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Research Article

Prostate cancer-specific monoclonal antibody 5D4 significantly enhances the cytotoxicity of doxorubicin-loaded liposomes against target cells in vitro

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Pages 601-604 | Published online: 08 Oct 2008

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Bo Yu, Heng Chiat Tai, Weiming Xue, L. James Lee & Robert J. Lee. (2010) Receptor-targeted nanocarriers for therapeutic delivery to cancer. Molecular Membrane Biology 27:7, pages 286-298.
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Manasi Das, Chandana Mohanty & Sanjeeb K Sahoo. (2009) Ligand-based targeted therapy for cancer tissue. Expert Opinion on Drug Delivery 6:3, pages 285-304.
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Articles from other publishers (18)

Reena Gupta, Jitendra Gupta & Abhishek Pathak. (2023) Immunoliposomes: A Targeted Drug Delivery System for Cancer Therapeutics and Vaccination. Current Pharmaceutical Biotechnology 24:3, pages 366-390.
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Ana Camila Marques, Paulo Cardoso da Costa, Sérgia Velho & Maria Helena Amaral. 2022. Handbook of Cancer and Immunology. Handbook of Cancer and Immunology 1 43 .
Hooman Yari, Hariprasad Gali & Vibhudutta Awasthi. (2020) Nanoparticles for Targeting of Prostate Cancer. Current Pharmaceutical Design 26:42, pages 5393-5413.
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Hooman Yari, Gregory Nkepang & Vibhudutta Awasthi. (2019) Surface Modification of Liposomes by a Lipopolymer Targeting Prostate Specific Membrane Antigen for Theranostic Delivery in Prostate Cancer. Materials 12:5, pages 756.
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María Merino, Sara Zalba & María J. Garrido. (2018) Immunoliposomes in clinical oncology: State of the art and future perspectives. Journal of Controlled Release 275, pages 162-176.
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Umme Ayesa, Brian D. Gray, Koon Y. Pak & Parkson Lee-Gau Chong. (2016) Liposomes Containing Lipid-Soluble Zn(II)–Bis-dipicolylamine Derivatives Show Potential To Be Targeted to Phosphatidylserine on the Surface of Cancer Cells. Molecular Pharmaceutics 14:1, pages 147-156.
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Muhammad Raza Shah, Muhammad Imran & Shafi Ullah. 2017. Lipid-Based Nanocarriers for Drug Delivery and Diagnosis. Lipid-Based Nanocarriers for Drug Delivery and Diagnosis 63 110 .
Adriano Brandelli, Cristian Mauricio Barreto Pinilla & Nathalie Almeida Lopes. 2017. Nanotechnology Applied To Pharmaceutical Technology. Nanotechnology Applied To Pharmaceutical Technology 55 90 .
Jing Huang, Haibo Cheng & Peng Guo. 2016. Design, Fabrication, Properties and Applications of Smart and Advanced Materials. Design, Fabrication, Properties and Applications of Smart and Advanced Materials 128 167 .
Yajie Gao, Chao Zhang, Yanxia Zhou, Jinwen Li, Lei Zhao, Yushu Li, Yan Liu & Xinru Li. (2015) Endosomal pH-Responsive Polymer-Based Dual-Ligand-Modified Micellar Nanoparticles for Tumor Targeted Delivery and Facilitated Intracellular Release of Paclitaxel. Pharmaceutical Research.
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Yajie Gao, Yanfang Li, Yushu Li, Lan Yuan, Yanxia Zhou, Jinwen Li, Lei Zhao, Chao Zhang, Xinru Li & Yan Liu. (2015) PSMA-mediated endosome escape-accelerating polymeric micelles for targeted therapy of prostate cancer and the real time tracing of their intracellular trafficking. Nanoscale 7:2, pages 597-612.
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Shravan Kumar Sriraman & Vladimir P. Torchilin. 2014. Advanced Biomaterials and Biodevices. Advanced Biomaterials and Biodevices 79 119 .
Gavin T. Noble, Jared F. Stefanick, Jonathan D. Ashley, Tanyel Kiziltepe & Basar Bilgicer. (2014) Ligand-targeted liposome design: challenges and fundamental considerations. Trends in Biotechnology 32:1, pages 32-45.
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Nazila Kamaly, Zeyu Xiao, Pedro M. Valencia, Aleksandar F. Radovic-Moreno & Omid C. Farokhzad. (2012) Targeted polymeric therapeutic nanoparticles: design, development and clinical translation. Chemical Society Reviews 41:7, pages 2971.
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Vladimir P. Torchilin. 2011. Drug Delivery in Oncology. Drug Delivery in Oncology 951 987 .
Aleksandar F. Radovic‐Moreno, Kai P. Yuet, Robert S. Langer & Omid C. Farokhzad. 2011. Interventional Techniques in Uro‐Oncology. Interventional Techniques in Uro‐Oncology 102 117 .
Rupa R. Sawant & Vladimir P. Torchilin. 2011. Bioconjugation Protocols. Bioconjugation Protocols 357 378 .
Ine Lentacker, Bart Geers, Joseph Demeester, Stefaan C De Smedt & Niek N Sanders. (2010) Design and Evaluation of Doxorubicin-containing Microbubbles for Ultrasound-triggered Doxorubicin Delivery: Cytotoxicity and Mechanisms Involved. Molecular Therapy 18:1, pages 101-108.
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