Academic literature on the topic 'Phospholipid bilayers'

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Journal articles on the topic "Phospholipid bilayers"

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SHAHINIAN, ARAM A., ARMEN H. POGHOSYAN, and HAMLET G. BADALYAN. "COMPUTER SIMULATION OF STRUCTURAL CHANGES IN PHOSPHOLIPID BILAYERS." International Journal of Modern Physics C 11, no. 01 (2000): 153–58. http://dx.doi.org/10.1142/s0129183100000134.

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Using molecular-scale computer simulation, we show that structural changes may take place in phospholipid bilayers in an aqueous solution as we vary the relative concentration of water to phospholipids, the bilayer thickness, the inclination angle of the choline, dipole molecular fragment with respect to the bilayer surface, and the conformation of hydrocarbon chains of phospholipid in the hydrophobic volume of the bilayer. It is shown that in the hydrophobic volume of the bilayer, an interpenetration of the hydrocarbon chains located on opposite sides of the phospholipid bilayer takes place.
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PLASENCIA, Ines, Luis RIVAS, Kevin M. W. KEOUGH, Derek MARSH, and Jesús PÉREZ-GIL. "The N-terminal segment of pulmonary surfactant lipopeptide SP-C has intrinsic propensity to interact with and perturb phospholipid bilayers." Biochemical Journal 377, no. 1 (2004): 183–93. http://dx.doi.org/10.1042/bj20030815.

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In the present study, 13-residue peptides with sequences corresponding to the native N-terminal segment of pulmonary SP-C (surfactant protein C) have been synthesized and their interaction with phospholipid bilayers characterized. The peptides are soluble in aqueous media but associate spontaneously with bilayers composed of either zwitterionic (phosphatidylcholine) or anionic (phosphatidylglycerol) phospholipids. The peptides show higher affinity for anionic than for zwitterionic membranes. Interaction of the peptides with both zwitterionic and anionic membranes promotes phospholipid vesicle
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Petelska, Aneta D., Katarzyna Kazimierska-Drobny, Katarzyna Janicka, Tomasz Majewski, and Wiesław Urbaniak. "Understanding the Unique Role of Phospholipids in the Lubrication of Natural Joints: An Interfacial Tension Study." Coatings 9, no. 4 (2019): 264. http://dx.doi.org/10.3390/coatings9040264.

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Some solid lubricants are characterized by a layered structure with weak (van der Waals) inter-interlayer forces which allow for easy, low-strength shearing. Solid lubricants in natural lubrication are characterized by phospholipid bilayers in the articular joints and phospholipid lamellar phases in synovial fluid. The influence of the acid–base properties of the phospholipid bilayer on the wettability and properties of the surface have been explained by studying the interfacial tension of spherical lipid bilayers based on a model membrane. In this paper, we show that the phospholipid multi-bi
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Turnheim, Klaus, Johannes Gruber, Christoph Wachter, and Valentina Ruiz-Gutiérrez. "Membrane phospholipid composition affects function of potassium channels from rabbit colon epithelium." American Journal of Physiology-Cell Physiology 277, no. 1 (1999): C83—C90. http://dx.doi.org/10.1152/ajpcell.1999.277.1.c83.

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We tested the effects of membrane phospholipids on the function of high-conductance, Ca2+-activated K+ channels from the basolateral cell membrane of rabbit distal colon epithelium by reconstituting these channels into planar bilayers consisting of different 1:1 mixtures of phosphatidylethanolamine (PE), phosphatidylcholine (PC), phosphatidylserine (PS), and phosphatidylinositol (PI). At low ambient K+ concentrations single-channel conductance is higher in PE/PS and PE/PI bilayers than in PE/PC bilayers. At high K+concentrations this difference in channel conductance is abolished. Introducing
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Chapman, D. "Phospholipid bilayers." FEBS Letters 238, no. 1 (1988): 215. http://dx.doi.org/10.1016/0014-5793(88)80259-x.

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Suwalsky, M., M. A. Espinoza, M. Bagnara, and C. P. Sotomayor. "X-Ray and Fluorescence Studies on Phospholipid Bilayers. IX. Interactions with Pentachlorophenol." Zeitschrift für Naturforschung C 45, no. 3-4 (1990): 265–72. http://dx.doi.org/10.1515/znc-1990-3-421.

