Magnetic resonance imaging of the delivery of a paramagnetic contrast agent by an osmotic pump. 1988

T A Carpenter, and L D Hall, and P G Hogan
Laboratory for Medicinal Chemistry, University of Cambridge School of Medicine, Addenbrooke's Hospital, UK.

The successful application of Magnetic Resonance Imaging (MRI) in verifying the in vitro delivery action of an osmotically-driven pump (Alzet 2ML1) is described. MRI detection of drugs commonly used with such pumps is not yet possible because of the low signal intensity of present MR techniques. So we employed a paramagnetic contrast agent (gadolinium diethylene triamine penta acetic acid) of molecular weight comparable to commonly used drugs, and solutions of comparable concentration and viscosity. The study highlights the potential of this approach in the evaluation of in vivo drug delivery systems.

UI MeSH Term Description Entries
D007260 Infusion Pumps Fluid propulsion systems driven mechanically, electrically, or osmotically that are used to inject (or infuse) over time agents into a patient or experimental animal; used routinely in hospitals to maintain a patent intravenous line, to administer antineoplastic agents and other drugs in thromboembolism, heart disease, diabetes mellitus (INSULIN INFUSION SYSTEMS is also available), and other disorders. Drug Infusion Systems,Infusion Pump,Infusion Pumps, External,Infusors,Intravenous Drug Delivery System,Intravenous Drug Delivery Systems,Perfusion Pumps,Pumps, Infusion,Drug Infusion System,External Infusion Pump,External Infusion Pumps,Infusion Pump, External,Infusion System, Drug,Infusion Systems, Drug,Infusor,Perfusion Pump,Pump, External Infusion,Pump, Infusion,Pump, Perfusion,Pumps, External Infusion,Pumps, Perfusion,System, Drug Infusion,Systems, Drug Infusion
D008279 Magnetic Resonance Imaging Non-invasive method of demonstrating internal anatomy based on the principle that atomic nuclei in a strong magnetic field absorb pulses of radiofrequency energy and emit them as radiowaves which can be reconstructed into computerized images. The concept includes proton spin tomographic techniques. Chemical Shift Imaging,MR Tomography,MRI Scans,MRI, Functional,Magnetic Resonance Image,Magnetic Resonance Imaging, Functional,Magnetization Transfer Contrast Imaging,NMR Imaging,NMR Tomography,Tomography, NMR,Tomography, Proton Spin,fMRI,Functional Magnetic Resonance Imaging,Imaging, Chemical Shift,Proton Spin Tomography,Spin Echo Imaging,Steady-State Free Precession MRI,Tomography, MR,Zeugmatography,Chemical Shift Imagings,Echo Imaging, Spin,Echo Imagings, Spin,Functional MRI,Functional MRIs,Image, Magnetic Resonance,Imaging, Magnetic Resonance,Imaging, NMR,Imaging, Spin Echo,Imagings, Chemical Shift,Imagings, Spin Echo,MRI Scan,MRIs, Functional,Magnetic Resonance Images,Resonance Image, Magnetic,Scan, MRI,Scans, MRI,Shift Imaging, Chemical,Shift Imagings, Chemical,Spin Echo Imagings,Steady State Free Precession MRI
D008954 Models, Biological Theoretical representations that simulate the behavior or activity of biological processes or diseases. For disease models in living animals, DISEASE MODELS, ANIMAL is available. Biological models include the use of mathematical equations, computers, and other electronic equipment. Biological Model,Biological Models,Model, Biological,Models, Biologic,Biologic Model,Biologic Models,Model, Biologic
D003287 Contrast Media Substances used to allow enhanced visualization of tissues. Radiopaque Media,Contrast Agent,Contrast Agents,Contrast Material,Contrast Materials,Radiocontrast Agent,Radiocontrast Agents,Radiocontrast Media,Agent, Contrast,Agent, Radiocontrast,Agents, Contrast,Agents, Radiocontrast,Material, Contrast,Materials, Contrast,Media, Contrast,Media, Radiocontrast,Media, Radiopaque

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