lipid-specific fluorescent probes, we studied the effects of amphipathic helical, membrane active peptides of the A- and L-type on membrane domain…”
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  11. 11

    Formation of a new stable phase of phosphatidylglycerols by Epand, R.M., Gabel, B., Epand, R.F., Sen, A., Hui, S.W., Muga, A., Surewicz, W.K.

    Published in Biophysical journal (01-08-1992)
    “…Dilauroyl and dimyristoylphosphatidylglycerol (DMPG) form a more stable gel state when aqueous suspensions are incubated several days at low temperature (0–2…”
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  12. 12

    PAMAM dendrimers and model membranes: Differential scanning calorimetry studies by Klajnert, B., Epand, R.M.

    Published in International journal of pharmaceutics (23-11-2005)
    “…Dendrimers attract much attention as potential drug and gene carriers for intracellular delivery. From this point of view, it is crucial to extend our…”
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  13. 13
  14. 14

    Towards a structure-function analysis of bovine lactoferricin and related tryptophan- and arginine-containing peptides by Vogel, Hans J, Schibli, David J, Jing, Weiguo, Lohmeier-Vogel, Elke M, Epand, Raquel F, Epand, Richard M

    Published in Biochemistry and cell biology (2002)
    “…The iron-binding protein lactoferrin is a multifunctional protein that has antibacterial, antifungal, antiviral, antitumour, anti-inflammatory, and…”
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  15. 15
  16. 16

    The oxidized form of cholesterol 3β-hydroxy-5-oxo-5,6-secocholestan-6-al induces structural and thermotropic changes in phospholipid membranes by Bach, D., Epand, R.F., Epand, R.M., Miller, I.R., Wachtel, E.

    Published in Chemistry and physics of lipids (01-10-2009)
    “…The effect of an oxidized form of cholesterol, 3β-hydroxy-5-oxo-5,6-secocholestan-6-al on the thermotropic and structural properties of phospholipid membranes…”
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  17. 17

    OAK-based cochleates as a novel approach to overcome multidrug resistance in bacteria by Livne, L, Epand, R.F, Papahadjopoulos-Sternberg, B, Epand, R.M, Mor, A

    Published in The FASEB journal (01-12-2010)
    “…Antibiotic resistance has become a worldwide medical problem. To find new ways of overcoming this phenomenon, we investigated the role of the membrane-active…”
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  18. 18

    Effect of influenza hemagglutinin fusion peptide on lamellar/inverted phase transitions in dipalmitoleoylphosphatidylethanolamine: implications for membrane fusion mechanisms by Siegel, D.P., Epand, R.M.

    Published in Biochimica et biophysica acta (29-09-2000)
    “…Low mole fractions of viral fusion peptides induce inverted cubic (Q II) phases in dipalmitoleoylphosphatidylethanolamine (DiPoPE), a lipid with unsaturated…”
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  19. 19

    The effect of free fatty acids on the thermotropic phase transition of dimyristoyl glycerophosphocholine by Usher, J R, Epand, R M, Papahadjopoulos, D

    Published in Chemistry and physics of lipids (01-10-1978)
    “…The effect of free fatty acids on the phase transition characteristics and fluidity of bilayers of dimyristoyl glycerophosphocholine were studied by pyrene…”
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  20. 20

    Anomalous swelling in phospholipid bilayers is not coupled to the formation of a ripple phase by Mason, P C, Nagle, J F, Epand, R M, Katsaras, J

    “…Aligned stacks of monomethyl and dimethyl dimyristoyl phosphatidylethanolamine (DMPE) lipid bilayers, like the much studied dimyristoyl PC (DMPC) bilayers,…”
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