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Abstract Pentachlorophenol (PCP) is a widely used and highly toxic fungicide. Its toxicity is mainly expressed at the cell membrane level. It is, therefore, of interest to test its ability to alter the lipid bilayer organization. The present study was performed by X-ray diffraction techniques on dimyristoylphosphatidylethanolamine (DMPE) and dimyristoylphosphatidylcholine (DMPC) bilayers and by fluorescence on DMPC liposomes. These two phospholipids are respectively found at the inner and outer monolayers of human erythrocyte membranes. Each type of phospholipid was made to interact with diffe
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Solís-Calero, Christian, Joaquín Ortega-Castro, Juan Frau, and Francisco Muñoz. "Nonenzymatic Reactions above Phospholipid Surfaces of Biological Membranes: Reactivity of Phospholipids and Their Oxidation Derivatives." Oxidative Medicine and Cellular Longevity 2015 (2015): 1–22. http://dx.doi.org/10.1155/2015/319505.

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Phospholipids play multiple and essential roles in cells, as components of biological membranes. Although phospholipid bilayers provide the supporting matrix and surface for many enzymatic reactions, their inherent reactivity and possible catalytic role have not been highlighted. As other biomolecules, phospholipids are frequent targets of nonenzymatic modifications by reactive substances including oxidants and glycating agents which conduct to the formation of advanced lipoxidation end products (ALEs) and advanced glycation end products (AGEs). There are some theoretical studies about the mec
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Dewa, Takehisa, K. Yoshida, M. Sugimoto, R. Sugiura, and M. Nango. "Organization of Photosynthetic Antenna Complex in Lipid Bilayers." Advanced Materials Research 11-12 (February 2006): 623–26. http://dx.doi.org/10.4028/www.scientific.net/amr.11-12.623.

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Bacterial photosynthetic antenna complexes are composed of α-helical hydrophobic polypeptides and pigments (e.g., bacteriochlorophyll a). We report here self-assembling properties of an engineered hydrophobic polypeptide with zinc-substituted bacteriochlorophyll a ([Zn]-BChl a) in various lipid bilayer to investigate the effect of lipid species on the self-assembling properties. When the polypeptide and [Zn]-BChl a were mixed in surfactant solution (n-octyl β-D-glucopyranoside: OG) at 25°C, the absorption band [Zn]-BChl a was red-shifted from 770 to 812 nm, that is assignable to quasi-dimeric
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Tamm, L. K., and H. M. McConnell. "Supported phospholipid bilayers." Biophysical Journal 47, no. 1 (1985): 105–13. http://dx.doi.org/10.1016/s0006-3495(85)83882-0.

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Carlson, Joseph W., Timothy Bayburt, and Stephen G. Sligar. "Nanopatterning Phospholipid Bilayers." Langmuir 16, no. 8 (2000): 3927–31. http://dx.doi.org/10.1021/la990860x.

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Dissertations / Theses on the topic "Phospholipid bilayers"

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Johnson, Benjamin Robert Grant. "Biomimetic scaffolds for phospholipid bilayers." Thesis, University of Leeds, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.417752.

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Ries, Ryan Scott. "Molecular thin films phospholipid bilayers and biosensors /." Diss., Restricted to subscribing institutions, 2004. http://proquest.umi.com/pqdweb?did=795970741&sid=1&Fmt=2&clientId=1564&RQT=309&VName=PQD.

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Goodchild, James Andrew. "Interleaflet and substrate coupling in phospholipid bilayers." Thesis, University of Leeds, 2018. http://etheses.whiterose.ac.uk/22739/.

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Since the existence of lateral organisation in the cell membrane was first proposed by Erwin London in 1997, much has been discovered about the complex behaviour of lipid bilayers. Whilst some membrane proteins involved in signalling are almost as mobile as lipid molecules, such as the photoreceptor protein rhodopsin, others such as the peripheral glycoprotein fibronectin are virtually static. This has been linked to the existence of phase separated micro-domains, sometimes known as lipid rafts, in model systems. However, there are still many open questions, including the effect of asymmetry a
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Graham, Ian Stanley. "Experimental and theoretical investigations of charged phospholipid bilayers." Thesis, McGill University, 1987. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=75664.

