Ginsenosides Have a Suppressive Effect on c-Fos Expression in Brain and Reduce Cardiovascular Responses Increased by Noxious Stimulation to the Rat Tooth |
Jung, Ji-Yeon
(Dental Science Research Institute, Medical Research Center for Biomineralization Disorders, School of Dentistry, Chonnam National University)
Seong, Kyung-Joo (Dental Science Research Institute, Medical Research Center for Biomineralization Disorders, School of Dentistry, Chonnam National University) Moon, In-Ohk (Dental Science Research Institute, Medical Research Center for Biomineralization Disorders, School of Dentistry, Chonnam National University) Cho, Jin-Hyoung (Dental Science Research Institute, Medical Research Center for Biomineralization Disorders, School of Dentistry, Chonnam National University) Kim, Sun-Hun (Dental Science Research Institute, Medical Research Center for Biomineralization Disorders, School of Dentistry, Chonnam National University) Kim, Won-Jae (Dental Science Research Institute, Medical Research Center for Biomineralization Disorders, School of Dentistry, Chonnam National University) |
1 | Chiu R, Boyle WJ, Meek J, Smeal T, Hunter T, Karin M. The c-Fos protein interacts with c-Jun/AP-1 to stimulate transcription of AP-1 responsive genes. Cell. 1988;54:541-552. DOI ScienceOn |
2 | Halazonetis TD, Georgopoulos K, Greenberg ME, Leder P. c-Jun dimerizes with itself and with c-Fos, forming complexes of different DNA binding affinities. Cell. 1988;55:917-924. DOI ScienceOn |
3 | Chattipakorn SC, Light AR, Willcockson HH, Narhi M, Maixner W. The effect of fentanyl on c-fos expression in the trigeminal brainstem complex produced by pulpal heat stimulation in the ferret. Pain. 1999;82:207-215. DOI ScienceOn |
4 | Fujisawa N, Terayama R, Yamaguchi D, Omura S, Yamashiro T, Sugimoto T. Fos protein-like immunoreactive neurons induced by electrical stimulation in the trigeminal sensory nuclear complex of rats with chronically injured peripheral nerve. Exp Brain Res. 2012;219:191-201. DOI ScienceOn |
5 | Nah SY, Park HJ, McCleskey EW. A trace component of ginseng that inhibits channels through a pertussis toxin-sensitive G protein. Proc Natl Acad Sci U S A. 1995;92: 8739-8743. DOI ScienceOn |
6 | Yoon SR, Nah JJ, Shin YH, Kim SK, Nam KY, Choi HS, Nah SY. Ginsenosides induce differential antinociception and inhibit substance P induced-nociceptive response in mice. Life Sci. 1998;62:PL319-325. |
7 | Nah JJ, Choi S, Kim YH, Kim SC, Nam KY, Kim JK, Nah SY. Effect of spinally administred ginseng total saponin on capsaicin-induced pain and excitatory amino acids-induced nociceptive responses. J Ginseng Res. 1999;23:38-43. |
8 | Krukoff TL, Mactavish D, Jhamandas JH. Activation by hypotension of neurons in the hypothalamic paraventricular nucleus that project to the brainstem. J Comp Neurol. 1997;385:285-296. DOI |
9 | Lovick TA, Li P. Integrated function of neurones in the rostral ventrolateral medulla. Prog Brain Res. 1989;81:223-232. DOI |
10 | Kim ND, Kang SY, Schini VB. Ginsenosides evoke endothelium- dependent vascular relaxation in rat aorta. Gen Pharmacol. 1994;25:1071-1077. DOI ScienceOn |
11 | Jeon BH, Kim CS, Park KS, Lee JW, Park JB, Kim KJ, Kim SH, Chang SJ, Nam KY. Effect of Korea red ginseng on the blood pressure in conscious hypertensive rats. Gen Pharmacol. 2000;35:135-141. DOI ScienceOn |
12 | Kaku T, Miyata T, Uruno T, Sako I, Kinoshita A. Chemicopharmacological studies on saponins of Panax ginseng C. A. Meyer. II. Pharmacological part. Arzneimittelforschung. 1975;25:539-547. |
13 | Sugiyo S, Takemura M, Dubner R, Ren K. Trigeminal transition zone/rostral ventromedial medulla connections and facilitation of orofacial hyperalgesia after masseter inflammation in rats. J Comp Neurol. 2005;493:510-523. DOI ScienceOn |
14 | Kumada M, Dampney RA, Reis DJ. The trigeminal depressor response: a cardiovascular reflex originating from the trigeminal system. Brain Res. 1975;92:485-489. DOI ScienceOn |
15 | Kumada M, Dampney RA, Reis DJ. The trigeminal depressor response: a novel vasodepressor response originating from the trigeminal system. Brain Res. 1977;119:305-326. DOI ScienceOn |
16 | Kim HS, Jang CG, Lee MK. Antinarcotic effects of the standardized ginseng extract G115 on morphine. Planta Med. 1990;56:158-163. DOI ScienceOn |
17 | Ramarao P, Bhargava HN. Antagonism of the acute pharmacological actions of morphine by panax ginseng extract. Gen Pharmacol. 1990;21:877-880. DOI ScienceOn |
18 | Choi S, Jung SY, Rhim H, Jeong SW, Lee SM, Nah SY. Evidence that ginsenosides prevent the development of opioid tolerance at the central nervous system. Life Sci. 2000;67:969-975. DOI ScienceOn |
19 | Choi JG, Kang SY, Kim JM, Roh DH, Yoon SY, Park JB, Lee JH, Kim HW. Antinociceptive effect of Cyperi rhizoma and corydalis tuber extracts on neuropathic pain in rats. Korean J Physiol Pharmacol. 2012;16:387-392. DOI ScienceOn |
20 | Mogil JS, Shin YH, McCleskey EW, Kim SC, Nah SY. Ginsenoside Rf. A trace component of ginseng root, produces antinociception in mice. Brain Res. 1998;792:218-228. DOI ScienceOn |
21 | Jung JY, Yang HR, Jeong YJ, Vang MS, Park SW, Oh WM, Kim SH, Youn DH, Na CS, Kim WJ. Effects of acupuncture on c-Fos expression in brain after noxious tooth stimulation of the rat. Am J Chin Med. 2006;34:989-1003. DOI ScienceOn |
22 | Rhim H, Kim H, Lee DY, Oh TH, Nah SY. Ginseng and ginsenoside Rg3, a newly identified active ingredient of ginseng, modulate channel currents in rat sensory neurons. Eur J Pharmacol. 2002;436:151-158. DOI ScienceOn |