• | Computational model of bladder small DRG neuron soma (Mandge & Manchanda 2018) |
References and models cited by this paper | References and models that cite this paper | |||||||||||||||||||||||
Amir R, Devor M (2003) Electrical excitability of the soma of sensory neurons is required for spike invasion of the soma, but not for through-conduction. Biophys J 84:2181-91 [Journal] [PubMed]
Aosaki T, Kasai H (1989) Characterization of two kinds of high-voltage-activated Ca-channel currents in chick sensory neurons. Differential sensitivity to dihydropyridines and omega-conotoxin GVIA. Pflugers Arch 414:150-6 [PubMed] Aruljothi S,Mandge D,Manchanda R (2017) A biophysical model of heat sensitivity in nociceptive C-fiber neurons Neural Engineering (NER), 2017 8th International IEEE/EMBS Conference on :596-599 Bahia PK, Suzuki R, Benton DC, Jowett AJ, Chen MX, Trezise DJ, Dickenson AH, Moss GW (2005) A functional role for small-conductance calcium-activated potassium channels in sensory pathways including nociceptive processes. J Neurosci 25:3489-98 [Journal] [PubMed] Baker MD (2005) Protein kinase C mediates up-regulation of tetrodotoxin-resistant, persistent Na+ current in rat and mouse sensory neurones. J Physiol 567:851-67 [Journal] [PubMed]
Baxter DA, Byrne JH (2007) Simulator for neural networks and action potentials. Methods Mol Biol 401:127-54 [Journal] [PubMed] Benham CD, Evans ML, McBain CJ (1992) Ca2+ efflux mechanisms following depolarization evoked calcium transients in cultured rat sensory neurones. J Physiol 455:567-83 [PubMed] Bett GC, Dinga-Madou I, Zhou Q, Bondarenko VE, Rasmusson RL (2011) A model of the interaction between N-type and C-type inactivation in Kv1.4 channels. Biophys J 100:11-21 [Journal] [PubMed] Bischoff U, Vogel W, Safronov BV (1998) Na+-activated K+ channels in small dorsal root ganglion neurones of rat. J Physiol 510 ( Pt 3):743-54 [PubMed] Black JA, Cummins TR, Yoshimura N, de Groat WC, Waxman SG (2003) Tetrodotoxin-resistant sodium channels Na(v)1.8/SNS and Na(v)1.9/NaN in afferent neurons innervating urinary bladder in control and spinal cord injured rats. Brain Res 963:132-8 [PubMed] Blatter LA, Wier WG (1990) Intracellular diffusion, binding, and compartmentalization of the fluorescent calcium indicators indo-1 and fura-2. Biophys J 58:1491-9 [Journal] [PubMed] Boyman L, Williams GS, Khananshvili D, Sekler I, Lederer WJ (2013) NCLX: the mitochondrial sodium calcium exchanger. J Mol Cell Cardiol 59:205-13 [Journal] [PubMed] Brock MW, Mathes C, Gilly WF (2001) Selective open-channel block of Shaker (Kv1) potassium channels by s-nitrosodithiothreitol (SNDTT). J Gen Physiol 118:113-34 [PubMed] Carnevale NT, Hines ML (2006) The NEURON Book [Journal] Catterall WA, Goldin AL, Waxman SG (2005) International Union of Pharmacology. XLVII. Nomenclature and structure-function relationships of voltage-gated sodium channels. Pharmacol Rev 57:397-409 [Journal] [PubMed] Chambers JD, Bornstein JC, Gwynne RM, Koussoulas K, Thomas EA (2014) A detailed, conductance-based computer model of intrinsic sensory neurons of the gastrointestinal tract. Am J Physiol Gastrointest Liver Physiol 307:G517-32 [Journal] [PubMed]
