• 제목/요약/키워드: mongolian gerbil

검색결과 63건 처리시간 0.026초

PC12 손상 세포 및 전뇌허혈 유발 Gerbil에 대한 시호 세포보호효과 (Protective Effect of Bupleuri Radix on Hypoxia Reperfusion Induced by PC12 Cell Damage and Global Ischemia in Gerbil)

  • 최삼열;정승현;신길조;문일수;이원철
    • 대한한의학회지
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    • 제23권4호
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    • pp.113-124
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    • 2002
  • Objects: This research was conducted to investigate the protective effect of Bupleuri Radix against ischemic damage using PC12 cells and global ischemia in gerbils, Methods: To observe the protective effect of Bupleuri Radixon ischemic damage, viability and changes in activities of superoxide dismutase (SOD), glutathione peroxidase (GPx), catalase and production of malondialdehyde (MDA) were observed after treating PC12 cells with Bupleuri Radix during ischemic damage. Gerbils were divided into three groups: a normal group, a 5-minute two-vessel occlusion (2VO) group and a Bupleun Radix administered group after 2VO. The CCAs were occluded by microclip for 5 minutes, Bupleuri Radix was administered orally for 7 days after 2VO. Histological analysis was performed on the 7th day. For histological analysis, the brain tissue was stained with 1 % of cresyl violet solution. Results: 1. Bupleuri Radix has a protective effect against ischemia in the CA1 area of the gerbil's hippocampus 7 days after 5-minute occlusion. 2. In the hypoxia/reperfusion model using PC12 cells, the Bupleuri Radix has a protective effect against ischemia in the dose of 0.2{\;}\mu\textrm{g}/ml,2{\;}\mu\textrm{g}/ml{\;}and{\;} 20{\;}\mu\textrm{g}/ml$. 3. Bupleuri Radix increased the activities of glutathione peroxidase and catalase. 4. The increased activity of superoxidedismutase (SOD) by ischemic damage might have been induced as an act of self-protection. This study suggests that Bupleuri Radix has some neuroprotective effect against neuronal damage following cerebral ischemia in vivo with a widely used experimental model of cerebral ischemia in Mongolian gerbils. Bupleuri Radix also has protective effect on a hypoxia/reperfusion cell culture model using PC12 cells. Conclusions: Bupleuri Radix has protective effect against ischemic brain damage during the early stages of ischemia.

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Effect of Sedative Dose of Propofol on Neuronal Damage after Transient Forebrain Ischemia in Mongolian Gerbils

  • Lee, Seong-Ryong
    • The Korean Journal of Physiology and Pharmacology
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    • 제4권1호
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    • pp.73-79
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    • 2000
  • This study investigated whether propofol, an intravenous, non-barbiturate anesthetic, could reduce brain damage following global forebrain ischemia. Transient global ischemia was induced in gerbils by occlusion of bilateral carotid arteries for 3 min. Propofol (50 mg/kg) was administered intraperitoneally 30 min before, immediately after, and at 1 h, 2 h, 6 h after occlusion. Thereafter, propofol was administered twice daily for three days. Treated animals were processed in parallel with ischemic animals receiving 10% intralipid as a vehicle or with sham-operated controls. In histologic findings, counts of viable neurons were made in the pyramidal cell layer of the hippocampal CA1 area 4 days after ischemia. The number of viable neurons in the pyramidal cell layer of CA1 area was similar in animals treated with a vehicle or a subanesthetic dose of propofol. In terminal deoxynucleotidyl transferase (TdT)-mediated dUTP nick end-labeling (TUNEL) assay, semiquantitative analysis of dark-brown neuronal cells was made in the hippocampal CA1 area. There was no significant difference in the degree of TUNEL staining in the hippocampal CA1 area between vehicle-treated and propofol-treated animals. These results show that subanesthetic dose of propofol does not reduce delayed neuronal cell death following transient global ischemia in Mongolian gerbils.

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CagL 재조합 단백질 접종후에 Mongolian gerbil에서 나타나는 Helicobacter pylori 감염에 대한 반응 (Effect of Recombinant CagL Immunization on the Gastric Diseases Induced by Helicobacter pylori in Mongolian gerbils)

