• Title/Summary/Keyword: neuronal protective effect

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Protective Effect of Celecoxib Against Nitric Oxide-Induced Inflammatory Cell Death in Rat Pheochromocytoma (PC12) Cells

  • Li, Mei-Hua;Jang, Jung-Hee;Surh, Young-Joon
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2003.05a
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    • pp.81-82
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    • 2003
  • Recent studies suggest that inflammatory events are implicated in a variaty of human diseases such as cancer and neurodegenerative diseases, and non-steroidal anti-inflammatory drugs have beneficial effects for the treatment or prevention of these disorders. Cyclooxygenase-2 (COX-2), the rate-limiting enzyme in the prostaglandin(PG) synthesis, is induced by various pro-inflammatory stimuli including nitric oxide(NO) and has been reported to cause and/or aggravate neuronal cell death.(omitted)

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Neuroprotective Effect of Ethyl Acetate Fraction of Portulaca oleracea L. (마치현 에틸아세테이트 분획물의 뇌세포 보호효과)

  • Im, Nam Kyung;Jeong, Gil Saeng
    • Korean Journal of Pharmacognosy
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    • v.44 no.4
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    • pp.379-383
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    • 2013
  • Portulaca oleracea L. is known to have many biological benefits such as anti-oxidant, anti-inflammatory, anti-allergic and anti-tumor. The objective of this study is to explore the neuroprotective effect of P. oleracea L. against glutamate-induced oxidative stress in mouse hippocampal HT22 cells. P. oleracea L. 70% ethanol extract and solvent fractions have the potent neroprotective effects on glutamate-induced nerotoxicity by induced the expression of heme oxygenase (HO)-1 in HT22 cells. Especially, ethyl acetate fraction showed higher protective effect. In HT22 cell, P. oleracea L. treatment with ERK inhibitor (PD98059) and c-JUN N-terminal kinase (JNK) inhibitor (SP600125) reduced P. oleracea L. ethyl acetate fraction induced HO-1 expression and P. oleracea L. ethyl acetate fraction also increased ERK and JNK phosphorylation. Furthermore, we found that treatment of P. oleracea L. caused the nuclear accumulation of Nrf2. In conclusion, the ethyl acetate fraction of 70% ethanol extract of P. oleracea L. significantly protect glutamate-induced oxidative damage by induction of HO-1 via Nrf2, ERK and JNK pathway in mouse hippocampal HT22. Taken together these finding suggest that P. oleracea L. ethyl acetate fraction is good source for taking active compounds and may be a potential therapeutic agent for brain disorder that induced by oxidative stress and neuronal damage.

Effect of Polygala radix Hot Water Extract on Biological Activity in PC12 Cells (PC12 세포에서 생물학적 활성에 미치는 원지 열수 추출물의 효능)

  • Nam, Hyang;Kim, Moon-Moo
    • Journal of Life Science
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    • v.23 no.8
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    • pp.1041-1049
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    • 2013
  • The root of Polygala radix has been widely known as an oriental traditional medicinal stuff that improves memory. However, its mechanism of action remains unclear. In this study, the effect of Polygala radix hot water extracts (PRHWE) on cognitive function related to the activity of acetylcholinesterase (AchE) derived from neural cells (PC12) in addition to antioxidant activity was examined both in a cell-free system and live cells. First, in the study on cell viability using an MTT assay, PRHWE did not exhibit any cell toxicity at 0.1% (w/v) or below. It also was observed that PRHWE increased the scavenging activity of DPPH radical, hydrogen peroxide and superoxide, reducing power in a dose-dependent manner. In particular, PRHWE had a protective effect on DNA oxidation induced by hydroxyl radicals. Additionally, it inhibited the production of inducible nitric oxide in neuronal cells. Furthermore, the AchE activity decreased with increasing concentrations. In addition, PRHWE increased the expression level of SOD-1 and NOS-2 in PC12 cells. Moreover, the transcriptional activities of p53 and NF-${\kappa}B$ were reduced in the presence of PRHWE in an experiment using a reporter gene assay. Therefore, these results prove that PRHE has antioxidative and protective effects on neuronal cells, suggesting that it may have great potential as a therapeutic agent for human health.

Effect of Gagamjeongji-hwan and Evodiae Fructus on Memory Impairment and Neuronal Damage Induced by Focal Ischemia in the Rat (국소 전뇌 허혈 모델 백서에서 가감정지환(加減定志丸)과 오수유(吳茱萸)가 기억증진과 신경세포보호에 미치는 효과)

