Mashaghi et al. Hydration strongly affects the molecular and electronic structure of membrane phospholipids. 136, 114709 (2012)"The Journal of Chemical Physics". Archived from the original on 15 May 2016. Retrieved 17 May 2012.
Alireza Mashaghi et al., Hydration strongly affects the molecular and electronic structure of membrane phospholipids. J. Chem. Phys. 136, 114709 (2012) "The Journal of Chemical Physics". Archived from the original on 15 May 2016. Retrieved 17 May 2012.
Mashaghi et al. Hydration strongly affects the molecular and electronic structure of membrane phospholipids. 136, 114709 (2012)"The Journal of Chemical Physics". Archived from the original on 15 May 2016. Retrieved 17 May 2012.
Alireza Mashaghi et al., Hydration strongly affects the molecular and electronic structure of membrane phospholipids. J. Chem. Phys. 136, 114709 (2012) "The Journal of Chemical Physics". Archived from the original on 15 May 2016. Retrieved 17 May 2012.
Andersen, Olaf S.; Koeppe, II, Roger E. (June 2007). "Bilayer Thickness and Membrane Protein Function: An Energetic Perspective". Annual Review of Biophysics and Biomolecular Structure. 36 (1): 107–130. doi:10.1146/annurev.biophys.36.040306.132643. PMID17263662. S2CID6521535.
Skarjune, Robert; Oldfield, Eric (22 June 1982). "Physical studies of cell surface and cell membrane structure. Deuterium nuclear magnetic resonance studies of N-palmitoylglucosylceramide (cerebroside) head group structure". Biochemistry. 21 (13): 3154–3160. doi:10.1021/bi00256a019. ISSN0006-2960.
Trauble H, Haynes DH (1971). "The volume change in lipid bilayer lamellae at the crystalline-liquid crystalline phase transition". Chem. Phys. Lipids. 7 (4): 324–35. doi:10.1016/0009-3084(71)90010-7.
Bretscher MS (1 March 1972). "Asymmetrical Lipid Bilayer Structure for Biological Membranes". Nature New Biology. 236 (61): 11–12. doi:10.1038/newbio236011a0. PMID4502419.
Verkleij AJ, Zwaal RF, Roelofsen B, Comfurius P, Kastelijn D, van Deenen LL (October 1973). "The asymmetric distribution of phospholipids in the human red cell membrane. A combined study using phospholipases and freeze-etch electron microscopy". Biochim. Biophys. Acta. 323 (2): 178–93. doi:10.1016/0005-2736(73)90143-0. PMID4356540.
Kornberg RD, McConnell HM (March 1971). "Inside-outside transitions of phospholipids in vesicle membranes". Biochemistry. 10 (7): 1111–20. doi:10.1021/bi00783a003. PMID4324203.
Litman BJ (July 1974). "Determination of molecular asymmetry in the phosphatidylethanolamine surface distribution in mixed phospholipid vesicles". Biochemistry. 13 (14): 2844–8. doi:10.1021/bi00711a010. PMID4407872.
Crane JM, Kiessling V, Tamm LK (February 2005). "Measuring lipid asymmetry in planar supported bilayers by fluorescence interference contrast microscopy". Langmuir. 21 (4): 1377–88. doi:10.1021/la047654w. PMID15697284.
Kalb E, Frey S, Tamm LK (January 1992). "Formation of supported planar bilayers by fusion of vesicles to supported phospholipid monolayers". Biochim. Biophys. Acta. 1103 (2): 307–16. doi:10.1016/0005-2736(92)90101-Q. PMID1311950.
Ko, Du Young; Patel, Madhumita; Jung, Bo Kyoeng; Park, Jin Hye; Jeong, Byeongmoon (14 December 2015). "Phosphorylcholine-Based Zwitterionic Biocompatible Thermogel". Biomacromolecules. 16 (12): 3853–3862. doi:10.1021/acs.biomac.5b01169.
Crane, Jonathan M.; Tamm, Lukas K. (2007). "Fluorescence Microscopy to Study Domains in Supported Lipid Bilayers". Methods in Membrane Lipids. Vol. 400. Totowa, NJ: Humana Press. p. 481–488. doi:10.1007/978-1-59745-519-0_32. ISBN978-1-58829-662-7.
Richter RP, Brisson A (2003). "Characterization of lipid bilayers and protein assemblies supported on rough surfaces by atomic force microscopy". Langmuir. 19 (5): 1632–40. doi:10.1021/la026427w. S2CID56532332.