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Lipid systems containing charged species are examined by both experiment and theory. Experimental studies of the mixing of phosphatidylcholine or phosphatidylethanolamine with phosphatidic acid show that calcium induces fast ($ leq$1s) phase separation of these otherwise miscible systems, and that this can occur in an isolated bilayer. Ionogenic behaviour is theoretically investigated using a new electrolyte model which explicitly includes both the solvent and particle sizes, and a binding model which uses Guggenheim combinatorics to treat non 1-1 binding stoichiometries. This work predicts a
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Ross, Eric E. "Stabilized supported lipid bilayers from polymerizable phospholipid monomers." Diss., The University of Arizona, 2003. http://hdl.handle.net/10150/280498.

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Lipid films are often described as potential surface coatings for the 'biofunctionalization' of solid interfaces because of the ability to support tethered and integrated receptor protein activity and their ability to suppress the non-specific adsorption of soluble proteins. One significant shortcoming of lipid assemblies is the inherent lack of stability required for many technological applications because the non-covalent forces between the constituent lipids are relatively weak. In this work, polymerized, supported lipid bilayers ((poly)PSLBs) composed of diene functionalized lipids have be
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Barfoot, Richard Jonathan. "Minimal F-actin cytoskeletal systems for phospholipid bilayers." Thesis, University of Leeds, 2008. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.496553.

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Roscoe, Patricia Anne. "The binding of C2 domains to phospholipid bilayers." Thesis, University of Southampton, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.416909.

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Ng, Sarah S. "Rate dependent rupture of solid-supported phospholipid bilayers." Thesis, Massachusetts Institute of Technology, 2006. http://hdl.handle.net/1721.1/35058.

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Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 2006.<br>Includes bibliographical references (leaves 29-31).<br>An experimental study on solid-supported phospholipid bilayers was performed in order to investigate rate-dependent behavior of force and probability of bilayer rupture. 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) solid-supported lipid bilayers were created on mica using vesicle fusion technique and then ruptured normal to the surface using a silicon nitride cantilever tip (radius#80nm). High resolution force spectroscopy
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Altawallbeh, Ghaith. "Endothelial Nitric Oxide Synthase on Nanoscale Phospholipid Bilayers." Cleveland State University / OhioLINK, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=csu1480640206186696.

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Burley, Andrew. "Effects of composition on the properties of phospholipid bilayers." Thesis, University of Birmingham, 2013. http://etheses.bham.ac.uk//id/eprint/4055/.

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The composition of biological phospholipid membranes has a significant effect on many processes which is as yet poorly understood. Dimyristoyl-phosphatidyl-serine (DMPS) and dimystristoyl-phosphatidyl-ethanolamine (DMPE) are commonly found in cell membranes. The properties of supported bilayers composed of mixtures of these two phospholipids were investigated using electrochemical techniques, infrared spectroscopy and neutron reflectometry. Polarisation-modulated infrared reflectance spectroscopy investigations suggest that the lipid tail groups adopt one conform at 20% DMPS and a different co
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Books on the topic "Phospholipid bilayers"

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Derek, Marsh, ed. Phospholipid bilayers: Physical principles and models. Wiley, 1987.

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DiTizio, Valerio. Characterization of the effects of paclitaxel on the physico-chemical properties of phospholipid bilayers. National Library of Canada, 1995.

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Marsh, Derek. CRC handbook of lipid bilayers. CRC Press, 1990.

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Gibson, George A. The application of förster resonant energy transfer to the aggregation and fusion of phospholipid bilayers. 1986.

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Crowell, Kevin James. Solid state nuclear magnetic resonance studies of select electrolyte interactions with phospholipid bilayer membranes in various model membrane systems. 2002.

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Book chapters on the topic "Phospholipid bilayers"

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Feller, Scott. "Molecular Dynamics Simulation of Phospholipid Bilayers." In Lipid Bilayers. Springer Berlin Heidelberg, 2001. http://dx.doi.org/10.1007/978-3-662-04496-4_4.

