Active Uptake of Drugs into Photosensitive Liposomes and Rapid Release on UV Photolysis¶
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[1] P. Cullis,et al. Accumulation of doxorubicin and other lipophilic amines into large unilamellar vesicles in response to transmembrane pH gradients. , 1993, Biochimica et biophysica acta.
[2] J. Langan,et al. PHOTOCHROMIC HETEROCYCLIC FULGIDES. PART 3. THE USE OF (E)-α-(2,5-DIMETHYL-3-FURYLETHYLIDENE)(ISOPROPYLIDENE)SUCCINIC ANHYDRIDE AS A SIMPLE CONVENIENT CHEMICAL ACTINOMETER , 1981 .
[3] P. Cullis,et al. Loading of doxorubicin into liposomes by forming Mn2+-drug complexes. , 1998, Biochimica et biophysica acta.
[4] A. C. Mitchell,et al. Fast solute release from photosensitive liposomes: an alternative to ‘caged’ reagents for use in biological systems , 1995, FEBS letters.
[5] M. Bally,et al. The accumulation of drugs within large unilamellar vesicles exhibiting a proton gradient: a survey. , 1990, Chemistry and physics of lipids.
[6] S. Mordon,et al. Laser-Induced Release of Liposome-Encapsulated Dye: A New Diagnostic Tool , 1998, Lasers in Medical Science.
[7] J. Langan,et al. Photochromic heterocyclic fulgides. Part 3. The use of (E)-α-(2,5-dimethyl-3-furylethylidene)(isopropylidene)succinic anhydride as a simple convenient chemical actinometer , 1981 .
[8] D. Thompson,et al. Triggered release of hydrophilic agents from plasmalogen liposomes using visible light or acid. , 1992, Biochimica et biophysica acta.
[9] D. Crothers,et al. Self-association of daunomycin. , 1982, Biochemistry.
[10] Y. Barenholz,et al. Transmembrane ammonium sulfate gradients in liposomes produce efficient and stable entrapment of amphipathic weak bases. , 1993, Biochimica et biophysica acta.
[11] P. Cullis,et al. Factors influencing uptake and retention of amino-containing drugs in large unilamellar vesicles exhibiting transmembrane pH gradients. , 1999, Biochimica et biophysica acta.
[12] Gert Storm,et al. Surface modification of nanoparticles to oppose uptake by the mononuclear phagocyte system , 1995 .
[13] P. Cullis,et al. Liposomal doxorubicin. , 1996, Journal of drug targeting.
[14] Prabhakar Misra,et al. LASER MEDIATED RELEASE OF DYE FROM LIPOSOMES , 1992, Photochemistry and photobiology.
[15] A. C. Mitchell,et al. Light-induced fusion of liposomes with release of trapped marker dye is sensitised by photochromic phospholipid. , 1987, Biochimica et biophysica acta.
[16] David H. Thompson,et al. Cytosolic drug delivery using pH- and light-sensitive liposomes. , 1999, Advanced drug delivery reviews.
[17] R. Bisby,et al. Photosensitive liposomes as ‘cages’ for laser‐triggered solute delivery: the effect of bilayer cholesterol on kinetics of solute release , 1999, FEBS letters.
[18] P. Cullis,et al. Recent advances in liposome technologies and their applications for systemic gene delivery. , 1998, Advanced drug delivery reviews.
[19] A. C. Mitchell,et al. Fast laser-induced solute release from liposomes sensitized with photochromic lipid: effects of temperature, lipid host, and sensitizer concentration. , 1999, Biochemical and biophysical research communications.
[20] P. Sado,et al. Ophthalmic drug delivery systems—Recent advances , 1998, Progress in Retinal and Eye Research.
[21] Yuichi Ohya,et al. Photo-sensitive lipid membrane perturbation by a single chain lipid having terminal spiropyran group , 1998 .
[22] M. Bally,et al. Characterization of liposomal systems containing doxorubicin entrapped in response to pH gradients. , 1990, Biochimica et biophysica acta.
[23] S. Simões,et al. Sterically Stabilized pH-sensitive Liposomes , 1997, The Journal of Biological Chemistry.