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Original Article

Cadmium Modulates Diabetes-Induced Alterations in Murine Neuromuscular Junction

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Pages 205-217 | Published online: 07 Jul 2009

References

  • Picard E. H., De La Monte SM. A 68 year old man with diabetes mellitus and progressive muscle weakness. N Engl J Med 1987; 316: 1326–1335
  • Medina-Sanchez M., Rodriguez-Sanchez C., Vega-Alvarez J. A., Menendez-Pelaez A. Ultrastructural study of neuromuscular junction in rectus femoris muscle of streptozotocin-diabetic rats. Histol Histopathol 1992; 7: 607–610
  • Challiss RAJ, Vranick M., Radda G. K. Bioenergetic changes during contraction and recovery in diabetic rat skeletal muscle. Am J Physiol 1989; 256: 129–137
  • Challiss RAJ, Blackledge M. J., Radda G. K. Spatially resolved changes in diabetic rat skeletal muscle metabolism in vivo studied by31p-n.m.r. spectroscopy. Biochem J 1990; 268: 111–115
  • Cotter M., Cameron N. E., Lean D. R., Robertson S. Effects of long-term streptozotocin diabetes on the contractile and histochemical properties of rat muscles. Q J Exp Physiol 1989; 74: 65–74
  • Cameron N. E., Cotter M. A., Robertson S. Changes in skeletal muscle contractile properties in streptozotocin-induced diabetic rats and role of polyol pathway and hypoinsulinemia. Diabetes 1990; 39: 460–465
  • Hida W., Shindoh C., Satoh J., Sagara M., Kikuchi Y., Toyota T., Shirato K. N-acetylcysteine inhibits loss of diaphragm function in streptozotocin-treated rats. Am J Respir Crit Care Med 1996; 153: 1875–1879
  • Stephenson GMM, O'Callaghan A., Stephenson D. G. Single-fiber study of contractile and biochemical properties of skeletal muscles in streptozotocin-induced diabetic rats. Diabetes 1994; 43: 622–628
  • Nishimura M., Tsutsui I., Yagasaki O., Yanagiya I. Transmitter release at the mouse neuromuscular junction stimulated by cadmium ions. Arch Int Pharmacodyn Ther 1984; 271: 106–121
  • Penner R., Dreyer F. Two different presynaptic calcium currents in mouse motor nerve terminals. Pflugers Arch 1986; 406: 190–197
  • Cooper G. P., Manalis R. S. Interactions of lead and cadmium on acetylcholine release at the frog neuromuscular junction. Toxicol Appl Pharmacol 1984; 74: 411–416
  • Guan Y. Y., Quastel D. M., Saint D. A. Multiple actions of cadmium on transmitter release at the mouse neuromuscular junction. Can J Physiol Pharmacol 1987; 65: 2131–2136
  • Braga M. F., Harvey A. L., Rowan E. G. Effects of tacrine, velnacrine (HP029), suronacrine (HP128), and 3,4-diaminopyridine on skeletal neuromuscular transmission in vitro. Br J Pharmacol 1991; 102: 909–915
  • Braga M. F., Rowan E. G. Reversal by cysteine of the cadmium-induced block of skeletal neuromuscular transmission in vitro. Br J Pharmacol 1992; 107: 95–100
  • Stevens JP. Determination of glucose by an automatic analyser. Clin Chem Acta 1971; 32: 199–201
  • Klip A., Paguet M. R. Glucose transport and glucose transporter in muscle and their metabolic regulation. Diabetes Care 1990; 13: 228–243
  • Braga M. F., Rowan E. G. The pharmacological effects of cadmium on skeletal neuromuscular transmission. Gen Pharmacol 1994; 25: 1729–1739
  • Zengel J. E., Lee D. T., Sosa M. A., Mosier D. R. Effects of calcium channel blockers on stimulation-induced changes in transmitter release at the frog neuromuscular junction. Synapse 1993; 15: 251–262
  • Molgo J., Pecot-Dechavassine M., Thesleff S. Effects of cadmium on quantal transmitter release and ultrastructure of frog motor nerve endings. J Neural Transm 1989; 77: 79–91
  • Eibschutz B., Lopaschuk G. D., McNeill J. H., Katz S. Ca2+transport in skeletal muscle sarcoplasmic reticulum of the chronically diabetic rat. Res Commun Chem Pathol Pharmacol 1984; 45: 301–304
  • Duncan CJ. Role of calcium in triggering rapid ultrastructural damage in muscle: A study with chemically skinned fibres. J Cell Sc. 1987; 87: 581–594
  • Fahim M. A., El-Sabban F., Davidson N. Muscle contractility decrement and correlated morphology during the pathogenesis of streptozotocin-diabetic mice. Anat Rec 1998; 251: 240–244
  • Dockery P., Sharma A. K. Ultrastructural abnormalities of myelinated fibers in the tibial nerve of streptozotocin diabetic rats. J Neurol Sci 1990; 98: 327–345
  • Reske-Nielsen E., Gregersen G., Harinsen A., Lundback K. Morphological abnormalities of the terminal apparatus in recent juvenile diabetes. Diabetologia 1970; 6: 104–109
  • Mendell J. R., Sahank Z., Warmolts J. R., Marshall J. K., Thibert P. The spontaneously diabetic BB wistar rat. Morphologic and physiologic studies of peripheral nerve. J Neurol Sci 1981; 52: 103–115
  • Johnson PC. Anterior horn cell eosinophilic cytoplasmic inclusion bodies in sporadic motor neuron disease of adults. J Neuropathol Exp Neurol 1976; 35: 368–380
  • Pachter B. R., Eberstein A. Motor endplate involvement in the extraocular muscles of the myotonic rat. Graefe's Arch Clin Exp Ophthalmol 1986; 224: 325–329
  • Fahim MA. Rapid neuromuscular remodelling following limb immobilization. Anat Rec 1989; 224: 102–109
  • Fahim M. A., Robbins N. Ultrastructural studies of young and old mouse neuromuscular junctions. J Neurocytol 1982; 11: 641–656

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