1
|
Chae HS, Kang OH, Lee YS, Choi JG, Oh YC,
Jang HJ, Kim MS, Kim JH, Jeong SI and Kwon DY: Inhibition of
LPS-induced iNOS, COX-2 and inflammatory mediator expression by
paeonol through the MAPKs inactivation in RAW 264.7 cells. Am J
Chin Med. 37:181–194. 2009. View Article : Google Scholar : PubMed/NCBI
|
2
|
Kim JB, Han AR, Park EY, Kim JY, Cho W,
Lee J, Seo EK and Lee KT: Inhibition of LPS-induced iNOS, COX-2 and
cytokines expression by poncirin through the NF-kappaB inactivation
in RAW 264.7 macrophage cells. Biol Pharm Bull. 30:2345–2351. 2007.
View Article : Google Scholar : PubMed/NCBI
|
3
|
Matheus AS, Coelho AM, Sampietre S,
Patzina R, Jukemura J, Cunha JE and Machado MC: Effect of
inhibition of prostaglandin E2 production on pancreatic infection
in experimental acute pancreatitis. HPB (Oxford). 9:392–397. 2007.
View Article : Google Scholar
|
4
|
Ji K and Tsirka SE: Inflammation modulates
expression of laminin in the central nervous system following
ischemic injury. J Neuroinflammation. 9:1592012. View Article : Google Scholar : PubMed/NCBI
|
5
|
Chung DW, Yoo KY, Hwang IK, Kim DW, Chung
JY, Lee CH, Choi JH, Choi SY, Youn HY, Lee IS and Won MH: Systemic
administration of lipopolysaccharide induces cyclooxygenase-2
immunoreactivity in endothelium and increases microglia in the
mouse hippocampus. Cell Mol Neurobiol. 30:531–541. 2010. View Article : Google Scholar
|
6
|
Fan LW, Kaizaki A, Tien LT, Pang Y, Tanaka
S, Numazawa S, Bhatt AJ and Cai Z: Celecoxib attenuates systemic
lipopolysaccharide-induced brain inflammation and white matter
injury in the neonatal rats. Neuroscience. 240:27–38. 2013.
View Article : Google Scholar : PubMed/NCBI
|
7
|
Peng M, Wang YL, Wang FF, Chen C and Wang
CY: The cyclooxygenase-2 inhibitor parecoxib inhibits
surgery-induced proinflammatory cytokine expression in the
hippocampus in aged rats. J Surg Res. 178:e1–e8. 2012. View Article : Google Scholar : PubMed/NCBI
|
8
|
Zuloaga KL, O'Connor DT, Handa RJ and
Gonzales RJ: Estrogen receptor beta dependent attenuation of
cytokine-induced cyclo-oxygenase-2 by androgens in human brain
vascular smooth muscle cells and rat mesenteric arteries. Steroids.
77:835–844. 2012. View Article : Google Scholar : PubMed/NCBI
|
9
|
Choi BK, Kim JH, Jung JS, Lee YS, Han ME,
Baek SY, Kim BS, Kim JB and Oh SO: Reduction of ischemia-induced
cerebral injury by all-trans-retinoic acid. Exp Brain Res.
193:581–589. 2009. View Article : Google Scholar
|
10
|
Sastre B and del Pozo V: Role of PGE2 in
asthma and nonasthmatic eosinophilic bronchitis. Mediators Inflamm.
2012:6453832012. View Article : Google Scholar : PubMed/NCBI
|
11
|
Oeckinghaus A and Ghosh S: The NF-kappaB
family of transcription factors and its regulation. Cold Spring
Harb Perspect Biol. 1:a0000342009. View Article : Google Scholar
|
12
|
Sethi G, Sung B and Aggarwal BB: Nuclear
factor-kappaB activation: From bench to bedside. Exp Biol Med
(Maywood). 233:21–31. 2008. View Article : Google Scholar
|
13
|
Giovannini MG, Scali C, Prosperi C,
Bellucci A, Pepeu G and Casamenti F: Experimental brain
inflammation and neurode-generation as model of Alzheimer's
disease: Protective effects of selective COX-2 inhibitors. Int J
Immunopathol Pharmacol. 16(Suppl 2): S31–S40. 2003.
|
14
|
Vezzani A and Granata T: Brain
inflammation in epilepsy: Experimental and clinical evidence.