Choi JS, Waxman SG (2011) Physiological interactions between Na(v)1.7 and Na(v)1.8 sodium channels: a computer simulation study. J Neurophysiol 106:3173-84 [Journal] [PubMed] Cordoba-Rodriguez R, Moore KA, Kao JP, Weinreich D (1999) Calcium regulation of a slow post-spike hyperpolarization in vagal afferent neurons. Proc Natl Acad Sci U S A 96:7650-7 [PubMed] Courtemanche M, Ramirez RJ, Nattel S (1998) Ionic mechanisms underlying human atrial action potential properties: insights from a mathematical model. Am J Physiol 275:H301-21 [Journal] [PubMed]
de Groat WC (1997) A neurologic basis for the overactive bladder. Urology 50:36-52; discussion 53-6 [PubMed] de Groat WC, Yoshimura N (2009) Afferent nerve regulation of bladder function in health and disease. Handb Exp Pharmacol :91-138 [Journal] [PubMed] de Groat WC, Yoshimura N (2012) Plasticity in reflex pathways to the lower urinary tract following spinal cord injury. Exp Neurol 235:123-32 [Journal] [PubMed] De Schutter E (2009) Modeling intracellular calcium dynamics Computational Modeling Methods for Neuroscientists, De Schutter E, ed. pp.93 Deba F, Bessac BF (2015) Anoctamin-1 Cl(-) channels in nociception: activation by an N-aroylaminothiazole and capsaicin and inhibition by T16A[inh]-A01. Mol Pain 11:55 [Journal] [PubMed] Diochot S, Richard S, Valmier J (1995) Diversity of voltage-gated calcium currents in large diameter embryonic mouse sensory neurons. Neuroscience 69:627-41 [PubMed] Du X, Hao H, Gigout S, Huang D, Yang Y, Li L, Wang C, Sundt D, Jaffe DB, Zhang H, Gamper N (2014) Control of somatic membrane potential in nociceptive neurons and its implications for peripheral nociceptive transmission. Pain 155:2306-22 [Journal] [PubMed] Dupont JL, Bossu JL, Feltz A (1986) Effect of internal calcium concentration on calcium currents in rat sensory neurones. Pflugers Arch 406:433-5 [PubMed] Faber ES, Sah P (2003) Calcium-activated potassium channels: multiple contributions to neuronal function. Neuroscientist 9:181-94 [Journal] [PubMed] Fang X, Djouhri L, McMullan S, Berry C, Waxman SG, Okuse K, Lawson SN (2006) Intense isolectin-B4 binding in rat dorsal root ganglion neurons distinguishes C-fiber nociceptors with broad action potentials and high Nav1.9 expression. J Neurosci 26:7281-92 [Journal] [PubMed] Fang X, McMullan S, Lawson SN, Djouhri L (2005) Electrophysiological differences between nociceptive and non-nociceptive dorsal root ganglion neurones in the rat in vivo. J Physiol 565:927-43 [Journal] [PubMed] Faville RA, Pullan AJ, Sanders KM, Smith NP (2008) A biophysically based mathematical model of unitary potential activity in interstitial cells of Cajal. Biophys J 95:88-104 [Journal] [PubMed] Fink CC, Slepchenko B, Moraru II, Watras J, Schaff JC, Loew LM (2000) An image-based model of calcium waves in differentiated neuroblastoma cells. Biophys J 79:163-83 [Journal] [PubMed]
Fox AP, Nowycky MC, Tsien RW (1987) Single-channel recordings of three types of calcium channels in chick sensory neurones. J Physiol 394:173-200 [PubMed] Fox AP, Nowycky MC, Tsien RW (1987) Kinetic and pharmacological properties distinguishing three types of calcium currents in chick sensory neurones. J Physiol 394:149-72 [PubMed] Frost J (2014) Why Is There No R-Squared for Nonlinear Regression? (online resource) [Journal] Fukumoto N, Kitamura N, Niimi K, Takahashi E, Itakura C, Shibuya I (2012) Ca2+ channel currents in dorsal root ganglion neurons of P/Q-type voltage-gated Ca2+ channel mutant mouse, rolling mouse Nagoya. Neurosci Res 73:199-206 [Journal] [PubMed] Gemes