Effects of Ionic Liquids on Biomembranes: A Review on Recent Biophysical Studies.
暂无分享,去创建一个
[1] Fulin Wu,et al. Cholesterol Protects the Liquid-Ordered Phase of Raft Model Membranes from the Destructive Effect of Ionic Liquids. , 2022, The journal of physical chemistry letters.
[2] S. Ghosh,et al. Thermodynamics and In-Plane Viscoelasticity of Anionic Phospholipid Membranes Modulated by an Ionic Liquid , 2022, Pharmaceutical Research.
[3] Zhi‐Wu Yu,et al. The distinct effects of two imidazolium-based ionic liquids, [C4mim][OAc] and [C6mim][OAc], on the phase behaviours of DPPC. , 2021, Physical chemistry chemical physics : PCCP.
[4] A. Faraone,et al. Stiffening Effect of the [Bmim][Cl] Ionic Liquid on the Bending Dynamics of DMPC Lipid Vesicles , 2021, The journal of physical chemistry. B.
[5] J. Jacquemin,et al. Cytotoxicity of Ionic Liquids on Normal Human Dermal Fibroblasts in the Context of Their Present and Future Applications , 2021 .
[6] H. Srinivasan,et al. Microscopic insights on the structural and dynamical aspects of Imidazolium-based surface active ionic liquid micelles , 2021, Journal of Molecular Liquids.
[7] Chul-Woong Cho,et al. Review of the toxic effects of ionic liquids. , 2021, The Science of the total environment.
[8] R. Mukhopadhyay,et al. Thermodynamics and structure of model bio-membrane of liver lipids in presence of imidazolium-based ionic liquids. , 2021, Biochimica et biophysica acta. Biomembranes.
[9] Jingjie Hu,et al. Percutaneous liquid ablation agent for tumor treatment and drug delivery , 2021, Science Translational Medicine.
[10] V. Srihari,et al. Ionic Liquid-Induced Phase-Separated Domains in Lipid Multilayers Probed by X-ray Scattering Studies , 2021, ACS omega.
[11] E. Mamontov,et al. Melittin exerts opposing effects on short- and long-range dynamics in bicontinuous microemulsions. , 2021, Journal of colloid and interface science.
[12] S. Qian,et al. Understanding the Structure and Dynamics of Complex Biomembrane Interactions by Neutron Scattering Techniques. , 2020, Langmuir : the ACS journal of surfaces and colloids.
[13] M. Moniruzzaman,et al. Biocompatible ionic liquids and their applications in pharmaceutics , 2020 .
[14] P. Williamson,et al. Solid-state NMR methods for studying membrane systems , 2020 .
[15] V. García Sakai,et al. Enhanced Microscopic Dynamics of a Liver Lipid Membrane in the Presence of an Ionic Liquid , 2020, Frontiers in Chemistry.
[16] D. Hodyna,et al. Functionalized imidazolium-based ionic liquids: biological activity evaluation, toxicity screening, spectroscopic, and molecular docking studies , 2020, Medicinal Chemistry Research.
[17] M. Fischer,et al. Role of cationic head-group in cytotoxicity of ionic liquids: Probing changes in bilayer architecture using solid-state NMR spectroscopy. , 2020, Journal of colloid and interface science.
[18] V. Sharma,et al. Dioctadecyldimethylammonium bromide, a surfactant model for the cell membrane: Importance of microscopic dynamics , 2020, Structural dynamics.
[19] R. Ferraz,et al. Recycling Old Antibiotics with Ionic Liquids , 2020, Antibiotics.
[20] J. Philip,et al. Efficacy of imidazolium and piperidinium based ionic liquids on inhibiting biofilm formation on titanium and carbon steel surfaces. , 2020, Analytica chimica acta.
[21] B. Rodriguez,et al. Sub-Toxic Concentrations of Ionic Liquids Enhance Cell Migration by Reducing the Elasticity of the Cellular Lipid Membrane. , 2020, The journal of physical chemistry letters.
