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Elektrofisiologiese eienskappe van Parabuthus transvaalicus venoom op natrium- en kaliumkanale in hart en senuwee

dc.contributor.advisorvan der Walt, Johannes Jacobus
dc.contributor.advisorTytgat, Jan
dc.contributor.authorDyason, Karin
dc.date.accessioned2026-08-12T10:24:15Z
dc.date.issued1999
dc.descriptionThesis, (PhD IN Physiology) -- North-West University,Potchefstroom Campus, 1999
dc.description.abstractThe primary aim of this study was to investigate the electrophysiological mechanisms of toxins (PBTx1, Toxin 1, and Toxin 2) isolated from the venom of the scorpion Parabuthus transvaalicus . The research compared the effects of Toxin 1 and 2 on cloned human heart sodium channels (hH1) with native channels in rat heart to determine if animal models could accurately reflect human responses . Key findings showed that native rat heart channels are effective for studying toxin effects . The study identified a specific α-effect induced by Toxin 1 and 2, which arises from two new toxin structures that are smaller than classic sodium channel toxins . A kinetic model was developed showing channels moving in parallel pathways, where the toxins exert negative cooperative effects on transitions to the open state and concentration-dependent effects on inactivation . Both the potassium and sodium toxins were classified into new subfamilies due to their unique structures
dc.description.sustainableGood Health and Well-being
dc.identifier.urihttp://hdl.handle.net/10394/47202
dc.language.isoother
dc.publisherNorth-West University (South-Africa)
dc.subjectPotassium channel
dc.subjectsodium channel
dc.subjectscorpion toxins
dc.subjectα-toxins
dc.subjectshort-chain toxins
dc.subjectlong-chain toxins
dc.subjectKv1.1
dc.subjecthH1
dc.subjectventricular myocytes
dc.subjectParabuthus transvaalicus
dc.titleElektrofisiologiese eienskappe van Parabuthus transvaalicus venoom op natrium- en kaliumkanale in hart en senuwee
dc.typeThesis

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