G, Koopmeiners A, Rigaud M, Lirk P, Sapunar D, Bangaru ML, Vilceanu D, Garrison SR, Ljubkovic M, Mueller SJ, Stucky CL, Hogan QH (2013) Failure of action potential propagation in sensory neurons: mechanisms and loss of afferent filtering in C-type units after painful nerve injury. J Physiol 591:1111-31 [Journal] [PubMed] Girault A, Haelters JP, Potier-Cartereau M, Chantôme A, Jaffrés PA, Bougnoux P, Joulin V, Vandier C (2012) Targeting SKCa channels in cancer: potential new therapeutic approaches. Curr Med Chem 19:697-713 [PubMed] Gover TD, Moreira TH, Weinreich D (2009) Role of calcium in regulating primary sensory neuronal excitability. Handb Exp Pharmacol :563-87 [Journal] [PubMed] Grynkiewicz G, Poenie M, Tsien RY (1985) A new generation of Ca2+ indicators with greatly improved fluorescence properties. J Biol Chem 260:3440-50 [PubMed] Hamada K, Matsuura H, Sanada M, Toyoda F, Omatsu-Kanbe M, Kashiwagi A, Yasuda H (2003) Properties of the Na+/K+ pump current in small neurons from adult rat dorsal root ganglia. Br J Pharmacol 138:1517-27 [Journal] [PubMed] Han C, Estacion M, Huang J, Vasylyev D, Zhao P, Dib-Hajj SD, Waxman SG (2015) Human Na(v)1.8: enhanced persistent and ramp currents contribute to distinct firing properties of human DRG neurons. J Neurophysiol 113:3172-85 [Journal] [PubMed] Hanani M (2015) Role of satellite glial cells in gastrointestinal pain. Front Cell Neurosci 9:412 [Journal] [PubMed] Hayashi T, Kondo T, Ishimatsu M, Yamada S, Nakamura K, Matsuoka K, Akasu T (2009) Expression of the TRPM8-immunoreactivity in dorsal root ganglion neurons innervating the rat urinary bladder. Neurosci Res 65:245-51 [Journal] [PubMed] Hayashi Y, Takimoto K, Chancellor MB, Erickson KA, Erickson VL, Kirimoto T, Nakano K, de Groat WC, Yoshimura N (2009) Bladder hyperactivity and increased excitability of bladder afferent neurons associated with reduced expression of Kv1.4 alpha-subunit in rats with cystitis. Am J Physiol Regul Integr Comp Physiol 296:R1661-70 [Journal] [PubMed] Helmchen F, Imoto K, Sakmann B (1996) Ca2+ buffering and action potential-evoked Ca2+ signaling in dendrites of pyramidal neurons. Biophys J 70:1069-81 [Journal] [PubMed] Hilaire C, Diochot S, Desmadryl G, Richard S, Valmier J (1997) Toxin-resistant calcium currents in embryonic mouse sensory neurons. Neuroscience 80:267-76 [PubMed] Hille B (2001) Ion channels of excitable membranes (3rd Ed) :445-452 Hines ML, Carnevale NT (1997) The NEURON simulation environment. Neural Comput 9:1179-209 [PubMed] Hougaard C, Eriksen BL, Jørgensen S, Johansen TH, Dyhring T, Madsen LS, Strøbaek D, Christophersen P (2007) Selective positive modulation of the SK3 and SK2 subtypes of small conductance Ca2+-activated K+ channels. Br J Pharmacol 151:655-65 [Journal] [PubMed] Hougaard C, Fraser MO, Chien C, Bookout A, Katofiasc M, Jensen BS, Rode F, Bitsch-Nørhave J, Teuber L, Thor KB, Strøbaek D, Burgard EC, Rønn LC (2009) A positive modulator of K Ca 2 and K Ca 3 channels, 4,5-dichloro-1,3-diethyl-1,3-dihydro-benzoimidazol-2-one (NS4591), inhibits bladder afferent firing in vitro and bladder overactivity in vivo. J Pharmacol Exp Ther 328:28-39 [Journal] [PubMed] Jancsó G, Maggi CA (1987) Distribution of capsaicin-sensitive urinary bladder afferents in the rat spinal cord. Brain Res 418:371-6 [PubMed] Jenkins DP, Strøbæk D, Hougaard C, Jensen ML, Hummel R, Sørensen