[22] Navleen Kaur,et al. Amphiphilic ionic liquid induced fusion of phospholipid liposomes. , 2020, Physical chemistry chemical physics : PCCP.
[23] S. Ghosh,et al. Relating the physical properties of aqueous solutions of ionic liquids with their chemical structures , 2020, The European physical journal. E, Soft matter.
[24] V. Sharma,et al. Caffeine modulates the dynamics of DODAB membranes: Role of the physical state of the bilayer , 2020, 2006.15580.
[25] J. C. Junqueira,et al. Alkylimidazolium Ionic Liquids as Antifungal Alternatives: Antibiofilm Activity Against Candida albicans and Underlying Mechanism of Action , 2020, Frontiers in Microbiology.
[26] E. Mamontov,et al. Effects of NSAIDs on the nanoscopic dynamics of lipid membrane. , 2020, Biochimica et biophysica acta. Biomembranes.
[27] R. Mukhopadhyay,et al. Imidazolium-based ionic liquids cause mammalian cell death due to modulated structures and dynamics of cellular membrane. , 2020, Biochimica et biophysica acta. Biomembranes.
[28] M. Moniruzzaman,et al. An Overview on the Toxicological Properties of Ionic Liquids toward Microorganisms , 2019, Biotechnology journal.
[29] S. K. Ghosh,et al. Surface activities of a lipid-analogue room temperature ionic liquid and its effects on phospholipid membrane. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[30] A. Dash,et al. Ubiquicidin Derived Peptides Selectively Interact with the Anionic Phospholipid Membrane. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[31] I. Singh,et al. Ionic Liquids for Therapeutic and Drug Delivery Applications. , 2019, Current drug research reviews.
[32] E. Mamontov,et al. Membrane softening by nonsteroidal anti-inflammatory drugs investigated by neutron spin echo. , 2019, Physical chemistry chemical physics : PCCP.
[33] H. Scheidt,et al. The Effect of the Alkyl Chain Length of Amphiphilic Ionic Liquids on the Structure and Dynamics of Model Lipid Membranes. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[34] Zhi‐Wu Yu,et al. Effect of Imidazolium-Based Ionic Liquids on the Structure and Phase Behavior of Palmitoyl-oleoyl-phosphatidylethanolamine. , 2019, The journal of physical chemistry. B.
[35] E. Mamontov,et al. Incorporation of Melittin Enhances Interfacial Fluidity of Bicontinuous Microemulsions , 2019, The Journal of Physical Chemistry C.
[36] S. Pal,et al. Unraveling the Role of Monoolein in Fluidity and Dynamical Response of a Mixed Cationic Lipid Bilayer. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[37] S. Mitra,et al. Dynamic Landscape in Self-Assembled Surfactant Aggregates. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[38] S. Qian,et al. Effect of an Antimicrobial Peptide on Lateral Segregation of Lipids: A Structure and Dynamics Study by Neutron Scattering. , 2019, Langmuir : the ACS journal of surfaces and colloids.
[39] K. S. Egorova,et al. Fundamental importance of ionic interactions in the liquid phase: A review of recent studies of ionic liquids in biomedical and pharmaceutical applications , 2018, Journal of Molecular Liquids.
[40] P. Ballone,et al. An overview of neutron scattering and molecular dynamics simulation studies of phospholipid bilayers in room-temperature ionic liquid/water solutions , 2018, Physica B: Condensed Matter.
[41] S. Ghosh,et al. Probing the effect of a room temperature ionic liquid on phospholipid membranes in multilamellar vesicles , 2018, European Biophysics Journal.
[42] M. Lekka,et al. Measuring Elastic Properties of Single Cancer Cells by AFM. , 2018, Methods in molecular biology.
[43] Emily A. Smith,et al. Optical Imaging of the Nanoscale Structure and Dynamics of Biological Membranes. , 2018, Analytical chemistry.
[44] J. Palomar,et al. Assessment the ecotoxicity and inhibition of imidazolium ionic liquids by respiration inhibition assays. , 2018, Ecotoxicology and environmental safety.