Chakrabarti AC (1994). "Permeability of membranes to amino acids and modified amino acids: mechanisms involved in translocation". Amino Acids. 6 (3): 213–29. doi:10.1007/BF00813743. PMID11543596. S2CID24350029.
Xiang TX, Anderson BD (June 1994). "The relationship between permeant size and permeability in lipid bilayer membranes". J. Membr. Biol. 140 (2): 111–22. doi:10.1007/bf00232899. PMID7932645. S2CID20394005.
McIntosh TJ, Simon SA (2006). "Roles of Bilayer Material Properties in Function and Distribution of Membrane Proteins". Annu. Rev. Biophys. Biomol. Struct. 35 (1): 177–98. doi:10.1146/annurev.biophys.35.040405.102022. PMID16689633.
Weaver JC, Chizmadzhev YA (1996). "Theory of electroporation: A review". Bioelectrochemistry and Bioenergetics. 41 (2): 135–60. doi:10.1016/S0302-4598(96)05062-3.
Boris EH, Winterhalter M, Frederik PM, Vallner JJ, Lasic DD (1997). "Stealth liposomes: from theory to product". Advanced Drug Delivery Reviews. 24 (2–3): 165–77. doi:10.1016/S0169-409X(96)00456-5.
Maeda H, Sawa T, Konno T (July 2001). "Mechanism of tumor-targeted delivery of macromolecular drugs, including the EPR effect in solid tumor and clinical overview of the prototype polymeric drug SMANCS". J Control Release. 74 (1–3): 47–61. doi:10.1016/S0168-3659(01)00309-1. PMID11489482.
Lopes DE, Menezes DE, Kirchmeier MJ, Gagne JF (1999). "Cellular trafficking and cytotoxicity of anti-CD19-targeted liposomal doxorubicin in B lymphoma cells". Journal of Liposome Research. 9 (2): 199–228. doi:10.3109/08982109909024786.
Bermejo, M.; Avdeef, A.; Ruiz, A.; Nalda, R.; Ruell, J. A.; Tsinman, O.; González, I.; Fernández, C.; Sánchez, G.; Garrigues, T. M.; Merino, V. (2004). "PAMPA--a drug absorption in vitro model 7. Comparing rat in situ, Caco-2, and PAMPA permeability of fluoroquinolones". European Journal of Pharmaceutical Sciences. 21 (4): 429–41. doi:10.1016/j.ejps.2003.10.009. PMID14998573.
Avdeef, A.; Artursson, P.; Neuhoff, S.; Lazorova, L.; Gråsjö, J.; Tavelin, S. (2005). "Caco-2 permeability of weakly basic drugs predicted with the double-sink PAMPA pKa(flux) method". European Journal of Pharmaceutical Sciences. 24 (4): 333–49. doi:10.1016/j.ejps.2004.11.011. PMID15734300.
Avdeef, A.; Nielsen, P. E.; Tsinman, O. (2004). "PAMPA--a drug absorption in vitro model 11. Matching the in vivo unstirred water layer thickness by individual-well stirring in microtitre plates". European Journal of Pharmaceutical Sciences. 22 (5): 365–74. doi:10.1016/j.ejps.2004.04.009. PMID15265506.
Sinkó, B.; Kökösi, J.; Avdeef, A.; Takács-Novák, K. (2009). "A PAMPA study of the permeability-enhancing effect of new ceramide analogues". Chemistry & Biodiversity. 6 (11): 1867–74. doi:10.1002/cbdv.200900149. PMID19937821. S2CID27395246.
Dooren LJ, Wiedemann LR (1986). "On bimolecular layers of lipids on the chromocytes of the blood". Journal of European Journal of Pediatrics. 145 (5): 329. doi:10.1007/BF00439232. PMID3539619. S2CID36842138.
Sjöstrand FS, Andersson-Cedergren E, Dewey MM (April 1958). "The ultrastructure of the intercalated discs of frog, mouse and guinea pig cardiac muscle". J. Ultrastruct. Res. 1 (3): 271–87. doi:10.1016/S0022-5320(58)80008-8. PMID13550367.
Bangham, A. D.; Horne, R. W. (1964). "Negative Staining of Phospholipids and Their Structural Modification by Surface-Active Agents As Observed in the Electron Microscope". Journal of Molecular Biology. 8 (5): 660–668. doi:10.1016/S0022-2836(64)80115-7. PMID14187392.