US, Christophersen P, Wulff H (2011) Negative gating modulation by (R)-N-(benzimidazol-2-yl)-1,2,3,4-tetrahydro-1-naphthylamine (NS8593) depends on residues in the inner pore vestibule: pharmacological evidence of deep-pore gating of K(Ca)2 channels. Mol Pharmacol 79:899-909 [Journal] [PubMed] Jeub M, Emrich M, Pradier B, Taha O, Gailus-Durner V, Fuchs H, de Angelis MH, Huylebroeck D, Zimmer A, Beck H, Racz I (2011) The transcription factor Smad-interacting protein 1 controls pain sensitivity via modulation of DRG neuron excitability. Pain 152:2384-98 [Journal] [PubMed] Jin X, Shah S, Liu Y, Zhang H, Lees M, Fu Z, Lippiat JD, Beech DJ, Sivaprasadarao A, Baldwin SA, Zhang H, Gamper N (2013) Activation of the Cl- channel ANO1 by localized calcium signals in nociceptive sensory neurons requires coupling with the IP3 receptor. Sci Signal 6:ra73 [Journal] [PubMed] Kadekawa K, Majima T, Shimizu T, Wada N, de Groat WC, Kanai AJ, Goto M, Yoshiyama M, Sugaya K, Yoshimura N (2017) The role of capsaicin-sensitive C-fiber afferent pathways in the control of micturition in spinal-intact and spinal cord-injured mice. Am J Physiol Renal Physiol 313:F796-F804 [Journal] [PubMed] Kanda H, Clodfelder-Miller BJ, Gu JG, Ness TJ, DeBerry JJ (2016) Electrophysiological properties of lumbosacral primary afferent neurons innervating urothelial and non-urothelial layers of mouse urinary bladder. Brain Res 1648:81-89 [Journal] [PubMed] Keast JR, De Groat WC (1992) Segmental distribution and peptide content of primary afferent neurons innervating the urogenital organs and colon of male rats. J Comp Neurol 319:615-23 [Journal] [PubMed] Koopmeiners AS, Mueller S, Kramer J, Hogan QH (2013) Effect of electrical field stimulation on dorsal root ganglion neuronal function. Neuromodulation 16:304-11; discussion 310-1 [Journal] [PubMed] Kouranova EV, Strassle BW, Ring RH, Bowlby MR, Vasilyev DV (2008) Hyperpolarization-activated cyclic nucleotide-gated channel mRNA and protein expression in large versus small diameter dorsal root ganglion neurons: correlation with hyperpolarization-activated current gating. Neuroscience 153:1008-19 [Journal] [PubMed] La JH, Schwartz ES, Gebhart GF (2011) Differences in the expression of transient receptor potential channel V1, transient receptor potential channel A1 and mechanosensitive two pore-domain K+ channels between the lumbar splanchnic and pelvic nerve innervations of mouse urinary bladder and colon. Neuroscience 186:179-87 [Journal] [PubMed] Li L, Bischofberger J, Jonas P (2007) Differential gating and recruitment of P/Q-, N-, and R-type Ca2+ channels in hippocampal mossy fiber boutons. J Neurosci 27:13420-9 [Journal] [PubMed] Li W, Aldrich RW (2011) Electrostatic influences of charged inner pore residues on the conductance and gating of small conductance Ca2+ activated K+ channels. Proc Natl Acad Sci U S A 108:5946-53 [Journal] [PubMed] Li YX, Rinzel J (1994) Equations for InsP3 receptor-mediated [Ca2+]i oscillations derived from a detailed kinetic model: a Hodgkin-Huxley like formalism. J Theor Biol 166:461-73 [Journal] [PubMed] Lokuta AJ, Komai H, McDowell TS, Valdivia HH (2002) Functional properties of ryanodine receptors from rat dorsal root ganglia. FEBS Lett 511:90-6 [PubMed] Lu SG, Gold MS (2008) Inflammation-induced increase in evoked calcium transients in subpopulations of rat dorsal root ganglion neurons. Neuroscience 