Epilepsia. 46:1724–1743. 2005. View Article : Google Scholar : PubMed/NCBI
|
15
|
Bombardi C and Di Giovanni G: Functional
anatomy of 5-HT2A receptors in the amygdala and hippocampal
complex: Relevance to memory functions. Exp Brain Res. 230:427–439.
2013. View Article : Google Scholar : PubMed/NCBI
|
16
|
Ahmadi A, Sayyah M, Khoshkholgh-Sima B,
Choopani S, Kazemi J, Sadegh M, Moradpour F and Nahrevanian H:
Intra-hippocampal injection of lipopolysaccharide inhibits kindled
seizures and retards kindling rate in adult rats. Exp Brain Res.
226:107–120. 2013. View Article : Google Scholar : PubMed/NCBI
|
17
|
Oltedal L, Haglerød C, Furmanek T and
Davanger S: Vesicular release of glutamate from hippocampal neurons
in culture: An immunocytochemical assay. Exp Brain Res.
184:479–492. 2008. View Article : Google Scholar
|
18
|
Ding Y, Chang C, Xie L, Chen Z and Ai H:
Intense exercise can cause excessive apoptosis and synapse
plasticity damage in rat hippocampus through Ca2+
overload and endoplasmic reticulum stress-induced apoptosis
pathway. Chin Med J (Engl). 127:3265–3271. 2014.
|
19
|
Feng J, Wu Q, Zhang D and Chen BY:
Hippocampal impairments are associated with intermittent hypoxia of
obstructive sleep apnea. Chin Med J (Engl). 125:696–701. 2012.
|
20
|
Li HY, Yuan ZY, Wang YG, Wan HJ, Hu J,
Chai YS, Lei F, Xing DM and DU LJ: Role of baicalin in regulating
Toll-like receptor 2/4 after ischemic neuronal injury. Chin Med J
(Engl). 125:1586–1593. 2012.
|
21
|
Bagetta G, Corasaniti MT, Nisticó G and
Bowery NG: Behavioural and neuropathological effects produced by
tetanus toxin injected into the hippocampus of rats.
Neuropharmacology. 29:765–770. 1990. View Article : Google Scholar : PubMed/NCBI
|
22
|
Kuhad A and Chopra K: Effect of sesamol on
diabetes-associated cognitive decline in rats. Exp Brain Res.
185:411–420. 2008. View Article : Google Scholar
|
23
|
Lindsay L, Liu P, Gliddon C, Zheng Y,
Smith PF and Darlington CL: Cytosolic glucocorticoid receptor
expression in the rat vestibular nucleus and hippocampus following
unilateral vestibular deafferentation. Exp Brain Res. 162:309–314.
2005. View Article : Google Scholar
|
24
|
Mao H, Toufexis D, Wang X, Lacreuse A and
Wu S: Changes of metabolite profile in kainic acid induced
hippocampal injury in rats measured by HRMAS NMR. Exp Brain Res.
183:477–485. 2007. View Article : Google Scholar : PubMed/NCBI
|
25
|
Benn SC, Ay I, Bastia E, Chian RJ, Celia
SA, Pepinsky RB, Fishman PS, Brown RH Jr and Francis JW: Tetanus
toxin fragment C fusion facilitates protein delivery to CNS neurons
from cerebrospinal fluid in mice. J Neurochem. 95:1118–1131. 2005.
View Article : Google Scholar : PubMed/NCBI
|
26
|
Fishman PS, Parks DA, Patwardhan AJ and
Matthews CC: Neuronal binding of tetanus toxin compared to its
ganglioside binding fragment [H(c)]. Nat Toxins. 7:151–156. 1999.
View Article : Google Scholar
|
27
|
Yan BC, Park JH, Kim IH, Shin BN, Ahn JH,
Yoo KY, Lee DS, Kim MJ, Kang IJ and Won MH: Chronological changes
in inflammatory cytokines immunoreactivities in the mouse
hippo-campus after systemic administration of high dosage of
tetanus toxin. Exp Brain Res. 223:271–280. 2012. View Article : Google Scholar : PubMed/NCBI
|
28
|
Indrawattana N, Sookrung N, Kulkeaw K,
Seesuay W, Kongngoen T, Chongsanguan M, Tungtrongchitr A and
Chaicumpa W: Human monoclonal ScFv that inhibits cellular entry and
metalloprotease activity of tetanus neurotoxin. Asian Pac J Allergy
Immunol. 28:85–93. 2010.PubMed/NCBI
|
29
|
Park SM, Yan BC, Park JH, Choi JH, Yoo KY,
Lee CH, Baek YY, Kim YM, Kang IJ and Won MH: Gliosis in the mouse
hippo-campus without neuronal death after systemic administration
of high dosage of tetanus toxin. Cell Mol Neurobiol. 32:423–434.
