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Targeted bioavailability of drugs by triggered release from liposomes

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Pages 25-34 | Published online: 18 Jan 2017

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Shantanu Pande. (2023) Liposomes for drug delivery: review of vesicular composition, factors affecting drug release and drug loading in liposomes. Artificial Cells, Nanomedicine, and Biotechnology 51:1, pages 428-440.
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Nicolas D. Winter, Ryan K.J. Murphy, Thomas V. O’Halloran & George C. Schatz. (2011) Development and modeling of arsenic-trioxide–loaded thermosensitive liposomes for anticancer drug delivery. Journal of Liposome Research 21:2, pages 106-115.
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Jae-Beom Kim, Philipp Leucht, Nathan T. Morrell, H. Alan Schwettman & Jill A. HELMS. (2007) Visualizing in vivo liposomal drug delivery in real-time. Journal of Drug Targeting 15:9, pages 632-639.
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Articles from other publishers (22)

Ruhani Sagar, Emily A. Jaremba, Jinchao Lou & Michael D. Best. (2023) Copper-responsive liposomes for triggered cargo release employing a picolinamide−lipid conjugate. Organic & Biomolecular Chemistry 21:5, pages 955-959.
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Amalia Ruiz, Guanglong Ma, Jani Seitsonen, Sara G.T. Pereira, Janne Ruokolainen & Wafa T. Al-Jamal. (2020) Encapsulated doxorubicin crystals influence lysolipid temperature-sensitive liposomes release and therapeutic efficacy in vitro and in vivo. Journal of Controlled Release 328, pages 665-678.
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Carla B. Roces, Emily Charlotte Port, Nikolaos N. Daskalakis, Julie A. Watts, Jonathan W. Aylott, Gavin W. Halbert & Yvonne Perrie. (2020) Rapid scale-up and production of active-loaded PEGylated liposomes. International Journal of Pharmaceutics 586, pages 119566.
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E.V. Melnikova, D.V. Goryachev, A.A. Chaplenko, M.A. Vodyakova, A.R. Sayfutdinova & V.A. Merkulov. (2018) Development of liposomal drug formulations: quality attributes and methods for quality control. Bulletin of Russian State Medical University:6, pages 33-39.
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Siyam M. Ansar, Wenlei Jiang & Thilak Mudalige. (2018) Direct quantification of unencapsulated doxorubicin in liposomal doxorubicin formulations using capillary electrophoresis. International Journal of Pharmaceutics 549:1-2, pages 109-114.
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Khaled Greish, Aanchal Mathur, Moiz Bakhiet & Sebastien Taurin. (2018) Nanomedicine: is it lost in translation?. Therapeutic Delivery 9:4, pages 269-285.
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Zahraa Al-Ahmady & Kostas Kostarelos. (2016) Chemical Components for the Design of Temperature-Responsive Vesicles as Cancer Therapeutics. Chemical Reviews 116:6, pages 3883-3918.
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Rahi M. Reja, Mohsina Khan, Sumeet K. Singh, Rajkumar Misra, Anjali Shiras & Hosahudya N. Gopi. (2016) pH sensitive coiled coils: a strategy for enhanced liposomal drug delivery. Nanoscale 8:9, pages 5139-5145.
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Xin Liu & Guihua Huang. (2013) Formation strategies, mechanism of intracellular delivery and potential clinical applications of pH-sensitive liposomes. Asian Journal of Pharmaceutical Sciences 8:6, pages 319-328.
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Chun-Yen Lai, Dustin Kruse, Jai Woong Seo, Azadeh Kheirolomoom & Katherine W. Ferrara. (2013) A phantom for visualization of three-dimensional drug release by ultrasound-induced mild hyperthermia. Medical Physics 40:8, pages 083301.