153:279-88 [Journal] [PubMed] Lu SG, Zhang X, Gold MS (2006) Intracellular calcium regulation among subpopulations of rat dorsal root ganglion neurons. J Physiol 577:169-90 [Journal] [PubMed] Luik RM, Wang B, Prakriya M, Wu MM, Lewis RS (2008) Oligomerization of STIM1 couples ER calcium depletion to CRAC channel activation. Nature 454:538-42 [Journal] [PubMed] Lüscher C, Streit J, Quadroni R, Lüscher HR (1994) Action potential propagation through embryonic dorsal root ganglion cells in culture. I. Influence of the cell morphology on propagation properties. J Neurophysiol 72:622-33 [Journal] [PubMed] Maingret F, Coste B, Padilla F, Clerc N, Crest M, Korogod SM, Delmas P (2008) Inflammatory mediators increase Nav1.9 current and excitability in nociceptors through a coincident detection mechanism. J Gen Physiol 131:211-25 [Journal] [PubMed] Malykhina AP, Qin C, Foreman RD, Akbarali HI (2004) Colonic inflammation increases Na+ currents in bladder sensory neurons. Neuroreport 15:2601-5 [PubMed] Malykhina AP, Qin C, Greenwood-van Meerveld B, Foreman RD, Lupu F, Akbarali HI (2006) Hyperexcitability of convergent colon and bladder dorsal root ganglion neurons after colonic inflammation: mechanism for pelvic organ cross-talk. Neurogastroenterol Motil 18:936-48 [Journal] [PubMed] Mandge (2017) Computational model for intercellular communication between DRG neurons via satellite glial cells using ATP Neural Engineering (NER), 2017 8th International IEEE/EMBS Conference on :648-651 Mandge D, Manchanda R (2015) Computational studies on bladder small dorsal root ganglion neurons: Modelling BK channels. Conf Proc IEEE Eng Med Biol Soc 2015:5376-9 [Journal] [PubMed] Masuda N, Hayashi Y, Matsuyoshi H, Chancellor MB, de Groat WC, Yoshimura N (2006) Characterization of hyperpolarization-activated current (Ih) in dorsal root ganglion neurons innervating rat urinary bladder. Brain Res 1096:40-52 [Journal] [PubMed] Matsuyoshi H, Masuda N, Chancellor MB, Erickson VL, Hirao Y, de Groat WC, Wanaka A, Yoshimura N (2006) Expression of hyperpolarization-activated cyclic nucleotide-gated cation channels in rat dorsal root ganglion neurons innervating urinary bladder. Brain Res 1119:115-23 [Journal] [PubMed] McHugh JM, Kenyon JL (2004) An Excel-based model of Ca2+ diffusion and fura 2 measurements in a spherical cell. Am J Physiol Cell Physiol 286:C342-8 [Journal] [PubMed] Medvedeva YV, Kim MS, Usachev YM (2008) Mechanisms of prolonged presynaptic Ca2+ signaling and glutamate release induced by TRPV1 activation in rat sensory neurons. J Neurosci 28:5295-311 [Journal] [PubMed] Mongan LC, Hill MJ, Chen MX, Tate SN, Collins SD, Buckby L, Grubb BD (2005) The distribution of small and intermediate conductance calcium-activated potassium channels in the rat sensory nervous system. Neuroscience 131:161-75 [Journal] [PubMed] Nagai T, Sawano A, Park ES, Miyawaki A (2001) Circularly permuted green fluorescent proteins engineered to sense Ca2+. Proc Natl Acad Sci U S A 98:3197-202 [Journal] [PubMed] Nishiguchi J, Sasaki K, Seki S, Chancellor MB, Erickson KA, de Groat WC, Kumon H, Yoshimura N (2004) Effects of isolectin B4-conjugated saporin, a targeting cytotoxin, on bladder overactivity induced by bladder irritation. Eur J Neurosci 20:474-82 [Journal] [PubMed] O'Mullane LM, Keast JR, Osborne PB (2013) Co-cultures provide a new tool to probe communication between adult sensory neurons and urothelium. J Urol 190:737-45 [Journal] [PubMed] Olivares E, Salgado S, Maidana JP, Herrera G, Campos M, Madrid R, Orio P (2015) TRPM8-Dependent Dynamic Response in a Mathematical Model of Cold Thermoreceptor. PLoS One 10:e0139314 [Journal] [PubMed]