[45] P. Milani,et al. Imidazolium-Based Ionic Liquids Affect Morphology and Rigidity of Living Cells: An Atomic Force Microscopy Study. , 2018, Langmuir : the ACS journal of surfaces and colloids.
[46] S.K. Ghosh,et al. Structural changes in cellular membranes induced by ionic liquids: From model to bacterial membranes. , 2018, Chemistry and physics of lipids.
[47] A. Catte,et al. Direct Prediction of EPR Spectra from Lipid Bilayers: Understanding Structure and Dynamics in Biological Membranes , 2018, Chemphyschem : a European journal of chemical physics and physical chemistry.
[48] H. Scheidt,et al. Amphiphilic Ionic Liquid-Induced Membrane Permeabilization: Binding Is Not Enough. , 2018, The journal of physical chemistry. B.
[49] S. Jarvis,et al. Controlling the mechanoelasticity of model biomembranes with room-temperature ionic liquids , 2018, Biophysical Reviews.
[50] A. Benedetto,et al. Editorial of the “ionic liquids and biomolecules” special issue , 2018, Biophysical Reviews.
[51] T. Welton. Ionic liquids: a brief history , 2018, Biophysical Reviews.
[52] J. Bolla,et al. Antibacterial activities of mono-, di- and tri-substituted triphenylamine-based phosphonium ionic liquids. , 2018, Bioorganic & medicinal chemistry letters.
[53] M. Moniruzzaman,et al. Ionic liquids as a potential solvent for lipase-catalysed reactions: A review , 2018 .
[54] P. Dubey,et al. Dynamical Transitions and Diffusion Mechanism in DODAB Bilayer , 2018, Scientific Reports.
[55] K. S. Egorova,et al. Ionic liquids in whole-cell biocatalysis: a compromise between toxicity and efficiency , 2018, Biophysical Reviews.
[56] S. Ghosh,et al. Thermodynamics of interaction of ionic liquids with lipid monolayer , 2018, Biophysical Reviews.
[57] H. Galla,et al. Membrane interactions of ionic liquids and imidazolium salts , 2018, Biophysical Reviews.
[58] W. Huck,et al. 3D microniches reveal the importance of cell size and shape , 2017, Nature Communications.
[59] S. Ghosh,et al. Effects of ionic liquids on the nanoscopic dynamics and phase behaviour of a phosphatidylcholine membrane. , 2017, Soft matter.
[60] P. Cardiano,et al. Testing the antimicrobial properties of an upcoming “environmental-friendly” family of ionic liquids , 2017 .
[61] G. Russo,et al. Cholesterol affects the interaction between an ionic liquid and phospholipid vesicles. A study by differential scanning calorimetry and nanoplasmonic sensing. , 2017, Biochimica et biophysica acta. Biomembranes.
[62] Viresh R. Thamke,et al. Evaluation of risk assessment of new industrial pollutant, ionic liquids on environmental living systems. , 2017, Water research.
[63] P. Butler,et al. Probing Elastic and Viscous Properties of Phospholipid Bilayers Using Neutron Spin Echo Spectroscopy. , 2017, The journal of physical chemistry letters.
[64] M. Wagner,et al. Virucidal Influence of Ionic Liquids on Phages P100 and MS2 , 2017, Front. Microbiol..
[65] E. Mamontov,et al. Nanoscopic dynamics of bicontinous microemulsions: effect of membrane associated protein. , 2017, Soft Matter.
[66] Y. Nancharaiah,et al. Long alkyl-chain imidazolium ionic liquids: Antibiofilm activity against phototrophic biofilms. , 2017, Colloids and surfaces. B, Biointerfaces.
[67] A. Benedetto. Room-temperature ionic liquids meet bio-membranes: the state-of-the-art , 2017, Biophysical Reviews.
[68] P. Pinto,et al. Environmental Impact of Ionic Liquids: Recent Advances in (Eco)toxicology and (Bio)degradability. , 2017, ChemSusChem.
[69] Xiangping Zhang,et al. Multiscale Studies on Ionic Liquids. , 2017, Chemical reviews.