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Matsuki, Nobutake Tamai Masaki Goto and Hito. "Phase Separation in Phospholipid Bilayers Induced by Cholesterol." In Encyclopedia of Biocolloid and Biointerface Science 2V Set. John Wiley & Sons, Inc., 2016. http://dx.doi.org/10.1002/9781119075691.ch68.

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Zhang, Y. B., Y. Y. Chen, Z. J. Ding, C. X. Wang, H. Huang, and G. Jin. "Chitosan cushioned air stable single PEGylated phospholipid bilayers." In IFMBE Proceedings. Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-03887-7_46.

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della Sala, Flavio, David P. Tilly, and Simon J. Webb. "Approaches Towards Synthetic Signal Transduction in Phospholipid Bilayers." In New Trends in Macromolecular and Supramolecular Chemistry for Biological Applications. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-57456-7_1.

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Bradshaw, J. P., K. C. Duff, P. J. Gilchrist, and A. M. Saxena. "Neutron Diffraction Studies of Amphipathic Helices in Phospholipid Bilayers." In Neutrons in Biology. Springer US, 1996. http://dx.doi.org/10.1007/978-1-4615-5847-7_17.

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Giehl, A., E. Müller, A. Blume, K. Sandhoff, and G. Schwarzmann. "FT-IR-ATR Spectroscopy of Oriented Phospholipid-Ganglioside Bilayers." In Spectroscopy of Biological Molecules. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-011-0371-8_169.

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Dotson, Rachel J., and Sally C. Pias. "Reduced Oxygen Permeability upon Protein Incorporation Within Phospholipid Bilayers." In Advances in Experimental Medicine and Biology. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-91287-5_65.

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Dolainsky, C., T. Köchy, C. Naumann, T. Brumm, S. J. Johnson, and T. M. Bayerl. "Structure and Dynamics of Planar and Spherical Supported Phospholipid Bilayers." In Springer Proceedings in Physics. Springer Berlin Heidelberg, 1992. http://dx.doi.org/10.1007/978-3-642-84763-9_6.

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Dibble, Andrew R. G., Mark D. Yeager, and Gerald W. Feigenson. "Partitioning of Gramicidin A’ Between Coexisting Phases within Phospholipid Bilayers." In Cell and Model Membrane Interactions. Springer US, 1991. http://dx.doi.org/10.1007/978-1-4615-3854-7_2.

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Suwalsky, Mario. "Structural Studies on Phospholipid Bilayers by X-Ray Fiber Diffraction Methods." In Physical Properties of Biological Membranes and Their Functional Implications. Springer US, 1988. http://dx.doi.org/10.1007/978-1-4613-0935-2_2.

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Conference papers on the topic "Phospholipid bilayers"

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Takahashi, Hiroshi. "On Hydration Repulsive Forces between Various Phospholipid Bilayers." In Proceedings of the 12th Asia Pacific Physics Conference (APPC12). Journal of the Physical Society of Japan, 2014. http://dx.doi.org/10.7566/jpscp.1.012041.

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Ionescu, Alina, Maria Mernea, Ionut Vasile, et al. "Study of supported phospholipid bilayers by THz-TDS." In SPIE Optical Engineering + Applications, edited by Manijeh Razeghi, Alexei N. Baranov, Henry O. Everitt, John M. Zavada, and Tariq Manzur. SPIE, 2012. http://dx.doi.org/10.1117/12.981603.

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Maroo, Shalabh C., H. Jeremy Cho, and Evelyn N. Wang. "Wetting Characteristics of a Phospholipid Membrane Using Molecular Dynamics Simulation." In ASME 2010 International Mechanical Engineering Congress and Exposition. ASMEDC, 2010. http://dx.doi.org/10.1115/imece2010-40671.

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Phospholipid molecules form bilayers in water due to their hydrophilic heads and hydrophobic tails. The electroporation of lipid bilayers (cell membranes) is a phenomenon where membranes are permeabilized by the application of electric fields. At some critical voltage, a dramatic increase in conductivity across the membranes is observed. This phenomenon is widely used in DNA and RNA transfer as well as targeted drug delivery systems. However, the membrane ruptures with a continuous increase in voltage where interaction between lipid and water molecules is an important factor in electroporation
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Burke, Thomas G., Henryk M. Malak, and James H. Doroshow. "Fluorescence lifetimes of anthracycline drugs in phospholipid bilayers determined by frequency-domain fluorometry." In OE/LASE '90, 14-19 Jan., Los Angeles, CA, edited by Joseph R. Lakowicz. SPIE, 1990. http://dx.doi.org/10.1117/12.17743.

