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Characteristics of gadolinium-DTPA complex: a potential NMR contrast agent

American Journal of Roentgenology · 1984 · Vol. 142(3) · pp. 619–624

Abstract

Chelation of the rare-earth element gadolinium (Gd) with diethylenetriaminepentaacetic acid (DTPA) results in a strongly paramagnetic, stable complex that is well tolerated in animals. The strongly paramagnetic gadolinium complex reduces hydrogen-proton relaxation times even in low concentrations (less than 0.01 mmol/L). The pharmacokinetic behavior of intravenously delivered Gd-DTPA is similar to the well known iodinated contrast agents used in urography and angiography; excretion is predominantly through the kidneys with greater than 90% recovery in 24 hr. The intravenous LD50 of the meglumine salt of Gd-DTPA is 10 mmol/kg for the rat; in vivo there is no evidence of dissociation of the gadolinium ion from the DTPA ligand. The combination of strong proton relaxation, in-vivo stability, rapid urinary excretion, and high tolerance favors the further development and the potential clinical application of gadolinium-DTPA as a contrast enhancer in magnetic resonance imaging.

Advanced MRI Techniques and ApplicationsLanthanide and Transition Metal ComplexesAdvanced NMR Techniques and ApplicationsGadoliniumMedicineIn vivoIodinated contrastMRI contrast agentMagnetic resonance imagingExcretionNuclear medicineNuclear magnetic resonanceSpin–lattice relaxation

MeSH terms

AnimalsContrast MediaPentetic AcidFemaleGadoliniumMaleMagnetic Resonance SpectroscopyRats
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References
<i>High-resolution Nuclear Magnetic Resonance</i>
Physics Today · 1960 · 1,624 citations
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