[70] Li-ping Qin,et al. Are Ionic Liquids Chemically Stable? , 2017, Chemical reviews.
[71] K. S. Egorova,et al. Biological Activity of Ionic Liquids and Their Application in Pharmaceutics and Medicine. , 2017, Chemical reviews.
[72] S. Ghosh,et al. X-ray Reflectivity Study of the Interaction of an Imidazolium-Based Ionic Liquid with a Soft Supported Lipid Membrane. , 2017, Langmuir : the ACS journal of surfaces and colloids.
[73] Ana Rita Dias,et al. The Anticancer Potential of Ionic Liquids , 2017, ChemMedChem.
[74] S. Wiedmer,et al. Effects of phosphonium-based ionic liquids on phospholipid membranes studied by small-angle X-ray scattering. , 2016, Chemistry and physics of lipids.
[75] F. Glorius,et al. Imidazolium-Based Lipid Analogues and Their Interaction with Phosphatidylcholine Membranes. , 2016, Langmuir : the ACS journal of surfaces and colloids.
[76] E. Mamontov,et al. Neutron Scattering Studies of the Interplay of Amyloid β Peptide(1–40) and An Anionic Lipid 1,2-dimyristoyl-sn-glycero-3-phosphoglycerol , 2016, Scientific Reports.
[77] E. Mamontov,et al. Dynamical and Phase Behavior of a Phospholipid Membrane Altered by an Antimicrobial Peptide at Low Concentration. , 2016, The journal of physical chemistry letters.
[78] E. Maginn,et al. Molecular Mechanism of Ionic-Liquid-Induced Membrane Disruption: Morphological Changes to Bilayers, Multilayers, and Vesicles. , 2016, Langmuir : the ACS journal of surfaces and colloids.
[79] Bin Wang,et al. Structure-Antibacterial Activity Relationships of Imidazolium-Type Ionic Liquid Monomers, Poly(ionic liquids) and Poly(ionic liquid) Membranes: Effect of Alkyl Chain Length and Cations. , 2016, ACS applied materials & interfaces.
[80] Yingxi Zhu,et al. Interaction of Ionic Liquids with a Lipid Bilayer: A Biophysical Study of Ionic Liquid Cytotoxicity. , 2016, The journal of physical chemistry. B.
[81] G. Lamberti,et al. Molecular mechanisms of ionic liquid cytotoxicity probed by an integrated experimental and computational approach , 2016, Scientific Reports.
[82] P. Ballone,et al. Room Temperature Ionic Liquids Meet Biomolecules: A Microscopic View of Structure and Dynamics , 2016 .
[83] E. Mamontov,et al. Effect of α-Tocopherol on the Microscopic Dynamics of Dimyristoylphosphatidylcholine Membrane. , 2016, The journal of physical chemistry. B.
[84] I. Kilpeläinen,et al. The use of ionic liquids for cracking viruses for isolation of nucleic acids , 2015 .
[85] E. Mamontov,et al. Effect of antimicrobial peptide on the dynamics of phosphocholine membrane: role of cholesterol and physical state of bilayer. , 2015, Soft matter.
[86] B. Gilmore,et al. The antimicrobial potential of ionic liquids: A source of chemical diversity for infection and biofilm control. , 2015, International journal of antimicrobial agents.
[87] R. Bingham,et al. Structure and dynamics of POPC bilayers in water solutions of room temperature ionic liquids. , 2015, The Journal of chemical physics.
[88] Tae-Joon Jeon,et al. The binding and insertion of imidazolium-based ionic surfactants into lipid bilayers: the effects of the surfactant size and salt concentration. , 2015, Physical chemistry chemical physics : PCCP.
[89] J. Büchs,et al. Impact of two ionic liquids, 1-ethyl-3-methylimidazolium acetate and 1-ethyl-3-methylimidazolium methylphosphonate, on Saccharomyces cerevisiae: metabolic, physiologic, and morphological investigations , 2015, Biotechnology for Biofuels.