  • 박은정;장성일;최윤희;김진문;김애련;김지혜;우계형;유윤정;이성행;차정헌
    • 미생물학회지
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    • 제48권2호
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    • pp.109-115
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    • 2012
  • Helicobacter pylori는 만성 위염, 소화성 궤양, 위암의 중요한 역학적 인자중 하나이다. H. pylori의 독성인자중 CagL은 숙주 세포와 H. pylori의 제 4형 분비기관(Type 4 secretion system)을 연결하는 adhesin으로 작용하는 섬모 단백질로 H. pylori가 발병하는데 중요한 역할을 하는 것으로 알려져 있다. 이번 연구는 저빌에 H. pylori를 감염시킨 동물 모델을 이용하여 CagL 재조합 단백질을 면역화시켰을 때 나타나는 효과를 평가하였다. 재조합 CagL은 클론되었고, 과발현시켜 정제하여 준비하였다 저빌은 H. pylori 감염 대조군과 H. pylori 감염 CagL 재조합 단백질 접종군으로 분류하였고, 접종시 알루미늄 애쥬번트를 사용하였다. 일주일 간격으로 4회 근육내 접종하였고, 마지막 접종 일주일 후, 모든 저빌에 H. pylori 7.13 균주를 $1{\times}10^9\;bacteria/500{\mu}l$ 농도로 위내 투여하였다. H. pylori 감염 6주째 모든 저빌을 희생하여 혈청 IgG 반응평가를 위한 ELISA를 실시하였고, 위에서는 집락화된 H. pylori의 수평가, 병리조직학적 평가 및 사이토카인 유전자발현을 조사하였다. CagL 재조합 단백질접종 일주일 후부터 H. pylori 감염 CagL 재조합 단백질 접종군의 혈청내 IgG 항체형성이 유의적으로 증가하였다. 위에서의 집락화된 세균수는 두군의 차이가 없었다. 저빌 체중에 대한 위무게 비율는 H. pylori 감염 CagL 재조합 단백질 접종군이 유의적으로 감소하였으나 병리조직학적 평가에서는 유의적인 차이는 확인하지 못하였다. 위에서의 IL-$1{\beta}$와 KC (IL-8 homologues)의 유전자발현 정도도 두 군사이에 유의적인 차이는 없었다. 이번 결과는 CagL 재조합 단백질의 접종은 IgG 항체형성은 효과적으로 자극하였지만 면역화된 숙주에서 세균 집락화의 감소 및 병변형성의 방어까지는 유도하지 못한 것으로 나타났으며, 앞으로 H. pylori 감염에 대해 유효한 면역 반응 및 질병 방어 효과를 나타내기 위해서 CagL을 포함한 다른 종류의 재조합 항원 사용 및 보조적으로 전신 면역 및 점막 면역을 효과적으로 유도하기 위해 안정성있는 애쥬번트의 사용을 고려해야 할 것으로 사료된다.

Survey of Seroconversion Rates against Hantavirus in Laboratory Rodents

  • Woo, Young-Dae;Park, Sang-Wook;Bae, Hyung-Joon;Moon, Hi-Joo;Cho, Kyu-Bong
    • 대한의생명과학회지
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    • 제9권2호
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    • pp.99-103
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    • 2003
  • Hantavirus are rodent-borne RNA virus that belongs to the family Bunyaviridae. Those viruses persistently infect a variety of rodents, and are transmitted by aerosols of their urine, feces and saliva. Antibody titers of sera obtained from normal laboratory rodents against hantaviruses were investigated by indirect immunofluorscence antibody technique (IFA), Seroconversion rates of normal laboratory rodents showed higher in rats than that from hamster and mongolian (M). gerbil. Theses rates of normal laboratory rodents also showed higher in titers against puumala virus (PUUV) than in hantaan (HTNV) and seoul virus (SEOV). We are concerned about infections caused by hantaviruses, especially by PUUV, occurred in laboratory rodents.

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한탄바이러스의 섬유아세포 감염에 대한 Integrin 항체의 억제 효과 (The Suppressive Effects of Integrin Antibodies on the Infection of Hantaan Virus in Fibroblasts)

  • 박호선;김기득;김성광
    • Journal of Yeungnam Medical Science
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    • 제15권1호
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    • pp.55-66
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    • 1998
  • 사람과 동일한 증상을 나타내는 동물 모델이 없는 신증후출혈열의 병리 기전을 이해하기 위하여 in vitro culture system을 이용하였다. 신증후출혈열의 주된 병변이 혈관내피세포외에 섬유아세포가 많이 존재하는 신세뇨관 간질 및 폐간질임을 기초로 하여 계태아와 Mongolian gerbil의 섬유아세포에서 fibronectin에 대한 수용체인 ${\alpha}_5{\beta}_1$, integrin에 대한 항체를 처리하여 한탄바이러스 감염에 대한 영향을 관찰하였다. 초대 배양하여 사용한 계태아 섬유아세포 및 MGF 모두 한탄바이러스가 잘 감염되었으나 계태아 섬유아세포에 비하여 MGF에서 바이러스의 증식이 더 우수하였다. 계태아 섬유아세포와 MGF에서 ${\alpha}_5{\beta}_1$, integrin에 대한 항체 처리 5일 후 바이러스의 N 단백의 역가는 항체를 처리하지 않은 대조군에 비하여 각각 32.6%, 72.6%로 virion의 역가는 26.8%, 28.7%로 감소하여 두 세포에서 모두 감염력을 가진 바이러스의 양은 거의 동일하게 감소 되었다. 또한 ${\alpha}_5$ subunit와 ${\beta}_1$, subunit에 대한 항체를 MGF 세포에 처리한 후 바이러스의 N단백의 역가는 65.2%, 59.7%로 ${\alpha}_5{\beta}_1$ integrin에 대한 항체 처리하였을 때(72.6%)와 거의 유사하게 감소하였고 감염력을 가진 바이러스의 양도 26.5%, 29.4%로 감소하여 ${\alpha}_5{\beta}_1$ integrin에 대한 항체 처리시(28.7%)와 거의 유사하게 감소하였다. 이러한 결과는 ${\alpha}_5{\beta}_1$ integrin이 한탄바이러스에 대한 수용체로써 작용할 가능성을 시사하였으며 또다른 기전으로는 ${\alpha}_5{\beta}_1$ integrin의 차단에 의한 이차적인 영향으로 한탄바이러스의 증식에 커다란 영향을 미치는 것을 생각할 수 있었다.

