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Original Article

Discussion and Considerations for the Excretion Mechanism of Perfluorochemical Emulsion

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Pages 473-483 | Published online: 11 Jul 2009

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L. Zarif, M. Postel, L. Trevino, J. G. Riess, A. Valla & R. Follana. (1994) Biodistribution and Excretion of a Mixed Fluorocarbon-Hydrocarbon “Dowel” Emulsion as Determined by 19F NMR. Artificial Cells, Blood Substitutes, and Biotechnology 22:4, pages 1193-1198.
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P. K. Bentley, O. L. Johnson, C. Washington & K. C. Lowe. (1992) Lymphoid Tissue Responses to Concentrated Perfluorochemical Emulsions in Rats. Biomaterials, Artificial Cells and Immobilization Biotechnology 20:2-4, pages 1033-1036.
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William R. Ravis, John F. Hoke & Daniel L. Parsons. (1991) Perfluorochemical Erythrocyte Substitutes: Disposition and Effects on Drug Distribution and Elimination. Drug Metabolism Reviews 23:3-4, pages 375-411.
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Articles from other publishers (13)

Irene Lim, Eric Yu Lin, Joseph Garcia, Shang Jia, Robert E. Sommerhalter, Subrata K. Ghosh, John A. Gladysz & Ellen M. Sletten. (2022) Shortwave Infrared Fluorofluorophores for Multicolor In Vivo Imaging** . Angewandte Chemie International Edition 62:6.
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Irene Lim, Eric Yu Lin, Joseph Garcia, Shang Jia, Robert E. Sommerhalter, Subrata K. Ghosh, John A. Gladysz & Ellen M. Sletten. (2022) Shortwave Infrared Fluorofluorophores for Multicolor In Vivo Imaging** . Angewandte Chemie 135:6.
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Alexander H.J. Staal, Katrin Becker, Oya Tagit, N. Koen van Riessen, Olga Koshkina, Andor Veltien, Pascal Bouvain, Kimberley R.G. Cortenbach, Tom Scheenen, Ulrich Flögel, Sebastian Temme & Mangala Srinivas. (2020) In vivo clearance of 19F MRI imaging nanocarriers is strongly influenced by nanoparticle ultrastructure. Biomaterials 261, pages 120307.
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Pascal Bouvain, Vera Flocke, Wolfgang Krämer, Rolf Schubert, Jürgen Schrader, Ulrich Flögel & Sebastian Temme. (2018) Dissociation of 19F and fluorescence signal upon cellular uptake of dual-contrast perfluorocarbon nanoemulsions. Magnetic Resonance Materials in Physics, Biology and Medicine 32:1, pages 133-145.
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Christoph Jacoby, Sebastian Temme, Friederike Mayenfels, Nicole Benoit, Marie Pierre Krafft, Rolf Schubert, Jürgen Schrader & Ulrich Flögel. (2014) Probing different perfluorocarbons for in vivo inflammation imaging by 19 F MRI: image reconstruction, biological half-lives and sensitivity . NMR in Biomedicine 27:3, pages 261-271.
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Robert F. Shaw & Thomas J. Richard. 2006. Blood Substitutes. Blood Substitutes 298 311 .
Jean G. Riess. (2001) Oxygen Carriers (“Blood Substitutes”)Raison d'Etre, Chemistry, and Some Physiology Blut ist ein ganz besondrer Saft . Chemical Reviews 101:9, pages 2797-2920.
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Marie-Pierre Krafft. (2001) Les émulsions de fluorocarbures (PFC) : Des transporteurs d'oxygène injectables efficaces et facilement détectables. Revue Française des Laboratoires 2001:331, pages 55-59.
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Jean G. Riess. 2000. Fluorine Chemistry at the Millennium. Fluorine Chemistry at the Millennium 385 431 .
Thao D. Le, Rebecca A. Arlauskas & Jeffry G. Weers. (1996) Characterization of the lipophilicity of fluorocarbon derivatives containing halogens or hydrocarbon blocks. Journal of Fluorine Chemistry 78:2, pages 155-163.
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D.H. Klein, R.C. Jones, P.E. Keipert, G.A. Luena, S. Otto & J.G. Weers. (1994) Intravascular behavior of perflubron emulsions. Colloids and Surfaces A: Physicochemical and Engineering Aspects 84:1, pages 89-95.
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Alexey S. Kabalnov & Eugene D. Shchukin. (1992) Ostwald ripening theory: applications to fluorocarbon emulsion stability. Advances in Colloid and Interface Science 38, pages 69-97.
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V.V. Obraztsov, A.S. Kabalnov & K.N. Makarov. (1991) A novel model describing excretion of perfluorochemicals from living organism: dissolution of fluorocarbons in lipid components of blood. Journal of Fluorine Chemistry 54:1-3, pages 375.
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