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Mallavia, R., F. J. Paya, A. Salinas, A. Estepa, and C. R. Mateo. "Toward new fluorescent bioinspired sensors: interaction of poly(fluorene-phenylene) with phospholipid bilayers." In Microtechnologies for the New Millennium, edited by Paolo Arena, Ángel Rodríguez-Vázquez, and Gustavo Liñán-Cembrano. SPIE, 2007. http://dx.doi.org/10.1117/12.721505.

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França, Erick Guimarães, Waleska Renata Pereira Costa, Eduardo de Faria Franca, and Carlos Alberto de Oliveira. "COMPORTAMENTO DE FTALOCIANINA LIPOSSOMAL NO CONTEXTO DA DINÂMICA MOLECULAR." In VIII Simpósio de Estrutura Eletrônica e Dinâmica Molecular. Universidade de Brasília, 2020. http://dx.doi.org/10.21826/viiiseedmol2020173.

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Since the early 1990s, hydrated phospholipid bilayers have been studied using computational modeling methods. In this context, the simulation of the behavior of lipid biomembranes is a promising area, not only for its applications in the understanding of cell membranes, but also for its application to several drug delivery systems widely used and studied during the last decades. Is this worj performed computational simulations of lipid membranes added or not with cholesterol and zinc phthalocyanine, to obtain membrane density values, zinc phthalocyanine side diffusion, system and drug atomic m
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Anglin, Timothy C., Krystal Brown, John C. Conboy, P. M. Champion, and L. D. Ziegler. "Creation and Relaxation of Phospholipid Compositional Asymmetry in Lipid Bilayers Examined by Sum-Frequency Vibrational Spectroscopy." In XXII INTERNATIONAL CONFERENCE ON RAMAN SPECTROSCOPY. AIP, 2010. http://dx.doi.org/10.1063/1.3482379.

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Kurita, Hirofumi, Tatsuya Takata, Hachiro Yasuda, Kazunori Takashima, and Akira Mizuno. "Fluorescent observation of individual DNA molecules on phospholipid bilayers and its application to analysis of DNA-protein interactions." In 2009 International Symposium on Micro-NanoMechatronics and Human Science (MHS). IEEE, 2009. http://dx.doi.org/10.1109/mhs.2009.5351907.

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Makhoul-Mansour, Michelle M., and Eric C. Freeman. "Photo-Triggered Soft Materials With Differentiated Diffusive Pathways." In ASME 2019 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/smasis2019-5525.

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Abstract Controlled diffusive transport between regions within a compartmentalized structure is an essential feature of cellular-inspired materials. Using the droplet interface bilayer (DIB) technique, biomolecular soft materials can be constructed in an oil medium by connecting multiple lipid-coated microdroplets together through interfacial bilayers. While traditionally achieved through the incorporation of pore forming toxins (PFTs), signal propagation within DIB assemblies can be remotely controlled through the integration of photopolymerizable phospholipids (23:2 DiynePC) into the aqueous
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Nguyen, Mary-Anne, Graham Taylor, and Stephen A. Sarles. "A Microfluidic Assembly and Simultaneous Interrogation of Networks of Asymmetric Biomimetic Membranes." In ASME 2017 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. American Society of Mechanical Engineers, 2017. http://dx.doi.org/10.1115/smasis2017-3878.

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In this study, we utilize a novel microfluidic device to perform simultaneous electrical interrogation of an array of droplet interface bilayers (DIB) that feature asymmetric phospholipid leaflet compositions. While asymmetry is vital to many cellular functions, it is has received very little attention in membrane-based engineered material systems for sensing, energy conversion, or actuation. This gap is due to challenges in constructing and interrogating networks of asymmetric membranes, limiting our understanding of how lipid asymmetry affects membrane active peptides, and vice versa. Our sy
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