Palmer CJ,Choi JM (2017) Pathophysiology of Overactive Bladder: Current Understanding Current Bladder Dysfunction Reports 12(1):74-79 Passmore GM (2005) Dorsal root ganglion neurones in culture: a model system for identifying novel analgesic targets? J Pharmacol Toxicol Methods 51:201-8 [Journal] [PubMed] Passmore GM, Selyanko AA, Mistry M, Al-Qatari M, Marsh SJ, Matthews EA, Dickenson AH, Brown TA, Burbidge SA, Main M, Brown DA (2003) KCNQ/M currents in sensory neurons: significance for pain therapy. J Neurosci 23:7227-36 [PubMed] Rasband MN, Park EW, Vanderah TW, Lai J, Porreca F, Trimmer JS (2001) Distinct potassium channels on pain-sensing neurons. Proc Natl Acad Sci U S A 98:13373-8 [Journal] [PubMed] Sah P, Davies P (2000) Calcium-activated potassium currents in mammalian neurons. Clin Exp Pharmacol Physiol 27:657-63 [PubMed] Sah P, Faber ES (2002) Channels underlying neuronal calcium-activated potassium currents. Prog Neurobiol 66:345-53 [PubMed] Salzer I, Gantumur E, Yousuf A, Boehm S (2016) Control of sensory neuron excitability by serotonin involves 5HT2C receptors and Ca(2+)-activated chloride channels. Neuropharmacology 110:277-286 [Journal] [PubMed] Scheff NN, Lu SG, Gold MS (2013) Contribution of endoplasmic reticulum Ca2+ regulatory mechanisms to the inflammation-induced increase in the evoked Ca2+ transient in rat cutaneous dorsal root ganglion neurons. Cell Calcium 54:46-56 [Journal] [PubMed] Scheff NN, Yilmaz E, Gold MS (2014) The properties, distribution and function of Na(+)-Ca(2+) exchanger isoforms in rat cutaneous sensory neurons. J Physiol 592:4969-93 [Journal] [PubMed] Scholz A, Gruss M, Vogel W (1998) Properties and functions of calcium-activated K+ channels in small neurones of rat dorsal root ganglion studied in a thin slice preparation. J Physiol 513 ( Pt 1):55-69 [PubMed] Sheets PL, Jackson JO, Waxman SG, Dib-Hajj SD, Cummins TR (2007) A Nav1.7 channel mutation associated with hereditary erythromelalgia contributes to neuronal hyperexcitability and displays reduced lidocaine sensitivity. J Physiol 581:1019-31 [Journal] [PubMed] Shieh CC, Turner SC, Zhang XF, Milicic I, Parihar A, Jinkerson T, Wilkins J, Buckner SA, Gopalakrishnan M (2007) A-272651, a nonpeptidic blocker of large-conductance Ca2+-activated K+ channels, modulates bladder smooth muscle contractility and neuronal action potentials. Br J Pharmacol 151:798-806 [Journal] [PubMed] Shmigol A, Verkhratsky A, Isenberg G (1995) Calcium-induced calcium release in rat sensory neurons. J Physiol 489 ( Pt 3):627-36 [PubMed] Shutov LP, Kim MS, Houlihan PR, Medvedeva YV, Usachev YM (2013) Mitochondria and plasma membrane Ca2+-ATPase control presynaptic Ca2+ clearance in capsaicin-sensitive rat sensory neurons. J Physiol 591:2443-62 [Journal] [PubMed] Soh H, Park CS (2001) Inwardly rectifying current-voltage relationship of small-conductance Ca2+-activated K+ channels rendered by intracellular divalent cation blockade. Biophys J 80:2207-15 [Journal] [PubMed] Soh H, Park CS (2002) Localization of divalent cation-binding site in the pore of a small conductance