[90] A. Fuentefria,et al. Imidazolium salts as antifungal agents: strong antibiofilm activity against multidrug‐resistant Candida tropicalis isolates , 2015, Letters in applied microbiology.
[91] E. Maginn,et al. Amphiphilic interactions of ionic liquids with lipid biomembranes: a molecular simulation study. , 2014, Soft matter.
[92] G. Fragneto,et al. Structure and stability of phospholipid bilayers hydrated by a room-temperature ionic liquid/water solution: a neutron reflectometry study. , 2014, The journal of physical chemistry. B.
[93] C. Vélez,et al. Imidazolium-derived ionic salts induce inhibition of cancerous cell growth through apoptosis , 2014 .
[94] G. E. Atilla‐Gokcumen,et al. Lipids in cell biology: how can we understand them better? , 2014, Molecular biology of the cell.
[95] Rumiana Dimova,et al. Recent developments in the field of bending rigidity measurements on membranes. , 2014, Advances in colloid and interface science.
[96] B. Mokhtarani,et al. Toxicity of various kinds of ionic liquids towards the cell growth and end product formation of the probiotic strain, Propionibacterium freudenreichii , 2014 .
[97] S. Malhotra,et al. Toxicity of ionic liquids to Clostridium sp. and effects on uranium biosorption. , 2014, Journal of hazardous materials.
[98] S. Kuwabata,et al. The Effect of Hydrophilic Ionic Liquids 1-Ethyl-3-Methylimidazolium Lactate and Choline Lactate on Lipid Vesicle Fusion , 2013, PloS one.
[99] S. Walker,et al. Wall teichoic acids of gram-positive bacteria. , 2013, Annual review of microbiology.
[100] B. He,et al. Antimicrobial Ionic Liquids with Fumarate Anion , 2013 .
[101] M. Zacharias,et al. Transformations in plasma membranes of cancerous cells and resulting consequences for cation insertion studied with molecular dynamics. , 2013, Physical chemistry chemical physics : PCCP.
[102] D. Macfarlane,et al. Interaction of choline salts with artificial biological membranes: DSC studies elucidating cellular interactions. , 2013, Biochimica et biophysica acta.
[103] Jianji Wang,et al. Responses of the Antioxidant System in QGY‐7701 Cells to the Cytotoxicity and Apoptosis Induced by 1‐Octyl‐3‐methylimidazolium Chloride , 2013, Journal of biochemical and molecular toxicology.
[104] J. Nagle. Introductory lecture: basic quantities in model biomembranes. , 2013, Faraday discussions.
[105] Michael C. Kolios,et al. Investigating longitudinal changes in the mechanical properties of MCF-7 cells exposed to paclitaxol using particle tracking microrheology , 2013, Physics in medicine and biology.
[106] M. Rheinstädter,et al. Partitioning of ethanol into lipid membranes and its effect on fluidity and permeability as seen by X-ray and neutron scattering , 2012 .
[107] N. Byrne,et al. Enhanced stabilization of the Tobacco mosaic virus using protic ionic liquids. , 2012, Physical chemistry chemical physics : PCCP.
[108] Sun Min Kim,et al. Elucidation of molecular interactions between lipid membranes and ionic liquids using model cell membranes , 2012 .
[109] Zbigniew Stachura,et al. Cancer cell detection in tissue sections using AFM. , 2012, Archives of biochemistry and biophysics.
[110] J. Tiller,et al. Antimicrobial Polymers in Solution and on Surfaces: Overview and Functional Principles , 2012 .
[111] Kai Simons,et al. Cell membranes: the lipid perspective. , 2011, Structure.
[112] Y. Nie,et al. Toxicity and Antimicrobial Activities of Ionic Liquids with Halogen Anion , 2011 .
[113] Y. Pommier,et al. Biological evaluation of imidazolium- and ammonium-based salts as HIV-1 integrase inhibitors , 2011 .
[114] J. Keasling,et al. Impact of ionic liquid pretreated plant biomass on Saccharomyces cerevisiae growth and biofuel production , 2011 .
