Molecular and immunohistochemical studies in expression of voltage-dependent Ca2+ channels in dorsal root ganglia from streptozotocin-induced diabetic mice
Spinally delivered N-, P/Q- and L-type Ca2+-channel blockers potentiate morphine analgesia in mice
Fukuizumi T., Ohkubo T., and Kitamura K. Spinally delivered N-, P/Q- and L-type Ca2+-channel blockers potentiate morphine analgesia in mice. Life Sciences 73 (2003) 2873-2881
Voltage-dependent calcium currents are enhanced in dorsal root ganglion neurones from the Bio Bred/Worchester diabetic rat
Hall K.E., Sima A.A., and Wile J.W. Voltage-dependent calcium currents are enhanced in dorsal root ganglion neurones from the Bio Bred/Worchester diabetic rat. Journal of Physiology 486 (1995) 313-322
Morphometry of dorsal root ganglion in chronic experimental diabetic neuropathy
Kishi M., Tanabe J., Schmelzer J.D., and Low P.A. Morphometry of dorsal root ganglion in chronic experimental diabetic neuropathy. Diabetes 51 (2002) 819-824
Effects of desipramine, amitriptyline, and fluoxetine on pain in diabetic neuropathy
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Identification and electrophysiological characteristics of isoforms of T-type calcium channel Cav3.2 expressed in pregnant human uterus
Ohkubo T., Inoue Y., Kawarabayashi T., and Kitamura K. Identification and electrophysiological characteristics of isoforms of T-type calcium channel Cav3.2 expressed in pregnant human uterus. Cellular Physiology and Biochemistry 16 (2005) 245-254
Effect of streptozotocin-induced diabetes on the activity of calcium channels in rat dorsal horn neurons
Voitenko N.V., Kruglikov I.A., Kostyuk E.P., and Kostyuk P.G. Effect of streptozotocin-induced diabetes on the activity of calcium channels in rat dorsal horn neurons. Neuroscience 95 (2000) 519-524
Localization of Ca2+ channel subtypes on rat spinal motor neurons, interneurons, and nerve terminals
Westenbroek R.E., Hoskins L., and Catterall W.A. Localization of Ca2+ channel subtypes on rat spinal motor neurons, interneurons, and nerve terminals. Journal of Neuroscience 18 (1998) 6319-6330
Streptozocin-induced neuropathy is associated with altered expression of voltage-gated calcium channel subunit mRNAs in rat dorsal root ganglion neurones
Yusaf S.P., Goodman J., Gonzalez I.M., Bramwell S., Pinnock R.D., Dixon A.K., and Lee K. Streptozocin-induced neuropathy is associated with altered expression of voltage-gated calcium channel subunit mRNAs in rat dorsal root ganglion neurones. Biochemical and Biophysical Research Communications 289 (2001) 402-406