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Research Article

Risks of Parenteral Deferoxamine for Acute Iron Poisoning

Pages 491-497 | Published online: 25 Sep 2008

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D. Nicholas Bateman, Victoria Eagling, Euan A. Sandilands, Gill Jackson, Catherine Crawford, Leonard Hawkins, Ted Cheung, Gillian Cooper, Sally M. Bradberry, John P. Thompson, Simon H. L. Thomas & Michael Eddleston. (2018) Iron overdose epidemiology, clinical features and iron concentration-effect relationships: the UK experience 2008–2017. Clinical Toxicology 56:11, pages 1098-1106.
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Paula M. B. Pahl & Lawrence D. Horwitz. (2005) Cell Permeable Iron Chelators as Potential Cancer Chemotherapeutic Agents. Cancer Investigation 23:8, pages 683-691.
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Vassilios D. Vlahakos, Katerina P. Marathias, Nikolaos Arkadopoulos & Demetrios V. Vlahakos. (2020) Hyperferritinemia in patients with COVID‐19: An opportunity for iron chelation?. Artificial Organs 45:2, pages 163-167.
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Jacob Kosyakovsky, Jared Fine, William Frey & Leah Hanson. (2021) Mechanisms of Intranasal Deferoxamine in Neurodegenerative and Neurovascular Disease. Pharmaceuticals 14:2, pages 95.
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Cristian De Gregorio, David Contador, Diego Díaz, Constanza Cárcamo, Daniela Santapau, Lorena Lobos-Gonzalez, Cristian Acosta, Mario Campero, Daniel Carpio, Caterina Gabriele, Marco Gaspari, Victor Aliaga-Tobar, Vinicius Maracaja-Coutinho, Marcelo Ezquer & Fernando Ezquer. (2020) Human adipose-derived mesenchymal stem cell-conditioned medium ameliorates polyneuropathy and foot ulceration in diabetic BKS db/db mice. Stem Cell Research & Therapy 11:1.
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Carolina Oses, Belén Olivares, Marcelo Ezquer, Cristian Acosta, Paul Bosch, Macarena Donoso, Patricio Léniz & Fernando Ezquer. (2017) Preconditioning of adipose tissue-derived mesenchymal stem cells with deferoxamine increases the production of pro-angiogenic, neuroprotective and anti-inflammatory factors: Potential application in the treatment of diabetic neuropathy. PLOS ONE 12:5, pages e0178011.
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Christina Francisca Vogelaar, Brigitte König, Stefanie Krafft, Veronica Estrada, Nicole Brazda, Brigida Ziegler, Andreas Faissner & Hans Werner Müller. (2015) Pharmacological Suppression of CNS Scarring by Deferoxamine Reduces Lesion Volume and Increases Regeneration in an In Vitro Model for Astroglial-Fibrotic Scarring and in Rat Spinal Cord Injury In Vivo. PLOS ONE 10:7, pages e0134371.
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