[115] C. Lorenz,et al. On the hydration of the phosphocholine headgroup in aqueous solution. , 2010, The Journal of chemical physics.
[116] K. Materna,et al. Multifunctional long-alkyl-chain quaternary ammonium azolate based ionic liquids , 2010 .
[117] S. Gorman,et al. Antimicrobial and antibiofilm activities of 1-alkylquinolinium bromide ionic liquids , 2010 .
[118] M. D. Del Pópolo,et al. Interaction of room temperature ionic liquid solutions with a cholesterol bilayer. , 2009, The journal of physical chemistry. B.
[119] J. Prausnitz,et al. In vitro cytotoxicities of ionic liquids: Effect of cation rings, functional groups, and anions , 2009, Environmental toxicology.
[120] Maria Forsyth,et al. On the concept of ionicity in ionic liquids. , 2009, Physical chemistry chemical physics : PCCP.
[121] K. R. Seddon,et al. Exploring fungal activity in the presence of ionic liquids , 2009 .
[122] S. Gorman,et al. Antibiofilm activities of 1-alkyl-3-methylimidazolium chloride ionic liquids , 2009 .
[123] K. Evans. Supported phospholipid membrane interactions with 1-butyl-3-methylimidazolium chloride. , 2008, The journal of physical chemistry. B.
[124] S. Magazù,et al. Mean square displacement evaluation by elastic neutron scattering self-distribution function. , 2008, Physical review. E, Statistical, nonlinear, and soft matter physics.
[125] K. Evans. Supported Phospholipid Bilayer Interaction with Components Found in Typical Room-Temperature Ionic Liquids – a QCM-D and AFM Study , 2008, International journal of molecular sciences.
[126] S. Chizhik,et al. Atomic force microscopy probing of cell elasticity. , 2007, Micron.
[127] Zhaofu Fei,et al. Cytotoxicity of ionic liquids and precursor compounds towards human cell line HeLa , 2007 .
[128] Christian Capello,et al. What is a green solvent? A comprehensive framework for the environmental assessment of solvents , 2007 .
[129] J. Pernak,et al. Choline-derivative-based ionic liquids. , 2007, Chemistry.
[130] C. Afonso,et al. Toxicological Evaluation of Ionic Liquids: Effect of Ionic Liquids on Human Colon Carcinoma HT-29 and CaCo-2 Cell Lines , 2010 .
[131] Daniel A Fletcher,et al. Chemotherapy exposure increases leukemia cell stiffness. , 2007, Blood.
[132] Gadi Rothenberg,et al. Anion and cation effects on imidazolium salt melting points: a descriptor modelling study. , 2007, Chemphyschem : a European journal of chemical physics and physical chemistry.
[133] Tohru Inoue,et al. Surface adsorption and micelle formation of surface active ionic liquids in aqueous solution. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[134] Dongbing Zhao,et al. Toxicity of Ionic Liquids , 2007 .
[135] R. Alberty. Changes in binding of hydrogen ions in enzyme-catalyzed reactions. , 2007, Biophysical chemistry.
[136] K. Evans. Room-temperature ionic liquid cations act as short-chain surfactants and disintegrate a phospholipid bilayer , 2006 .
[137] Steve W. Smye,et al. Membrane electroporation theories: a review , 2006, Medical and Biological Engineering and Computing.
[138] A. Latała,et al. Marine toxicity assessment of imidazolium ionic liquids: acute effects on the Baltic algae Oocystis submarina and Cyclotella meneghiniana. , 2005, Aquatic toxicology.
[139] Charles F. Kulpa,et al. Toxicity and antimicrobial activity of imidazolium and pyridinium ionic liquids , 2005 .
[140] K. Hungerbühler,et al. Environmental assessment of chemicals: methods and application to a case study of organic solvents , 2004 .
[141] G. Lindblom,et al. NMR Studies of lipid lateral diffusion in the DMPC/gramicidin D/water system: peptide aggregation and obstruction effects. , 2004, Biophysical journal.
