| Kono; Temperature-sensitive liposomes: liposomes bearing poly (N-isopropylacrylamide) Journal of Controlled Release 30; 69-75 (1994). |
| Yatvin et al.; Design of Liposomes for Enhanced Local Release of Drugs by Hyperthermia Science 202:1290-1292 (Dec. 1978). |
| Weinstein et al.; Liposomes and Local Hyperthermia: Selective Delivery of Methotrexate to Heated Tumors Science 204:188-191 (Apr. 1979). |
| Liburdy et al.; Microwave-Stimulated Drug Release from Liposomes Radiation Research 103:266-275 (1985). |
| Tomita et al.; Temperature-sensitive release of adriamycin, an amphiphilic antitumor agent, from dipalmitoylphosphatidylcholine-cholesterol liposomes Biochim Biophys. Acta 978:185-190 (1989). |
| Oku et al.; Potential usage of thermosensitive liposomes for macromolecule delivery Biochim. Biophys. Acta 1191:389-391 (1994). |
| Maruyama et al.; Enhanced delivery of doxorubicin to tumor by long-circulating thermosensitive liposomes and local hyperthermia Biochim Biophys. Acta. 1149:209-216 (1993). |
| Weinstein et al.; Phase Transition Release, A New Approach to the Interaction of Proteins with Lipid Vesicles Biochim Biophys. Acta. 647:270-284 (1981). |
| Demel et al.; The Function of Sterols in Membranes Biochim. Biophys. Acta. 457:109-132 (1976). |
| Yatvin et al.; Selective Delivery of Liposome-associated cis-Dichlorodiammineplatinum(II) by Heat and Its Influence on Tumor Drug Uptake and Growth Cancer Research 41:1602-1607 (May 1981). |
| Iga et al.; Heat-specific drug release of large unilamellar vesicle as hyperthermia-mediated targeting delivery International J. Pharmaceutics 57:241-251. |
| Bassett et al.; Use of Temperature-Sensitive Liposomes in the Selective Delivery of Methotreaxate and Cis-Platinum Analogues to Murine Bladder Tumor Journal of Urology 135:612-615 (1985). |
| Gaber et al.; Thermosensitive Sterically Stabilized Liposomes: Formulation and in Vitro Studies on Mechanism of Doxorubicin Release by Bovine Serum and Human Plasma Pharmaceutical Research 12:14071416. |
| Van Echteld et al.; Differential Miscibility Properties of Various Phosphatidylcholine/Lyshophosphatidylcholine Mixtures Biochem Biophys Acta. 595:71-80 (1980). |
| Klopfenstein et al.; Differential Scanning Calorimetry on Mixtures of Lecithin, Lysolecithin and Cholesterol; Chemistry and Physics of Lipids 13:215-222 (1974). |
| Devlin, B.P. et al., A Kinetic Study of the Polyelectrolyte-Induced Reorganization of Lipid Bilayers, Am. Chem. Soc. Div. Polym. Chem. vol. 28, No. 2, (1987), pp. 50-51. |
| Hristova, K., et al., Effect of Bilayer Composition On the Phase Behavior Liposomal Suspensions Containing Poly(ethylen glycol) Lipids, Macromolecules, vol. 28, No. 23 (1995) pp. 7693-7699. |
| International Search Report dated Nov. 24, 1999 for corresponding International application no. PCT/US99/12964. |
| Zhelev; “Material Property Characteristics for Lipid Bilayers Containing Lysolipid,” Biophysical Journal 75:321-330 (Jul. 1998). |