Kunitake T (1977). "A totally synthetic bilayer membrane". J. Am. Chem. Soc. 99 (11): 3860–3861. doi:10.1021/ja00453a066.
Andersen, Olaf S.; Koeppe, II, Roger E. (June 2007). "Bilayer Thickness and Membrane Protein Function: An Energetic Perspective". Annual Review of Biophysics and Biomolecular Structure. 36 (1): 107–130. doi:10.1146/annurev.biophys.36.040306.132643. PMID17263662. S2CID6521535.
Bretscher MS (1 March 1972). "Asymmetrical Lipid Bilayer Structure for Biological Membranes". Nature New Biology. 236 (61): 11–12. doi:10.1038/newbio236011a0. PMID4502419.
Verkleij AJ, Zwaal RF, Roelofsen B, Comfurius P, Kastelijn D, van Deenen LL (October 1973). "The asymmetric distribution of phospholipids in the human red cell membrane. A combined study using phospholipases and freeze-etch electron microscopy". Biochim. Biophys. Acta. 323 (2): 178–93. doi:10.1016/0005-2736(73)90143-0. PMID4356540.
Kornberg RD, McConnell HM (March 1971). "Inside-outside transitions of phospholipids in vesicle membranes". Biochemistry. 10 (7): 1111–20. doi:10.1021/bi00783a003. PMID4324203.
Litman BJ (July 1974). "Determination of molecular asymmetry in the phosphatidylethanolamine surface distribution in mixed phospholipid vesicles". Biochemistry. 13 (14): 2844–8. doi:10.1021/bi00711a010. PMID4407872.
Crane JM, Kiessling V, Tamm LK (February 2005). "Measuring lipid asymmetry in planar supported bilayers by fluorescence interference contrast microscopy". Langmuir. 21 (4): 1377–88. doi:10.1021/la047654w. PMID15697284.
Kalb E, Frey S, Tamm LK (January 1992). "Formation of supported planar bilayers by fusion of vesicles to supported phospholipid monolayers". Biochim. Biophys. Acta. 1103 (2): 307–16. doi:10.1016/0005-2736(92)90101-Q. PMID1311950.
Chakrabarti AC (1994). "Permeability of membranes to amino acids and modified amino acids: mechanisms involved in translocation". Amino Acids. 6 (3): 213–29. doi:10.1007/BF00813743. PMID11543596. S2CID24350029.
Xiang TX, Anderson BD (June 1994). "The relationship between permeant size and permeability in lipid bilayer membranes". J. Membr. Biol. 140 (2): 111–22. doi:10.1007/bf00232899. PMID7932645. S2CID20394005.
McIntosh TJ, Simon SA (2006). "Roles of Bilayer Material Properties in Function and Distribution of Membrane Proteins". Annu. Rev. Biophys. Biomol. Struct. 35 (1): 177–98. doi:10.1146/annurev.biophys.35.040405.102022. PMID16689633.
Papahadjopoulos D, Nir S, Düzgünes N (April 1990). "Molecular mechanisms of calcium-induced membrane fusion". J. Bioenerg. Biomembr. 22 (2): 157–79. doi:10.1007/BF00762944. PMID2139437. S2CID1465571.
Leventis R, Gagné J, Fuller N, Rand RP, Silvius JR (November 1986). "Divalent cation induced fusion and lipid lateral segregation in phosphatidylcholine-phosphatidic acid vesicles". Biochemistry. 25 (22): 6978–87. doi:10.1021/bi00370a600. PMID3801406.
Markin VS, Kozlov MM, Borovjagin VL (October 1984). "On the theory of membrane fusion. The stalk mechanism". Gen. Physiol. Biophys. 3 (5): 361–77. PMID6510702.
Maeda H, Sawa T, Konno T (July 2001). "Mechanism of tumor-targeted delivery of macromolecular drugs, including the EPR effect in solid tumor and clinical overview of the prototype polymeric drug SMANCS". J Control Release. 74 (1–3): 47–61. doi:10.1016/S0168-3659(01)00309-1. PMID11489482.
Bermejo, M.; Avdeef, A.; Ruiz, A.; Nalda, R.; Ruell, J. A.; Tsinman, O.; González, I.; Fernández, C.; Sánchez, G.; Garrigues, T. M.; Merino, V. (2004). "PAMPA--a drug absorption in vitro model 7. Comparing rat in situ, Caco-2, and PAMPA permeability of fluoroquinolones". European Journal of Pharmaceutical Sciences. 21 (4): 429–41. doi:10.1016/j.ejps.2003.10.009. PMID14998573.