Ca(2+)-activated K(+) channel and its role in determining current-voltage relationship. Biophys J 83:2528-38 [Journal] [PubMed] Spiess AN, Neumeyer N (2010) An evaluation of R2 as an inadequate measure for nonlinear models in pharmacological and biochemical research: a Monte Carlo approach. BMC Pharmacol 10:6 [Journal] [PubMed] Steephen JE, Manchanda R (2009) Differences in biophysical properties of nucleus accumbens medium spiny neurons emerging from inactivation of inward rectifying potassium currents. J Comput Neurosci 27:453-70 [Journal] [PubMed]
Sterratt D, Graham B, Gillies A, Willshaw D (2011) Principles of Computational Modelling in Neuroscience, Cambridge University Press :1-401 [Journal]
Strøbaek D, Hougaard C, Johansen TH, Sørensen US, Nielsen EØ, Nielsen KS, Taylor RD, Pedarzani P, Christophersen P (2006) Inhibitory gating modulation of small conductance Ca2+-activated K+ channels by the synthetic compound (R)-N-(benzimidazol-2-yl)-1,2,3,4-tetrahydro-1-naphtylamine (NS8593) reduces afterhyperpolarizing current in hippocampal CA1 neurons. Mol Pharmacol 70:1771-82 [Journal] [PubMed] Strøbaek D, Teuber L, Jørgensen TD, Ahring PK, Kjaer K, Hansen RS, Olesen SP, Christophersen P, Skaaning-Jensen B (2004) Activation of human IK and SK Ca2+ -activated K+ channels by NS309 (6,7-dichloro-1H-indole-2,3-dione 3-oxime). Biochim Biophys Acta 1665:1-5 [Journal] [PubMed] Sundt D, Gamper N, Jaffe DB (2015) Spike propagation through the dorsal root ganglia in an unmyelinated sensory neuron: a modeling study. J Neurophysiol 114:3140-53 [Journal] [PubMed]
Svichar N, Kostyuk P, Verkhratsky A (1997) Mitochondria buffer Ca2+ entry but not intracellular Ca2+ release in mouse DRG neurones. Neuroreport 8:3929-32 [PubMed] Takahashi R, Yoshizawa T, Yunoki T, Tyagi P, Naito S, de Groat WC, Yoshimura N (2013) Hyperexcitability of bladder afferent neurons associated with reduction of Kv1.4 a-subunit in rats with spinal cord injury. J Urol 190:2296-304 [Journal] [PubMed] Thayer SA, Miller RJ (1990) Regulation of the intracellular free calcium concentration in single rat dorsal root ganglion neurones in vitro. J Physiol 425:85-115 [PubMed] Tigerholm J, Petersson ME, Obreja O, Lampert A, Carr R, Schmelz M, Fransén E (2014) Modeling activity-dependent changes of axonal spike conduction in primary afferent C-nociceptors. J Neurophysiol 111:1721-35 [Journal] [PubMed] Tong WC, Choi CY, Kharche S, Karche S, Holden AV, Zhang H, Taggart MJ (2011) A computational model of the ionic currents, Ca2+ dynamics and action potentials underlying contraction of isolated uterine smooth muscle. PLoS One 6:e18685 [Journal] [PubMed] Usachev YM, DeMarco SJ, Campbell C, Strehler EE, Thayer SA (2002) Bradykinin and ATP accelerate Ca(2+) efflux from rat sensory neurons via protein kinase C and the plasma membrane Ca(2+) pump isoform 4. Neuron 33:113-22 [PubMed] Usachev YM, Thayer SA (1999) Ca2+ influx in resting rat sensory neurones that regulates and is regulated by ryanodine-sensitive Ca2+ stores. J Physiol 519 Pt 1:115-30 [PubMed] Verkhratsky A, Petersen OH (2002) The endoplasmic reticulum as an integrating signalling organelle: from neuronal signalling to neuronal death. Eur J Pharmacol 447:141-54 [PubMed] Vydyanathan A, Wu ZZ, Chen SR, Pan HL (2005) A-type voltage-gated K+ currents influence firing properties of isolectin B4-positive but not isolectin B4-negative