[A new cardiac glycoside olitoriside].
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A novel multispecific organic anion transporting polypeptide (oatp2) has been isolated from rat brain. The cloned cDNA contains 3,640 bp. The coding region extends over 1,983 nucleotides, thus encoding a polypeptide of 661 amino acids. Oatp2 is homologous to other members of the oatp gene family of membrane transporters with 12 predicted transmembrane domains, five potential glycosylation, and six potential protein kinase C phosphorylation sites. In functional expression studies in Xenopus laevis oocytes, oatp2 mediated uptake of the bile acids taurocholate (Km approximately 35 microM) and cholate (Km approximately 46 microM), the estrogen conjugates 17beta-estradiol-glucuronide (Km approximately 3 microM) and estrone-3-sulfate (Km approximately 11 microM), and the cardiac gylcosides ouabain (Km approximately 470 microM) and digoxin (Km approximately 0.24 microM). Although most of the tested compounds are common substrates of several oatp-related transporters, high-affinity uptake of digoxin is a unique feature of the newly cloned oatp2. On the basis of Northern blot analysis under high-stringency conditions, oatp2 is highly expressed in brain, liver, and kidney but not in heart, spleen, lung, skeletal muscle, and testes. These results provide further support for the overall significance of oatps as a new family of multispecific organic anion transporters. They indicate that oatp2 may play an especially important role in the brain accumulation and toxicity of digoxin and in the hepatobiliary and renal excretion of cardiac glycosides from the body.
The use of cardenolide-containing Moraceae in the dart poisons of South America is reviewed. Those prepared by the Chocó Indians of western Colombia--called niaará or kieratchi--have probably been made from the latex of Naucleopsis amara and N. glabra. In Ecuador, the Colorado Indians used N. chiguila, while the Coaiquer Indians still derive a poison from the latex of N. naga and the Cayapá Indians occasionally make use of a blowgun poison, hambi, which probably also comes from a Naucleopsis species. The Kaborí (Rio Uneiuxi Makú) Indians of north-western Brazil may have utilized Maquira coriacea, but a more recent collection documents N. mello-barretoi latex as a source of their poison. The Tikuna Indians of western Brazil included leaves and bark of N. stipularis in one of their poisons. The principal cardiac glycosides present in Maquira species are strophanthidin-based and the main ones occurring in Naucleopsis species are antiarigenin- as well as strophanthidin-based. The structures of two new glycosides, isolated from dart-poison samples, have been established as strophanthidin beta-D-glucomethylosido-D-alloside and beta-D-digitoxosido-D-alloside. The former is a major component of pakurin, the crystalline glycoside mixture prepared by Santesson in 1928 from a Chocó Indian poison.
Tritiated ouabain, digitoxin, and digoxin were given IV to anesthetized guinea pigs. The tritium content of the ocular tissues (cornea, iris, lens, vitreous body, retina, choroid, sclera, and optic nerve) was measured after 1 and 3 h and compared with the amount of tritium found in the brain and some peripheral organs. High levels of digitoxin were found in the brain and retina. Digoxin was detected in large quantities in the retina, but only small levels were found in brain tissue. Ouabain was nearly absent in the retina and cerebrum, whereas in most other ocular and peripheral tissues the three cardiac glycosides were present in comparable quantities. The IP injection of tritiated digoxin resulted in lower absolute tissue levels, but a pattern of distribution similar to that observed in anesthetized guinea pigs was found in conscious animals.
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UNLABELLED: 1. Substance I, whose elimination we can approximate with an exponential function, is active in the organism. 2. At a given moment substance II with the same onset of action whose elimination we also can approximate with an exponential function but different from substance I, starts to be added at regular intervals. 3. The relative levels of the two substances can be added up. 4. The optimal dose-scheme for the most regular effect is to be sought. RESULTS: According to the relations derived in repost (5) published previously a slide ruler and a nomogram are constructed by the authors for that purpose. The scales are described as well as how to work with them. Some examples are included. The slide ruler and the nomogram are suitable for some further calcaulations in cumulation kinetics, which is briefly mentioned. These expedients are mainly meant for the application of cardiac glycosides. The same principle can be used in all cases to which the assumptions mentioned above apply.
Strophanthine (0.1 mg/kg, i. v.) and digoxin (0.1 mg/kg, i. v.) increase blood supply of the cortex and medullary layer of the kidneys of anesthetized rats and significantly raise excretion of water and sodium by the kidneys. Verapamil, a blocker of Ca(2+)-channels (0.25 mg/kg, i. v.) attenuates the increment of the blood flow in the internal zone of the cortex and external zone of the medullary layer but does not prevent the rise of diuresis and excretion of sodium with urine under the action of the above-indicated drugs. The conclusion is drawn that realization of the vasodilatory effect of cardiac glycosides in the kidneys is partially connected with a lowering of the content of Ca2+ in myofibrils whereas formation of their tubular effect does not depend on the changes in Ca2+ concentration in nephron cells.