Avdeef, A.; Artursson, P.; Neuhoff, S.; Lazorova, L.; Gråsjö, J.; Tavelin, S. (2005). "Caco-2 permeability of weakly basic drugs predicted with the double-sink PAMPA pKa(flux) method". European Journal of Pharmaceutical Sciences. 24 (4): 333–49. doi:10.1016/j.ejps.2004.11.011. PMID15734300.
Avdeef, A.; Nielsen, P. E.; Tsinman, O. (2004). "PAMPA--a drug absorption in vitro model 11. Matching the in vivo unstirred water layer thickness by individual-well stirring in microtitre plates". European Journal of Pharmaceutical Sciences. 22 (5): 365–74. doi:10.1016/j.ejps.2004.04.009. PMID15265506.
Sinkó, B.; Kökösi, J.; Avdeef, A.; Takács-Novák, K. (2009). "A PAMPA study of the permeability-enhancing effect of new ceramide analogues". Chemistry & Biodiversity. 6 (11): 1867–74. doi:10.1002/cbdv.200900149. PMID19937821. S2CID27395246.
Dooren LJ, Wiedemann LR (1986). "On bimolecular layers of lipids on the chromocytes of the blood". Journal of European Journal of Pediatrics. 145 (5): 329. doi:10.1007/BF00439232. PMID3539619. S2CID36842138.
Sjöstrand FS, Andersson-Cedergren E, Dewey MM (April 1958). "The ultrastructure of the intercalated discs of frog, mouse and guinea pig cardiac muscle". J. Ultrastruct. Res. 1 (3): 271–87. doi:10.1016/S0022-5320(58)80008-8. PMID13550367.
Robertson JD (1960). "The molecular structure and contact relationships of cell membranes". Prog. Biophys. Mol. Biol. 10: 343–418. PMID13742209.
Robertson JD (1959). "The ultrastructure of cell membranes and their derivatives". Biochem. Soc. Symp. 16: 3–43. PMID13651159.
Bangham, A. D.; Horne, R. W. (1964). "Negative Staining of Phospholipids and Their Structural Modification by Surface-Active Agents As Observed in the Electron Microscope". Journal of Molecular Biology. 8 (5): 660–668. doi:10.1016/S0022-2836(64)80115-7. PMID14187392.
Andersen, Olaf S.; Koeppe, II, Roger E. (June 2007). "Bilayer Thickness and Membrane Protein Function: An Energetic Perspective". Annual Review of Biophysics and Biomolecular Structure. 36 (1): 107–130. doi:10.1146/annurev.biophys.36.040306.132643. PMID17263662. S2CID6521535.
Richter RP, Brisson A (2003). "Characterization of lipid bilayers and protein assemblies supported on rough surfaces by atomic force microscopy". Langmuir. 19 (5): 1632–40. doi:10.1021/la026427w. S2CID56532332.
Chakrabarti AC (1994). "Permeability of membranes to amino acids and modified amino acids: mechanisms involved in translocation". Amino Acids. 6 (3): 213–29. doi:10.1007/BF00813743. PMID11543596. S2CID24350029.
Xiang TX, Anderson BD (June 1994). "The relationship between permeant size and permeability in lipid bilayer membranes". J. Membr. Biol. 140 (2): 111–22. doi:10.1007/bf00232899. PMID7932645. S2CID20394005.
Sinkó, B.; Kökösi, J.; Avdeef, A.; Takács-Novák, K. (2009). "A PAMPA study of the permeability-enhancing effect of new ceramide analogues". Chemistry & Biodiversity. 6 (11): 1867–74. doi:10.1002/cbdv.200900149. PMID19937821. S2CID27395246.
Dooren LJ, Wiedemann LR (1986). "On bimolecular layers of lipids on the chromocytes of the blood". Journal of European Journal of Pediatrics. 145 (5): 329. doi:10.1007/BF00439232. PMID3539619. S2CID36842138.
Skarjune, Robert; Oldfield, Eric (22 June 1982). "Physical studies of cell surface and cell membrane structure. Deuterium nuclear magnetic resonance studies of N-palmitoylglucosylceramide (cerebroside) head group structure". Biochemistry. 21 (13): 3154–3160. doi:10.1021/bi00256a019. ISSN0006-2960.