  • Kim, Hoi-Young;Son, Hyun-Soo;Kang, Ji-Hong;Choi, U-Jeong;Lee, Jin-Seok;Yang, Jae-Hoon;Seol, Jae-Kyun;Lee, Eon-Jeong
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.6
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    • pp.1487-1494
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    • 2008
  • This study was conducted to determine the effect of Gagamjeongji-hwan (JJH)(Jiajiandingzhi-wan) and Evoidae Fructus (EF) on learning and memory disturbance and neuronal damage induced by focal ischemia in the rat. Rats were used for testing in the following three. Morris Water Maze, Cholineacetyltransferase (ChAT) immunohistochemistry, acetylcholine esterase (AchE) histochemistry. JJH+ISCH group (ischemia-induced rats pretreated with JJH) and EF+ISCH group (ischemia-induced rats pretreated with EF) significantly reduced the latency of swimming time, compared with those of ISCH group (ischemia-induced rats) in morris water maze acquisition test. JJH+ISCH group attenuated ischemia.induced learning and memory damage in morris water maze retention test. The density of ChAT neurons of the JJH+ISCH and EF+ISCH group in the hippocampal CA1 area was increased, compared to that of SAL+ISCH group (ischemia-induced rats pretreated with SAL). The density of AchE neurons of the JJH+ISCH and EF+ISCH group in the hippocampal CA1 and CA3 area was increased, compared to that of SAL+ISCH group. These results suggest that Gagamjeongji-hwan (JJH) and Evodiae Fructus (EF) may have significant protective effects on ischemia-induced brain damage and memory impairments.

Effects of Non-saponin Red Ginseng Components on the Function of Brain Cells

  • Sohn, Eun-Hwa;Do, Hang;Kang, Nam-Sung;Jang, Seon-A;Park, Sul-Kyung;Lee, Hye-Rim;Rhee, Dong-Kwon;Pyo, Suhk-Neung
    • Journal of Ginseng Research
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    • v.32 no.1
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    • pp.62-66
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    • 2008
  • Non-saponin gingseng fraction components (NSRG) have been known to have a variety of biological activity. However, the effects of these components on the function of brain cell have not been characterized in detail. In this study, we investigated the preventive effect of non-saponin red ginseng components on acrylamide (ACR)-induced suppression of neural cell adhesion molecule (NCAM), which is highly expressed in neuronal cells. The data showed that NSRG blocked the suppression of NCAM expression by ACR in neuroblastoma cells (SK-N-SH). In addition, NSRG significantly increased NCAM expression in ACR-nontreated neuroblastoma cells. NSRG treatment resulted in the increase of cell proliferation in a concentration-dependent manner. We also examined whether NSRG could modulate the NO production of astrocytes. When glioma cells (C6) were treated with various concentrations of NSRG (100-300 ug/ml) in the presence or absence of $IFN-{\gamma}$ for 24 hours, NO production was suppressed in $IFN-{\gamma}-$stimulated C6 cells. Taken together, these results demonstrate that treatment of brain cells with NSRG results in the enhancement of proliferation, the suppression of NO production and the protective effect on NCAM expression impaired by ACR. Thus, the present data suggest that NSRG has proliferative and neuroprotective effects and these effects could be useful in neuronal diseases.

Protective Effect of the Gastrodiae Rhizoma-gamibang on the Scopolamine-induced Hippocampal Damage in Sprague-Dawley Rats (천마가미방이 Scopolamine으로 유발된 흰쥐의 해마 손상에 미치는 영향)

  • Park, Eun-Hye;Lee, Soong-In;Jeong, Jong-Kil;Kim, Kyeong-Ok;Kim, Jeong-Sang
    • The Korea Journal of Herbology
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    • v.30 no.3
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    • pp.49-54
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    • 2015
  • Objectives : This study investigated the neuroprotective effect of Gastodia Rhizoma-gamibang (GG) water extracts against scopolamine-induced neurotoxicity in the hippocampus of male Sprague-Dawley rats. Methods : The animals were divided into five different groups with six animals per each group. The normal group (Nor) was administered with saline, while the control group (Con) was administered with saline after scopolamine treatment. The experimental group (Exp) was administered orally GG extracts at doses of 200 mg/kg (GG1 group), 400 mg/kg (GG2 group), 1000 mg/kg (GG5 group) for 30 day after scopolamine treatment. Results : From a light microscopy study, the nuclei of neurons and glial cells in the hippocampus were more shrunken or condensed in the 30 day control group compared with normal group. In the experimental groups, proportional to the dose, recovered from neurotoxicity induced by scopolamine. The control group, the density of hippocampal neurons were reduced 17-20% compared to normal group. The densities of neurons from the CA1, and CA3 area of the hippocampus in the GG1, GG2 and GG5 groups significantly increased compared with the Con. In the experimental group, neuronal cells are recovered from scopolamine-induced damage. A number of glial cells are observed increase from GG2 and GG5 groups. The PAS-positive materials in the tissues hippocampus), was lower in the Exp than the Con. Conclusions : The present study demonstrates that Gastodia Rhizoma-gamibang extract reduces neuronal damage in the hippocampus of scopolamin-induced impairment mice.

