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Original Articles

Lyso-thermosensitive liposomal doxorubicin for treatment of bladder cancer

, , , , , , , , , & show all
Pages 733-740 | Received 09 Jan 2017, Accepted 31 Mar 2017, Published online: 10 May 2017

Keep up to date with the latest research on this topic with citation updates for this article.

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F Johannes P van Valenberg, Iris S G Brummelhuis, Lars H Lindner, Felix Kuhnle, Barbara Wedmann, Pascal Schweizer, Martin Hossann, J Alfred Witjes & Egbert Oosterwijk. (2021) DPPG2-Based Thermosensitive Liposomes with Encapsulated Doxorubicin Combined with Hyperthermia Lead to Higher Doxorubicin Concentrations in the Bladder Compared to Conventional Application in Pigs: A Rationale for the Treatment of Muscle-Invasive Bladder Cancer. International Journal of Nanomedicine 16, pages 75-88.
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Iris S. G. Brummelhuis, Michiel Simons, Lars H. Lindner, Simone Kort, Sytse de Jong, Martin Hossann, J. Alfred Witjes & Egbert Oosterwijk. (2021) DPPG2-based thermosensitive liposomes as drug delivery system for effective muscle-invasive bladder cancer treatment in vivo. International Journal of Hyperthermia 38:1, pages 1415-1424.
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Anjan Motamarry, Ayele H. Negussie, Christian Rossmann, James Small, A. Marissa Wolfe, Bradford J. Wood & Dieter Haemmerich. (2019) Real-time fluorescence imaging for visualization and drug uptake prediction during drug delivery by thermosensitive liposomes. International Journal of Hyperthermia 36:1, pages 816-825.
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Gerben Schooneveldt, H. Petra Kok, Akke Bakker, Elisabeth D. Geijsen, Coen R. N. Rasch, Jean J. M. C. H. de la Rosette, Maarten C. C. M. Hulshof, Theo M. de Reijke & Hans Crezee. (2018) Clinical validation of a novel thermophysical bladder model designed to improve the accuracy of hyperthermia treatment planning in the pelvic region. International Journal of Hyperthermia 35:1, pages 383-397.
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Articles from other publishers (9)

Zhounan Qian, Yang Zhang, Jie Yuan, Sun Gong & Binghai Chen. (2023) Current applications of nanomaterials in urinary system tumors. Frontiers in Bioengineering and Biotechnology 11.
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Chi Zhang, Jiang Zhao, Weihao Wang, Huanhuan Geng, Yinzhe Wang & Baoshan Gao. (2023) Current advances in the application of nanomedicine in bladder cancer. Biomedicine & Pharmacotherapy 157, pages 114062.
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Agnieszka Mlicka, Paweł Mlicki, Paweł Niewiadomski, Wioletta Zielińska, Marta Hałas-Wiśniewska & Magdalena Izdebska. (2023) Synergistic effect of metformin and doxorubicin on the metastatic potential of T24 cells. Acta Histochemica 125:1, pages 151975.
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Mahmood Barani, Seyedeh Maryam Hosseinikhah, Abbas Rahdar, Leila Farhoudi, Rabia Arshad, Magali Cucchiarini & Sadanand Pandey. (2021) Nanotechnology in Bladder Cancer: Diagnosis and Treatment. Cancers 13:9, pages 2214.
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Krishna K. Ramajayam, A. Marissa Wolfe, Anjan Motamarry, John Yost, Michael J. Yost & Dieter Haemmerich. (2020) Computer Modeling of Drug Delivery with Thermosensitive Liposomes in a Realistic Three-Dimensional Geometry. Computer Modeling of Drug Delivery with Thermosensitive Liposomes in a Realistic Three-Dimensional Geometry.
Yaxi Li, Chen Zhang, Tianliang Min, Yuan Ping & Kai Li. 2020. New Nanomaterials and Techniques for Tumor-targeted Systems. New Nanomaterials and Techniques for Tumor-targeted Systems 293 336 .
Wei Shen Tan & John D. Kelly. (2018) Intravesical device-assisted therapies for non-muscle-invasive bladder cancer. Nature Reviews Urology 15:11, pages 667-685.
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Rogério C. da Silva, Joel G. de Souza, Amedea B. Seabra, Nelson Durán & Wagner J. Fávaro. (2018) Advances and Perspectives in Urinary Bladder Cancer Nanotherapy. EMJ Urology, pages 52-61.
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Maiko Miyazaki, Eiji Yuba, Hiroshi Hayashi, Atsushi Harada & Kenji Kono. (2017) Hyaluronic Acid-Based pH-Sensitive Polymer-Modified Liposomes for Cell-Specific Intracellular Drug Delivery Systems. Bioconjugate Chemistry 29:1, pages 44-55.
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