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Zahraa S. Al-Ahmady, Wafa’ T. Al-Jamal, Jeroen V. Bossche, Tam T. Bui, Alex F. Drake, A. James Mason & Kostas Kostarelos. (2012) Lipid–Peptide Vesicle Nanoscale Hybrids for Triggered Drug Release by Mild Hyperthermia in Vitro and in Vivo . ACS Nano 6:10, pages 9335-9346.
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William C. Zamboni & Ninh M. La-Beck. 2012. Oxidative Stress in Cancer Biology and Therapy. Oxidative Stress in Cancer Biology and Therapy 427 452 .
Wenlei Jiang, Robert Lionberger & Lawrence X Yu. (2011) In vitro and in vivo characterizations of PEGylated liposomal doxorubicin . Bioanalysis 3:3, pages 333-344.
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Chun-Yen Lai, D E Kruse, C F Caskey, D N Stephens, P L Sutcliffe & K W Ferrara. (2010) Noninvasive thermometry assisted by a dual-function ultrasound transducer for mild hyperthermia. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 57:12, pages 2671-2684.
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Peng Zhang & Tyrone Porter. (2010) An in vitro Study of a Phase-Shift Nanoemulsion: A Potential Nucleation Agent for Bubble-Enhanced HIFU Tumor Ablation. Ultrasound in Medicine & Biology 36:11, pages 1856-1866.
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Azadeh Kheirolomoom, Dustin E. Kruse, Shengping Qin, Katherine E. Watson, Chun-Yen Lai, Lawrence J.T. Young, Robert D. Cardiff & Katherine W. Ferrara. (2010) Enhanced in vivo bioluminescence imaging using liposomal luciferin delivery system. Journal of Controlled Release 141:2, pages 128-136.
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Vadim L Stakhursky, Omar Arabe, Kung-Shan Cheng, James MacFall, Paolo Maccarini, Oana Craciunescu, Mark Dewhirst, Paul Stauffer & Shiva K Das. (2009) Real-time MRI-guided hyperthermia treatment using a fast adaptive algorithm. Physics in Medicine and Biology 54:7, pages 2131-2145.
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Winston Ong, Yuming Yang, Angela C. Cruciano & Robin L. McCarley. (2008) Redox-Triggered Contents Release from Liposomes. Journal of the American Chemical Society 130:44, pages 14739-14744.
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Nathan T. Morrell, Philipp Leucht, Ludan Zhao, Jae-Beom Kim, Derk ten Berge, Karthik Ponnusamy, A. Lyonel Carre, Henryk Dudek, Marie Zachlederova, Michael McElhaney, Shirley Brunton, Janet Gunzner, Marinella Callow, Paul Polakis, Mike Costa, Xiaoyan M. Zhang, Jill A. Helms & Roel Nusse. (2008) Liposomal Packaging Generates Wnt Protein with In Vivo Biological Activity. PLoS ONE 3:8, pages e2930.
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Adekunle I. Elegbede, Jayati Banerjee, Andrea J. Hanson, Shakila Tobwala, Bratati Ganguli, Rongying Wang, Xiaoning Lu, D. K. Srivastava & Sanku Mallik. (2008) Mechanistic Studies of the Triggered Release of Liposomal Contents by Matrix Metalloproteinase-9. Journal of the American Chemical Society 130:32, pages 10633-10642.
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Anders Falk Vikbjerg, Thomas L. Andresen, Kent Jørgensen, Huiling Mu & Xuebing Xu. (2007) Oxidative Stability of Liposomes Composed of Docosahexaenoic Acid-Containing Phospholipids. Journal of the American Oil Chemists' Society 84:7, pages 631-637.
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Ana M. Ponce, Benjamin L. Viglianti, Daohai Yu, Pavel S. Yarmolenko, Charles R. Michelich, Janet Woo, Marcel B. Bally & Mark W. Dewhirst. (2007) Magnetic Resonance Imaging of Temperature-Sensitive Liposome Release: Drug Dose Painting and Antitumor Effects. JNCI: Journal of the National Cancer Institute 99:1, pages 53-63.
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