Bee Venom Suppresses Ischemia-induced Increment of Apoptosis and Cell Proliferation in Hippocampal Dentate Gyrus

  • Lim Baek Vin;Lee Choong Yeol;Kang Jin Oh;Kim Chang Ju;Cho Sonhae
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.18 no.1
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    • pp.236-242
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    • 2004
  • Cerebral ischemia resulting from transient or permanent occlusion of cerebral arteries leads to neuronal cell death and eventually causes neurological impairments. Bee venom has been used for the treatment inflammatory disease. In the present study, the effects of bee venom on apoptosis and cell proliferation in the hippocampal dentate gyrus following transient global ischemia in gerbils were investigated using immunohistochemistry for cyclooxygenase-1 (COX-1) and cyclooxygenase-2 (COX-2), caspase-3, and 5-bromo-2'-deoxyuridine (BrdU). It was shown that apoptotic cell death and cell proliferation in the hippocampal dentate gyrus were significantly increased following transient global ischemia in gerbils and that treatment of bee venom suppressed the ischemia-induced increase in apoptosis and cell proliferation in the dentate gyrus. The present results also showed that 1 mg/kg bee-venom treatment suppressed the ischemia-induced increasing apoptosis, cell proliferation, and COX-2 expression in the dentate gyrus. It is possible that the suppression of cell proliferation is due to the reduction of apoptotic cell death by treatment of bee venom. In the present study, bee venom was shown to prosses anti-apoptotic effect in ischemic brain disease, and this protective effect of bee venom against ischemia-induced neuronal cell death is closely associated with suppression on caspase-3 expression.

Effect of Tetramethylpyrazine on Neuronal Apoptosis in Spinal Cord Compression Injury of Rats (Tetramethylpyrazine이 흰쥐 척수압박손상의 신경세포 자연사에 미치는 영향)

  • Jo, Jong-Jin;Kim, Seung-Hwan;Lee, Joon-Seok;Shin, Jung-Won;Kim, Seong-Joon;Sohn, Nak-Won
    • Journal of Korean Medicine Rehabilitation
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    • v.23 no.1
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    • pp.1-13
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    • 2013
  • Objectives : The pathophysiology of acute spinal cord injury(SCI) may be divided into primary and secondary mechanisms of injury. The secondary mechanism involves free radical formation, excitotoxicity, inflammation and apoptotic cell death, and sets in minutes after injury and lasts for weeks or months. During this phase the spinal tissue damages are aggravated. Therefore, secondary mechanisms of injury serve as a target for the development of neuroprotective drug against SCI. The present study investigated the effect of tetramethylpyrazine(TMP), an active ingredient purified from the rhizome of Ligusticum wallichii(川芎, chuanxiong), on neuronal apoptosis in spinal cord compression injury in rats. Methods : SCI was subjected to rats by a static compression method(35 g weight, 5 mins) and TMP was treated 3 times(30 mg/kg, i.p.) during 48 hours after the SCI. Results : TMP ameliorated the tissue damage in peri-lesion of SCI and reduced TUNEL-labeled cells both in gray matter and in white matter significantly. TMP also attenuated Bax-expressed motor neurons in the ventral horn and preserved Bcl-2-expressed motor neurons. Conclusions : These results indicate that TMP plays a protective role in apoptotic cell death of neurons and oligodendrocytes in spinal cord injury. Moreover, it is suggested that TMP and TMP-containing chuanxiong may potentially delay or protect the secondary spinal injury.

Protective Effect of Schizonepeta tenuifolia Briquet Extracts on Oxidative DNA Damage in Human Leucocytes and on Hydrogen Peroxide-induced Cytotoxicity in PC12 Cells

  • Yoon, Mi-Young;Lee, Hyun-Jin;Lee, Bo-Bae;Lee, Sang-Myeon;Kim, Ju-Young;Kim, Yong-Seong;Park, Eun-Ju;Park, Hae-Ryong
    • Food Science and Biotechnology
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    • v.16 no.5
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    • pp.858-862
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    • 2007
  • The present study was conducted to examine the antioxidant activities and neuroprotective effects of methanolic extracts from Schizonepeta tenuifolia Briquet (STE). STE ($100\;{\mu}g/mL$) showed $43.33\;{\mu}M$ of total phenolic content, 64.43% of radical scavenging activity, and 0.157 of reducing power. In addition, the effect of STE on $H_2O_2$-induced DNA damage in human leucocytes was evaluated by the comet assay, where STE was a dose dependent inhibitor of DNA damage induced by $200{\mu}M$ of $H_2O_2$. The protective effect of STE against $H_2O_2$-induced oxidative damage on PC12 cells was investigated by an 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyl tetrazolium bromide (MTT) reduction assay and lactate dehydrogenase (LDH) release assays. After 2 hr of cell exposure to $H_2O_2\;(500\;{\mu}M)$, a marked reduction in cell survival was observed. However, this reduction was significantly prevented by $1-50\;{\mu}g/mL$ of STE. Therefore, these results suggest that STE could be a new antioxidant candidate against neuronal diseases.