Ion transport systems in the uptake of 99Tcm-tetrofosmin, 99Tcm-MIBI and 201Tl in a tumour cell line. 1997

A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
Department of Radiology, Yamanashi Medical University, Japan.

The kinetics, intracellular distribution and effects of ion transport inhibitors on the uptake of 99Tcm-tetrofosmin, 99Tcm-methoxyisobutyl isonitrile (99Tcm-MIBI) and 201Tl were investigated in a tumour cell line. Both uptake and washout of the tracers were measured at specific intervals. Cells were treated with ouabain, dimethyl amiloride (DMA) and bumetanide to observe the effects on uptake, while carbonyl cyanide m-chlorophenylhydrazone (CCCP) was used to study the release of the tracers. The tracers showed similar uptake and washout kinetics. Ouabain inhibited 55-67% of 201Tl, 16-22% of 99Tcm-tetrofosmin and 8-14% of 99Tcm-MIBI. DMA inhibited the uptake of both 99Tcm-tetrofosmin (30%) and 99Tcm-MIBI (21%). Bumetanide stimulated the uptake of 99Tcm-tetrofosmin and 99Tcm-MIBI but inhibited that of 201Tl (37%). When cells were pretreated with various combinations of these ion transport inhibitors, the uptake of 201Tl was related to Na+,K+ pump, Na+,K+, 2Cl- co-transport systems, whereas the uptake of both 99Tcm-tetrofosmin and 99Tcm-MIBI was related to the Na+,K+ pump, Na+/H+ antiport systems. Addition of CCCP released 55% and 90% of accumulated 99Tcm-tetrofosmin and 99Tcm-MIBI respectively, indicating that the percentage released was related to mitochondrial uptake.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D009943 Organophosphorus Compounds Organic compounds that contain phosphorus as an integral part of the molecule. Included under this heading is broad array of synthetic compounds that are used as PESTICIDES and DRUGS. Organophosphorus Compound,Organopyrophosphorus Compound,Organopyrophosphorus Compounds,Compound, Organophosphorus,Compound, Organopyrophosphorus,Compounds, Organophosphorus,Compounds, Organopyrophosphorus
D010042 Ouabain A cardioactive glycoside consisting of rhamnose and ouabagenin, obtained from the seeds of Strophanthus gratus and other plants of the Apocynaceae; used like DIGITALIS. It is commonly used in cell biological studies as an inhibitor of the NA(+)-K(+)-EXCHANGING ATPASE. Acocantherin,G-Strophanthin,Acolongifloroside K,G Strophanthin
D011188 Potassium An element in the alkali group of metals with an atomic symbol K, atomic number 19, and atomic weight 39.10. It is the chief cation in the intracellular fluid of muscle and other cells. Potassium ion is a strong electrolyte that plays a significant role in the regulation of fluid volume and maintenance of the WATER-ELECTROLYTE BALANCE.
D002034 Bumetanide A sulfamyl diuretic. Bumedyl,Bumethanide,Bumex,Burinex,Drenural,Fordiuran,Miccil,PF-1593,PF 1593,PF1593
D002258 Carbonyl Cyanide m-Chlorophenyl Hydrazone A proton ionophore. It is commonly used as an uncoupling agent and inhibitor of photosynthesis because of its effects on mitochondrial and chloroplast membranes. CCCP,Carbonyl Cyanide meta-Chlorophenyl Hydrazone,Carbonylcyanide 4-Chlorophenylhydrazone,Propanedinitrile, ((3-chlorophenyl)hydrazono)-,Carbonyl Cyanide m Chlorophenyl Hydrazone,4-Chlorophenylhydrazone, Carbonylcyanide,Carbonyl Cyanide meta Chlorophenyl Hydrazone,Carbonylcyanide 4 Chlorophenylhydrazone
D002352 Carrier Proteins Proteins that bind or transport specific substances in the blood, within the cell, or across cell membranes. Binding Proteins,Carrier Protein,Transport Protein,Transport Proteins,Binding Protein,Protein, Carrier,Proteins, Carrier
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
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000254 Sodium-Potassium-Exchanging ATPase An enzyme that catalyzes the active transport system of sodium and potassium ions across the cell wall. Sodium and potassium ions are closely coupled with membrane ATPase which undergoes phosphorylation and dephosphorylation, thereby providing energy for transport of these ions against concentration gradients. ATPase, Sodium, Potassium,Adenosinetriphosphatase, Sodium, Potassium,Na(+)-K(+)-Exchanging ATPase,Na(+)-K(+)-Transporting ATPase,Potassium Pump,Sodium Pump,Sodium, Potassium ATPase,Sodium, Potassium Adenosinetriphosphatase,Sodium-Potassium Pump,Adenosine Triphosphatase, Sodium, Potassium,Na(+) K(+)-Transporting ATPase,Sodium, Potassium Adenosine Triphosphatase,ATPase Sodium, Potassium,ATPase, Sodium-Potassium-Exchanging,Adenosinetriphosphatase Sodium, Potassium,Pump, Potassium,Pump, Sodium,Pump, Sodium-Potassium,Sodium Potassium Exchanging ATPase,Sodium Potassium Pump

Related Publications

A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
April 1999, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
August 2000, Annals of nuclear medicine,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
May 1999, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
December 1996, The British journal of radiology,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
November 1994, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
June 2001, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
November 2000, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
July 1998, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
May 1991, Nuclear medicine communications,
A S Arbab, and K Koizumi, and K Toyama, and T Arai, and T Araki
April 2004, Annals of nuclear medicine,
Copied contents to your clipboard!