2012. View Article : Google Scholar
|
30
|
Lee CH, Park JH, Cho JH, Ahn JH, Yan BC,
Lee JC, Shin MC, Cheon SH, Cho YS, Cho JH, et al: Changes and
expressions of Redd1 in neurons and glial cells in the gerbil
hippocampus proper following transient global cerebral ischemia. J
Neurol Sci. 344:43–50. 2014. View Article : Google Scholar : PubMed/NCBI
|
31
|
Halliday AJ, Campbell TE, Nelson TS,
McLean KJ, Wallace GG and Cook MJ: Levetiracetam-loaded
biodegradable polymer implants in the tetanus toxin model of
temporal lobe epilepsy in rats. J J Clin Neurosci. 20:148–152.
2013. View Article : Google Scholar
|
32
|
Jiruska P, Shtaya AB, Bodansky DM, Chang
WC, Gray WP and Jefferys JG: Dentate gyrus progenitor cell
proliferation after the onset of spontaneous seizures in the
tetanus toxin model of temporal lobe epilepsy. Neurobiol Dis.
54:492–498. 2013. View Article : Google Scholar : PubMed/NCBI
|
33
|
Bagetta G, Nistico G and Bowery NG:
Characteristics of tetanus toxin and its exploitation in
neurodegenerative studies. Trends Pharmacol Sci. 12:285–289. 1991.
View Article : Google Scholar : PubMed/NCBI
|
34
|
Lee CL, Hannay J, Hrachovy R, Rashid S,
Antalffy B and Swann JW: Spatial learning deficits without
hippocampal neuronal loss in a model of early-onset epilepsy.
Neuroscience. 107:71–84. 2001. View Article : Google Scholar : PubMed/NCBI
|
35
|
Urra X, Obach V and Chamorro A: Stroke
induced immunodepression syndrome: From bench to bedside. Curr Mol
Med. 9:195–202. 2009. View Article : Google Scholar : PubMed/NCBI
|
36
|
Williamson LL and Bilbo SD: Chemokines and
the hippocampus: A new perspective on hippocampal plasticity and
vulnerability. Brain Behav Immun. 30:186–194. 2013. View Article : Google Scholar : PubMed/NCBI
|
37
|
Quan N, Whiteside M and Herkenham M: Time
course and localization patterns of interleukin-1beta messenger RNA
expression in brain and pituitary after peripheral administration
of lipopolysaccharide. Neuroscience. 83:281–293. 1998. View Article : Google Scholar : PubMed/NCBI
|
38
|
Henry CJ, Huang Y, Wynne A, Hanke M,
Himler J, Bailey MT, Sheridan JF and Godbout JP: Minocycline
attenuates lipo-polysaccharide (LPS)-induced neuroinflammation,
sickness behavior and anhedonia. J Neuroinflammation. 5:152008.
View Article : Google Scholar
|
39
|
Doursout MF, Schurdell MS, Young LM,
Osuagwu U, Hook DM, Poindexter BJ, Schiess MC, Bick DL and Bick RJ:
Inflammatory cells and cytokines in the olfactory bulb of a rat
model of neuro-inflammation; insights into neurodegeneration? J
Interferon Cytokine Res. 33:376–383. 2013. View Article : Google Scholar : PubMed/NCBI
|
40
|
Shaw JA, Perry VH and Mellanby J: Tetanus
toxin-induced seizures cause microglial activation in rat
hippocampus. Neurosci Lett. 120:66–69. 1990. View Article : Google Scholar : PubMed/NCBI
|
41
|
O'Neill LA and Kaltschmidt C: NF-kappa B:
A crucial transcription factor for glial and neuronal cell
function. Trends Neurosci. 20:252–258. 1997. View Article : Google Scholar : PubMed/NCBI
|