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Correlation with inotropic and arrhythmic effects. Eur J Pharmacol 1986; 120:161–170.<br />

Page 317<br />

30. Schweitz H, Bidard J-N, Frelin C, Pauron D, Vijverberg HPM, Mahasneh DM, Lazdunski M,<br />

Vilbois F, Tsugita A. Purification, sequence and pharmacological properties of sea anemone toxins from<br />

Radianthus paumotensis. A new class of sea anemone toxins acting on the sodium channel.<br />

Biochemistry 1985; 24:3554–3561.<br />

31. Frelin C, Vigne P, Schweitz H, Lazdunski M. The interaction of sea anemone and scorpion<br />

neurotoxins with tetrodotoxin-resistant Na + channels in rat myoblasts. A comparison with Na + channels<br />

in other excitable and non-excitable cells. Mol Pharmacol 1984;26:70–74.<br />

32. Platou ES, Refsum H, Hotvedt R. Class III antiarrhythmic action linked with positive inotropy:<br />

antiarrhythmic, electrophysiological, and hemodynamic effects of the sea anemone polypeptide ATX II<br />

in the dog heart in situ. J Cardiovasc Pharmacol 1986; 8:459–465.<br />

33. Vaughan Williams EM. Classification of antidysrhythmic drugs. Pharmac Therap B 1975;<br />

1:115–138.<br />

34. Sasayama S. What do the newer inotropic drugs have to offer? Cardiovasc <strong>Drug</strong>s Ther 1992;<br />

6:15–18.<br />

35. Catterall WA. <strong>Structure</strong> and function of voltage-sensitive ion channels. Science 1988; 242:50–61.<br />

36. Wann KT. Neuronal sodium and potassium channels: structure and function. Br J Anaesthes 1993;<br />

71:2–14.<br />

37. Catterall WA. <strong>Structure</strong> and function of voltage-gated ion channels. Ann Rev Biochem 1995;<br />

64:493–531.<br />

38. Warashina A, Jiang Z-Y, Ogura T. Potential-dependent action of Anemonia sulcata toxins III and IV<br />

on sodium channels in crayfish giant axons. Eur J Physiol 1988; 411:88–93.<br />

39. Warashina A, Ogura T, Fujita S. Binding properties of sea anemone toxins to sodium channels in the<br />

crayfish giant axon. Comp Biochem Physiol 1988; 90C:351–358.<br />

40. Driscoll PC, Gronenborn AM, Beress L, Clore GM. Determination of the three-dimensional solution<br />

structure of the antihypertensive and antiviral protein BDS-1 from the sea anemone Anemonia sulcata: a<br />

study using nuclear magnetic resonance and hybrid distance geometry—dynamical simulated annealing.<br />

Biochemistry 1989; 28:2188–2198.<br />

41. Llewellyn LE, Norton RS. Binding of the sea anemone polypeptide BDS II to the voltage-gated<br />

sodium channel. Biochem Intl 1991; 24:937–946.<br />

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