The effects of digitoxin, 3 alpha-methyl-digitoxigenin-3 beta-monoglucoside (3 alpha-MDM), 3 alpha-methyl-digitoxigenin (3 alpha-MD), proscillaridin, 4, 5-methylene-procillaridin (4, 5-MP), and 3 beta-hydroxy-4, 5-methylene-A, B-trans-scillarenin (3 beta-HMTS) on force of contraction and on the transmembrane action potentials were examined in isolated papillary muscles of guinea-pigs. All derivatives exhibited the typical cardiac glycoside effects: i.e. they increased the force of contraction and shortened the action potential duration at 20% (plateau phase) and 90% of repolarization. With digitoxin, 3 beta-HMTS and 4, 5-MP a transient prolongation in action potential duration was observed at the lower concentrations. The action potential amplitude and the resting membrane potential were reduced consistently only with the higher concentrations used. The onset of the positive inotropic effects of 3 alpha-MDM, 3 alpha-MD and 3 beta-HMTS was more rapid than that of digitoxin and proscillaridin. The increment in contractile force reached a maximum well before the full shortening effect on the action potential duration had developed. The shortening of the action potential is thought to be responsible for the biphasic nature of the positive inotropic effect. With 3 alpha-MD and 3 alpha-MDM even toxic effects, e.g. increase in baseline tension, were completely reversible after washing in drug-free solution. The dose-response curves for the positive inotropism can only be compared reliably once the equilibrium of drug action has been established. This steady state is probably reflected by the development of the full shortening in action potential duration.
The effects of some basic and acidic drugs on the hepatic uptake of digoxin and ouabain were studied in isolated rat hepatocytes. Digoxin accumulated against a concentration gradient, and its initial uptake was energy- and temperature-dependent. Digoxin competitively inhibited the uptake of ouabain (Ki = 1.3 microM), which was reported to be transported by a carrier-mediated active transport system. All basic drugs tested (verapamil, dipyridamole, amiodarone, nifedipine, diltiazem, ajmaline, chlorpromazine, imipramine, disopyramide, quinidine, procainamide, propranolol and lidocaine: 50 microM) except for procainamide, propranolol and lidocaine significantly (P less than 0.05) reduced the uptake of digoxin, whereas acidic drugs (salicylic acid and phenytoin) had no effect. The same inhibitory effects were observed for ouabain uptake, whereas the uptake of alanine was not changed by these drugs. Quinidine inhibited the uptake of ouabain in a noncompetitive manner (Ki = 88 microM). These basic drugs had no effect on the permeability of the cells assessed by the trypan blue exclusion test and succinate-simulated oxygen consumption. But carbonylcyanide-m-chlorophenyl hydrazone-stimulated oxygen consumption decreased in the presence of some basic drugs and correlated with their inhibitory effects on digoxin uptake. Therefore, one of the mechanisms of the inhibitory effects of these drugs on digoxin uptake was the inhibition of oxidative phosphorylation. These basic drugs had no effect on the microtubular system, which was assessed by the measurement of tubulin polymerization and colchicine binding to tubulin. The results of our study suggested that many basic drugs have a potential to inhibit the hepatocellular uptake of cardiac glycosides.
The effect of palytoxin (PTX) on compound resting potential and compound action potential of frog sciatic nerve was studied using the sucrose-gap technique. PTX irreversibly depolarized the compound resting potential and reduced the amplitude of the compound action potential. PTX evoked a marked depolarization when extracellular Na+ was replaced by Li+, Cs+ and the organic cations methylammonium, hydroxylammonium, and methylhydroxylammonium but not by tetramethylammonium, tetraethylammonium, choline or the divalent cations, Ca2+ and Ba2+. The maintained depolarization was not sensitive to inhibition by saxitoxin (300 nM) or procaine (10 mM). The depolarization was inhibited by ouabain or cymarin but not by the aglycon, strophanthidin. However, strophanthidin did antagonize the inhibitory action of cymarin which suggests that PTX and cardiac glycosides do not share an identical binding site but there may be some overlap. We conclude that in frog sciatic nerve, PTX interacts with the (Na+-K+) pump to induce the opening or formation of a relatively non-selective cation pore within or near the pump protein.
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In 9 (of 17 attempted) experiments (8 aborted due to premature tissue death), transmembrane electrical activity was recorded from canine false tendons superfused with Mg-free Tyrode's solution to simulate hypomagnesemia. Oscillatory after-potentials (OAP) developed similar to those seen after exposure to 2 X 10(-7) M ouabain, a short-lasting (0.5-1 time the duration of an action potential) OAP that often reached threshold superimposed on a long-lasting (3-4 times as long as the short) OAP. Both forms of OAP were shown to be Ca2+-dependent, as both were prevented by 10(-7) M nifedipine, but only the short OAP were abolished by nifedipine once they had appeared, while high (5 mM = 10 times normal) Mg2+ both prevented and terminated short and long OAP in digitoxic preparations. Results suggest that cardiac glycosides may deplete Mg from the myocardium. The mechanism of the therapeutic action of Mg2+ in digitalis intoxication is discussed in light of its involvement in Ca2+ sequestration by the sarcoplasmic reticulum.
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The specific neurotoxic principle of Tylecodon wallichii (Harv.) Toelken subsp. wallichii, the cause of krimpsiekte in small stock, was isolated and identified as the previously described cumulative bufadienolide, cotyledoside. Krimpsiekte was experimentally induced in two sheep by the repeated intravenous administration of cotyledoside at the rate of 0.01-0.015 mg/kg body mass. On day 9, both animals developed clinical signs typical of krimpsiekte, which is characterized by tremors, paresis and recumbency. Both sheep had difficulty in controlling their hindquarters when attempting to lie down. No significant electrocardiograph abnormalities were detected during the experiment which confirms that cotyledoside at low doses does not overtly affect the electrical activity of the heart. No gross lesions were observed in the sheep. The most significant microscopic lesions comprised mild brain oedema and pronounced vacuolation of the white matter of thalamic nuclei. These lesions might explain some of the motor function deficiencies clinically observed in this syndrome. The previously held contention that these neurotoxic cardiac glycosides are indeed the cause of krimpsiekte is, therefore, confirmed.