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Original Article

Hyperthermic modulation of radiolabelled antibody uptake in a human glioma xenograft and normal tissues

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Pages 59-72 | Received 17 Aug 1993, Accepted 10 Apr 1994, Published online: 09 Jul 2009

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Hamzah Maswadeh, Arif Khan, Mohammed S. Alorainy, Naser A. Al-Wabel & Costas Demetzos. (2022) In vitro and in vivo activity of thermosensitive liposomes loaded with doxorubicin and cisplatin. Drug Development and Industrial Pharmacy 48:4, pages 158-168.
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Natalya Rapoport. (2012) Ultrasound-mediated micellar drug delivery. International Journal of Hyperthermia 28:4, pages 374-385.
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Gloria C. Li, Fuqiu He & C. Clifton Ling. (2006) Hyperthermia and gene therapy: Potential use of MicroPET imaging. International Journal of Hyperthermia 22:3, pages 215-221.
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M. L. Hauck & M. R. Zalutsky. (2005) Enhanced tumour uptake of radiolabelled antibodies by hyperthermia: Part I: Timing of injection relative to hyperthermia. International Journal of Hyperthermia 21:1, pages 1-11.
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M. L. Hauck & M. R. Zalutsky. (2005) Enhanced tumour uptake of radiolabelled antibodies by hyperthermia. Part II: Application of the thermal equivalency equation. International Journal of Hyperthermia 21:1, pages 13-27.
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M. L. Hauck, D. O. Coffin, R. K. Dodge, M. W. Dewhirst, J. B. Mitchell & M. R. Zalutsky. (1997) A local hyperthermia treatment which enhances antibody uptake in a glioma xenograft model does not affect tumour interstitial fluid pressure. International Journal of Hyperthermia 13:3, pages 307-316.
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C. De Lange Davies & B. M. Hasle Falch. (1996) Expression of melanoma-associated antigen of thermotolerant human cells. International Journal of Hyperthermia 12:4, pages 539-549.
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Yu Wang, Rui Wang, Lixin Chen, Lili Chen, Yi Zheng, Yuanrong Xin, Xiqiu Zhou, Xiaoyun Song & Jinzhou Zheng. (2022) Enhanced tumor penetration for efficient chemotherapy by a magnetothermally sensitive micelle combined with magnetic targeting and magnetic hyperthermia. Frontiers in Pharmacology 13.
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Marjolein I. Priester, Sergio Curto, Ann L. B. Seynhaeve, Anderson Cruz Perdomo, Mohamadreza Amin, Pierre Agnass, Milad Salimibani, Pegah Faridi, Punit Prakash, Gerard C. van Rhoon & Timo L. M. ten Hagen. (2021) Preclinical Studies in Small Animals for Advanced Drug Delivery Using Hyperthermia and Intravital Microscopy. Cancers 13:20, pages 5146.
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Marjolein I. Priester, Sergio Curto, Gerard C. van Rhoon & Timo L. M. ten Hagen. (2021) External Basic Hyperthermia Devices for Preclinical Studies in Small Animals. Cancers 13:18, pages 4628.
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Michael Dunne, Maximilian Regenold & Christine Allen. (2020) Hyperthermia can alter tumor physiology and improve chemo- and radio-therapy efficacy. Advanced Drug Delivery Reviews 163-164, pages 98-124.
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Mark W. Dewhirst & Timothy W. Secomb. (2017) Transport of drugs from blood vessels to tumour tissue. Nature Reviews Cancer 17:12, pages 738-750.
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Jelena Kolosnjaj-Tabi, Iris Marangon, Alba Nicolas-Boluda, Amanda K.A. Silva & Florence Gazeau. (2017) Nanoparticle-based hyperthermia, a local treatment modulating the tumor extracellular matrix. Pharmacological Research 126, pages 123-137.
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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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Joseph Gerard Jurcic, Jeffrey Y.C. Wong, Susan J. Knox, Daniel R. Wahl, Todd L. Rosenblat & Ruby F. Meredith. 2016. Clinical Radiation Oncology. Clinical Radiation Oncology 399 418.e14 .
Zahraa S. Al-Ahmady, Olivier Chaloin & Kostas Kostarelos. (2014) Monoclonal antibody-targeted, temperature-sensitive liposomes: In vivo tumor chemotherapeutics in combination with mild hyperthermia. Journal of Controlled Release 196, pages 332-343.
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Ruby F. Meredith, Jeffrey Y.C. Wong & Susan J. Knox. 2012. Clinical Radiation Oncology. Clinical Radiation Oncology e22-1 e22-46 .
Michael K. Danquah, Xin A. Zhang & Ram I. Mahato. (2011) Extravasation of polymeric nanomedicines across tumor vasculature. Advanced Drug Delivery Reviews 63:8, pages 623-639.
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V S Shenoy, I K Vijay & R S R Murthy. (2005) Tumour targeting: biological factors and formulation advances in injectable lipid nanoparticles. Journal of Pharmacy and Pharmacology 57:4, pages 411-421.
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Crispin R Dass. (2002) Vehicles for oligonucleotide delivery to tumours. Journal of Pharmacy and Pharmacology 54:1, pages 3-27.
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Twan Lammers, Peter Peschke, Rainer Kühnlein, Vladimir Subr, Karel Ulbrich, Jürgen Debus, Peter Huber, Wim Hennink & Gert Storm. (2007) Effect of radiotherapy and hyperthermia on the tumor accumulation of HPMA copolymer-based drug delivery systems. Journal of Controlled Release 117:3, pages 333-341.
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Eugene ChangSricharan ChalikondaJosef FriedlHui XuGiao Q. PhanFrancesco M. MarincolaH. Richard AlexanderDavid L. Bartlett. (2005) Targeting Vaccinia to Solid Tumors with Local Hyperthermia. Human Gene Therapy 16:4, pages 435-444.
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Seigo Kinuya, Kunihiko Yokoyama, Takashi Hiramatsu, Harunobu Tega, Kazuhiro Tanaka, Shota Konishi, Noriyuki Shuke, Tamio Aburano, Naoto Watanabe, Teruhiko Takayama, Takatoshi Michigishi & Norihisa Tonami. (1999) Combination radioimmunotherapy with local hyperthermia: increased delivery of radioimmunoconjugate by vascular effect and its retention by increased antigen expression in colon cancer xenografts. Cancer Letters 140:1-2, pages 209-218.
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Yasushi Arano, Kouji Wakisaka, Hiromichi Akizawa, Masahiro Ono, Keiichi Kawai, Morio Nakayama, Harumi Sakahara, Junji Konishi & Hideo Saji. (1998) Assessment of the Radiochemical Design of Antibodies with a Metabolizable Linkage for Target-Selective Radioactivity Delivery. Bioconjugate Chemistry 9:4, pages 497-506.
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Bharat B. Mittal, Michael A. Zimmer, Vythialingam Sathiaseelan, Al B. Benson, Raj R. Mittal, Swati Dutta, Steven T. Rosen, Stewart M. Spies, Joanne M. Mettler & Mark W. Groch. (1996) Phase I/II trial of combined131I anti-CEA monoclonal antibody and hyperthermia in patients with advanced colorectal adenocarcinoma. Cancer 78:9, pages 1861-1870.
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Marlene L. Hauck, Mark W. Dewhirst & Michael R. Zalutsky. (1996) The effects of clinically relevant hyperthermic temperatures on the kinetic binding parameters of a monoclonal antibody. Nuclear Medicine and Biology 23:4, pages 551-557.
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