Liposomes, Part G

Specificaties
Gebonden, blz. | Engels
Elsevier Science | e druk, 2009
ISBN13: 9780123813794
Rubricering
Elsevier Science e druk, 2009 9780123813794
Onderdeel van serie Methods in Enzymology
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Liposomes are cellular structures made up of lipid molecules, which are water insoluble organic molecules and the basis of biological membranes. Important as a cellular model in the study of basic biology, liposomes are also used in clinical applications such as drug delivery and virus studies. Liposomes Part F is a continuation of previous MIE Liposome volumes A through E.

Specificaties

ISBN13:9780123813794
Taal:Engels
Bindwijze:Gebonden

Inhoudsopgave

<p>Section I. Advances in Liposome Formation and Characterization </p> <p>1. Spontaneously Formed Unilamellar Vesicles</p> <p>Mu-Ping Nieh, Norbert Kučerka and John Katsaras</p> <p>2. Use of Acoustic Sensors to Probe the Mechanical Properties of Liposomes </p> <p>Kathryn Melzak, Achilleas Tsortos and Electra Gizeli</p> <p>3. Liposome Characterization by Quartz Crystal Microbalance Measurements and Atomic Force Microscopy</p> <p>Patrick Vermette</p> <p>4. Mixing Solutions in Inkjet Formed Vesicles</p> <p>Thomas H Li, Jeanne C Stachowiak<SUP> </SUP>and Daniel A. Fletcher</p> <p>5. Recombinant Proteoliposomes Prepared Using Baculovirus Expression systems</p> <p>Kanta Tsumoto and Tetsuro Yoshimura</p> <p>6. Block Liposomes: Vesicles by Charged Lipids with Distinctly Shaped Nanoscale Sphere-, Pear-, Tube-, or Rod-Segments</p> <p>Alexandra Zidowska, Kei K. Ewert, Joel Quispe, Bridget Carragher, Clinton S. Potter and Cyrus Safinya</p> <p>7. Microfluidic Methods for Production of Liposomes</p> <p>Bo Yu, Robert J. Lee, and L. James Lee</p> <p>8. Constructing Size Distributions of Liposomes from Single-Object Fluorescence Measurements</p> <p>Christina Lohr, Andreas H. Kunding, Vikram K. Bhatia and Dimitrios Stamou</p> <p>9. Giant Unilamellar Vesicle Electroformation. From Lipid Mixtures to Native Membranes under Physiological Conditions</p> <p>Philippe Méléard, Luis A. Bagatolli and Tanja Pott</p> <p>Section II. Liposomes in Therapeutics</p> <p>10. Liposomal Boron Delivery for Boron Capture Therapy</p> <p>Hiroyuki Nakamura</p> <p>11. Production of Recombinant Proteoliposomes for Therapeutic Uses</p> <p>Lavinia Liguori and Jean-Luc Lenormand</p> <p>12. Liposome-Mediated Therapy of Neuroblastoma</p> <p>Daniela Di Paolo, Monica Loi, Fabio Pastorino, Chiara Brignole, Danilo Marimpietri, Pamela Becherini, Irene Caffa, Alessia Zorzoli, Renato Longhi, Cristina Gagliani, Carlo Tacchetti, Angelo Corti, Theresa M. Allen, Mirco Ponzoni<SUP> </SUP>and Gabriella Pagnan</p> <p>13. Tumor-Specific Liposomal Drug Release Mediated by Liposomase</p> <p>Ian Cheong and Shibin Zhou</p> <p>14. Targeted Liposomes for siRNA Delivery</p> <p>Ana Cardoso, Sara Trabulo, João Nuno Moreira, Nejat Düzgüneş and Maria C. Pedroso de Lima</p> <p>15. Mucosal Delivery of Liposome-Chitosan Nanoparticle Complexes</p> <p>Edison L. S. Carvalho, Ana Grenha, Carmen Remuñán-López, Maria José Alonso and Begoña Seijo</p> <p>16. Antiangiogenic Photodynamic Therapy (PDT) with Targeted Liposomes</p> <p>Naoto Oku and Takayuki Ishii</p> <p>17. Controlling the In Vivo activity of Wnt liposomes </p> <p>L. Zhao, S. M. Rooker, N. Morrell, P. Leucht, M. Fang and Jill A. Helms</p> <p>18. Convection-Enhanced Delivery of Liposomes to Primate Brain</p> <p>Michal T. Krauze, John Forsayeth, Dali Yin and Krystof S. Bankiewicz</p> <p>19. Hemoglobin-vesicles as an artificial oxygen carrier</p> <p>Hiromi Sakai, Keitaro Sou and Eishun Tsuchida</p>
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        Liposomes, Part G