[142] Kazuo Kojima,et al. Evaluation of thermodynamic consistency of isobaric and isothermal binary vapor–liquid equilibrium data using the PAI test , 2004 .
[143] Douglas R. MacFarlane,et al. Ionic Liquids—An Overview , 2004 .
[144] J. Pernak,et al. Synthesis and anti-microbial activities of choline-like quaternary ammonium chlorides. , 2003, European journal of medicinal chemistry.
[145] C. Lim,et al. Mechanics of the human red blood cell deformed by optical tweezers , 2003 .
[146] Robin D. Rogers,et al. Ionic Liquids--Solvents of the Future? , 2003, Science.
[147] H. Sinn,et al. Collective chain dynamics in lipid bilayers by inelastic x-ray scattering. , 2003, Biophysical journal.
[148] M. Sanyal,et al. Ordering and growth of Langmuir–Blodgett films: X-ray scattering studies , 2002 .
[149] Alexander M. Klibanov,et al. Designing surfaces that kill bacteria on contact , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[150] S. Handy,et al. Organic synthesis in ionic liquids: the Stille coupling. , 2001, Organic letters.
[151] K. R. Seddon,et al. Ionic liquids. Green solvents for the future , 2000 .
[152] Gerhard Gompper,et al. Mobility and elasticity of self-assembled membranes. , 1999 .
[153] G. Bodenhausen,et al. Solid-state NMR for the study of membrane systems: the use of anisotropic interactions. , 1998, Biochimie.
[154] David T. Jones. Do transmembrane protein superfolds exist? , 1998, FEBS letters.
[155] K. R. Seddon. Ionic Liquids for Clean Technology , 1997 .
[156] A. Zilman,et al. Undulations and Dynamic Structure Factor of Membranes. , 1996, Physical review letters.
[157] P. Yeagle. Cholesterol and the cell membrane. , 1985, Biochimica et biophysica acta.
[158] I. Zs.-Nagy. The role of membrane structure and function in cellular aging: A review , 1979, Mechanisms of Ageing and Development.
[159] R. M. Williams,et al. Physical studies of phospholipids. VI. Thermotropic and lyotropic mesomorphism of some 1,2-diacyl-phosphatidylcholines (lecithins) , 1967 .
[160] L. G. Parratt. Surface Studies of Solids by Total Reflection of X-Rays , 1954 .
[161] R. Kalb,et al. Liquid-liquid extraction of viral particles with ionic liquids , 2021, Separation and Purification Technology.
[162] Wei Zhang,et al. Antibacterial activities of N-alkyl imidazolium-based poly(ionic liquid) nanoparticles , 2019, Polymer Chemistry.
[163] Wenxiao Zhang,et al. AFM-detected apoptosis of hepatocellular carcinoma cells induced by American ginseng root water extract. , 2018, Micron.
[164] Jared L. Anderson,et al. Ionic liquids: solvents and sorbents in sample preparation. , 2018, Journal of separation science.
[165] M. El-Harbawi,et al. Synthesis and anti-microbial potencies of 1-(2-hydroxyethyl)-3-alkylimidazolium chloride ionic liquids: microbial viabilities at different ionic liquids concentrations. , 2013, Ecotoxicology and environmental safety.
[166] S. Magazù,et al. Motion characterization by self-distribution-function procedure. , 2010, Biochimica et biophysica acta.
[167] G. Voth,et al. IONIC LIQUIDS , 2004 .
[168] Metin Tolan,et al. X-Ray Scattering from Soft-Matter Thin Films: Materials Science and Basic Research , 1998 .
[169] E. Freire. Differential scanning calorimetry. , 1995, Methods in molecular biology.
[170] J. Tocanne,et al. Lateral diffusion of lipids in model and natural membranes. , 1994, Progress in lipid research.
[171] J. Sturtevant. Biochemical Applications of Differential Scanning Calorimetry , 1987 .
[172] F. Szoka,et al. Comparative properties and methods of preparation of lipid vesicles (liposomes). , 1980, Annual review of biophysics and bioengineering.