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Issue Date | Title | Author(s) |
2022-07 | A rationally designed synthetic antimicrobial peptide against Pseudomonas-associated corneal keratitis: Structure-function correlation. | Mohid, SA; Sharma, P; Alghalayini, A; Saini, T; Datta, D; Willcox, MDP; Ali, H; Raha, S; Singha, A; Lee, D; Sahoo, N; Cranfield, CG; Roy, S; Bhunia, A |
2019-06-01 | ABA/ASB Membrane Biophysics session II 2018 | Cranfield, CG |
2017-01-01 | Amphipathic guanidine-embedded glyoxamide-based peptidomimetics as novel antibacterial agents and biofilm disruptors | Nizalapur, S; Kimyon, O; Yee, E; Ho, K; Berry, T; Manefield, M; Cranfield, CG; Willcox, M; Black, DSC; Kumar, N |
2014-02-20 | Bacterial mechanosensitive channels: Models for studying mechanosensory transduction | Martinac, B; Nomura, T; Chi, G; Petrov, E; Rohde, PR; Battle, AR; Foo, A; Constantine, M; Rothnagel, R; Carne, S; Deplazes, E; Cornell, B; Cranfield, CG; Hankamer, B; Landsberg, MJ |
2021-12-07 | Calcium Ion Binding at the Lipid-Water Interface Alters the Ion Permeability of Phospholipid Bilayers. | Deplazes, E; Tafalla, BD; Murphy, C; White, J; Cranfield, CG; Garcia, A |
2021-02-12 | Cation-Selectivity of a Self-Assembled Peptide Pore in Planar Phospho-lipid Bilayers using Electrical Impedance Spectroscopy | Deplazes, E; Hartmann, LM; Cranfield, CG; Garcia, A |
2022-04-21 | Cholic Acid-Based Antimicrobial Peptide Mimics as Antibacterial Agents. | Wu, J; Yu, TT; Kuppusamy, R; Hassan, MM; Alghalayini, A; Cranfield, CG; Willcox, MDP; Black, DS; Kumar, N |
2019-01-01 | Competing for the same space: protons and alkali ions at the interface of phospholipid bilayers | Deplazes, E; White, J; Murphy, C; Cranfield, CG; Garcia, A |
2018-01-01 | Design and synthesis of short amphiphilic cationic peptidomimetics based on biphenyl backbone as antibacterial agents | Kuppusamy, R; Yasir, M; Berry, T; Cranfield, CG; Nizalapur, S; Yee, E; Kimyon, O; Taunk, A; Ho, KKK; Cornell, B; Manefield, M; Willcox, M; Black, DSC; Kumar, N |
2017-01-01 | Design, Synthesis and Biological Evaluation of N-Sulfonylphenyl glyoxamide-Based Antimicrobial Peptide Mimics as Novel Antimicrobial Agents | Yu, TT; Nizalapur, S; Ho, KKK; Yee, E; Berry, T; Cranfield, CG; Willcox, M; Black, DSC; Kumar, N |
2022 | Determining the Pore Size of Multimeric Peptide Ion Channels Using Cation Conductance Measures of Tethered Bilayer Lipid Membranes. | Hartmann, LM; Garcia, A; Deplazes, E; Cranfield, CG |
2012-05-29 | Differential effects of lipids and lyso-lipids on the mechanosensitivity of the mechanosensitive channels MscL and MscS | Nomura, T; Cranfield, CG; Deplazes, E; Owen, DM; Macmillan, A; Battle, AR; Constantine, M; Sokabe, M; Martinac, B |
2017-01-01 | The effect of hydronium ions on the structure of phospholipid membranes | Deplazes, E; Poger, D; Cornell, B; Cranfield, CG |
2020-05-13 | Effect of polar amino acid incorporation on Fmoc-diphenylalanine-based tetrapeptides. | Ariawan, AD; Sun, B; Wojciechowski, JP; Lin, I; Du, EY; Goodchild, SC; Cranfield, CG; Ittner, LM; Thordarson, P; Martin, AD |
2014-09-16 | An engineered membrane to measure electroporation: Effect of tethers and bioelectronic interface | Hoiles, W; Krishnamurthy, V; Cranfield, CG; Cornell, B |
2016-10-18 | Evidence of the Key Role of H<inf>3</inf>O<sup>+</sup> in Phospholipid Membrane Morphology | Cranfield, CG; Berry, T; Holt, SA; Hossain, KR; Le Brun, AP; Carne, S; Al Khamici, H; Coster, H; Valenzuela, SM; Cornell, B |
2012-01-01 | Force from lipids: A multidisciplinary approach to study bacterial mechanosensitive ion channels | Cranfield, CG; Kloda, A; Nomura, T; Petrov, E; Battle, A; Constantine, M; Martinac, B |
2016-01-20 | Heterologously-expressed and Liposome-reconstituted Human Transient Receptor Potential Melastatin 4 Channel (TRPM4) is a Functional Tetramer | Constantine, M; Liew, CK; Lo, V; MacMillan, A; Cranfield, CG; Sunde, M; Whan, R; Graham, RM; Martinac, B |
2006-04-11 | High-speed fluorescence imaging and intensity profiling of femtosecond-induced calcium transients | Day, D; Cranfield, CG; Gu, M |
2010-02-02 | Intracellular ion monitoring using a gold-core polymer-shell nanosensor architecture | Stanca, SE; Nietzsche, S; Fritzsche, W; Cranfield, CG; Biskup, C |