primary sensory neurons. J Neurophysiol 93:3401-9 [Journal] [PubMed] Wagner J, Keizer J (1994) Effects of rapid buffers on Ca2+ diffusion and Ca2+ oscillations. Biophys J 67:447-56 [Journal] [PubMed] Wall PD, Devor M (1983) Sensory afferent impulses originate from dorsal root ganglia as well as from the periphery in normal and nerve injured rats. Pain 17:321-39 [PubMed] Willms AR, Baro DJ, Harris-Warrick RM, Guckenheimer J (1999) An improved parameter estimation method for Hodgkin-Huxley models. J Comput Neurosci 6:145-68 [PubMed]
Xiao Q, Yu K, Perez-Cornejo P, Cui Y, Arreola J, Hartzell HC (2011) Voltage- and calcium-dependent gating of TMEM16A/Ano1 chloride channels are physically coupled by the first intracellular loop. Proc Natl Acad Sci U S A 108:8891-6 [Journal] [PubMed] Yilmaz E, Watkins SC, Gold MS (2017) Paclitaxel-induced increase in mitochondrial volume mediates dysregulation of intracellular Ca2+ in putative nociceptive glabrous skin neurons from the rat. Cell Calcium 62:16-28 [Journal] [PubMed] Yoshimura N (1999) Bladder afferent pathway and spinal cord injury: possible mechanisms inducing hyperreflexia of the urinary bladder. Prog Neurobiol 57:583-606 [PubMed] Yoshimura N, Bennett NE, Hayashi Y, Ogawa T, Nishizawa O, Chancellor MB, de Groat WC, Seki S (2006) Bladder overactivity and hyperexcitability of bladder afferent neurons after intrathecal delivery of nerve growth factor in rats. J Neurosci 26:10847-55 [Journal] [PubMed] Yoshimura N, de Groat WC (1997) Neural control of the lower urinary tract. Int J Urol 4:111-25 [PubMed] Yoshimura N, de Groat WC (1997) Plasticity of Na+ channels in afferent neurones innervating rat urinary bladder following spinal cord injury. J Physiol 503 ( Pt 2):269-76 [PubMed] Yoshimura N, de Groat WC (1999) Increased excitability of afferent neurons innervating rat urinary bladder after chronic bladder inflammation. J Neurosci 19:4644-53 [PubMed] Yoshimura N, Seki S, de Groat WC (2001) Nitric oxide modulates Ca(2+) channels in dorsal root ganglion neurons innervating rat urinary bladder. J Neurophysiol 86:304-11 [Journal] [PubMed] Yoshimura N, Seki S, Erickson KA, Erickson VL, Hancellor MB, de Groat WC (2003) Histological and electrical properties of rat dorsal root ganglion neurons innervating the lower urinary tract. J Neurosci 23:4355-61 [PubMed] Yoshimura N, White G, Weight FF, de Groat WC (1996) Different types of Na+ and A-type K+ currents in dorsal root ganglion neurones innervating the rat urinary bladder. J Physiol 494 ( Pt 1):1-16 [PubMed] Yunoki T, Takimoto K, Kita K, Funahashi Y, Takahashi R, Matsuyoshi H, Naito S, Yoshimura N (2014) Differential contribution of Kv4-containing channels to A-type, voltage-gated potassium currents in somatic and visceral dorsal root ganglion neurons. J Neurophysiol 112:2492-504 [Journal] [PubMed] Zeilhofer HU, Swandulla D, Reeh PW, Kress M (1996) Ca2+ permeability of the sustained proton-induced cation current in adult rat dorsal root ganglion neurons. J Neurophysiol 76:2834-40 [Journal] [PubMed] Zhang XL, Mok LP, Katz EJ, Gold MS (2010) BKCa currents are enriched in a subpopulation of adult rat cutaneous nociceptive dorsal root ganglion neurons. Eur J Neurosci 31:450-62 [Journal] [PubMed] Zinck ND, Downie JW (2008) IB4 afferent sprouting contributes to bladder dysfunction in spinal rats. Exp Neurol 213:293-302 [Journal] [PubMed] |