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몽고리안 저빌에서 뇌허혈시 GR89696이 parvalbumin 발현 신경세포에 미치는 영향 (Effects of GR89696 on parvalbumin positive neurons after cerebral ischemia in the Mongolian gerbil)

  • 권영배;양일석;이장헌
    • 대한수의학회지
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    • 제39권1호
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    • pp.34-44
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    • 1999
  • Ischemic damage in the selectively vulnerable populations of neurons is thought to be caused by an abnormal accumulation of intracellular calcium. It has been reported that the neurons, expressing specific calcium binding proteins, might effectively control intracellular calcium concentrations because of a high capacity to buffer intracellular calcium in the brain ischemic condition. It is uncertain that parvalbumin, one of the calcium binding proteins, can protect the neurons from the cerebral ischemic damage. Recently, treatment of kappa opioid agonists increased survival rate, improved neurological function, and decreased tissue damage under the cerebral ischemic condition. Many evidences indicate that these therapeutic effects might result from regulation of calcium concentration. This study was designed to analyze the changes of number in parvalbumin-positive neurons after cerebral ischemic damage according to timepoints after cerebral ischemic induction. In addition, we evaluated the effect of GR89696 (kappa opioid agonist) or naltrexone(non selective opioid antagonist) on the changes of number in parvalbumin expressing neurons under ischemic condition. Cerebral ischemia was induced by occluding the common carotid artery of experimental animals. The hippocampal areas were morphometrically analyzed at different time point after ischemic induction(1, 3, 5 days) by using immuno-histochemical technique and imaging analysis system. The number of parvalbumin-positive neurons in hippocampus was significantly reduced at 1 day after ischemia(p<0.05). Furthermore, the number of parvalbumin-immunoreactive neurons was dramatically reduced at 3 and 5 days after cerebral ischemic induction(p<0.05) as compared to 1 day group after ischemia, as well as sham control group. Significant reduction of parvalbumin positive neurons in CA1 region of hippocampus was observed at 1 day after cerebral ischemic induction. However, significant loss of MAP2 immunoreactivity was observed at 3 day after cerebral ischemia. The loss of parvalbumin-positive neurons and MAP2 immunoreactivity in CA1 region was prevented by pre-administration of GR89696 compared to that of saline-treated ischemic group. Furthermore, protective effect of GR89696 partially reversed by pre-treatment of naltrexone. These data indicate that parvalbumin-positive neurons more sensitively responded to cerebral ischemic damage than MAP2 protein. Moreover, this loss of parvalbumin-positive neurons was effectively prevented by the pretreatment of kappa opioid agonist. It was also suggested that the changes of number in parvalbumin-positive neurons could be used as the specific marker to analyze the degree of ischemic neuronal damage.

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광두근(廣豆根)의 Gerbil 전뇌(全腦)허혈에 대한 신경손상방어효능 연구 (Neuroprotecticve Effect of Sophora Subprostrata on Transient Global Ischemia in Gerbil)

  • 민홍규;강호창;이현삼;김선여;손영주;정혁상;손낙원;김윤범
    • 대한본초학회지
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    • 제23권3호
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    • pp.1-9
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    • 2008
  • Objectives : This research was performed to investigate protective effect of Sophora Subprostrata against transient global ischemic damage after 5-min two vessel occlusion. Methods : Gerbils were divided into three groups: Normal group, 5-min two vessel occlusion (2VO) group, Sophora Subprostrata administrated group after 2VO. The CCAs were occluded by microclip for 5min. Sophora Subprostrata was administrated orally(12mg/ml) for 7 days after 2VO. The histological and immunohistochemistrical analysis was performed at 72 hours and 7 days after the surgery each. For histological analysis, the brain tissue was stained with 1% cresyl violet solution and Immunohistochemistry for BAX and Bcl-2 was carried out to examine effect of Sophora Subprostrata on ischemic brain tissue. Results : The results showed that (1) Sophora Subprostrata has the protective effect against ischemia in CA1 area of the gerbil hippocampus 7 days after 5-minute occlusion, (2) the treatment of Sophora Subprostrata inhibits the expression of Bax relatively after 2VO-induced ischemia. That protective effect of the Sophora Subprostrata seems to be performed by regulating the proportion of Bax and Bcl-2 protein, (3) in hypoxia/reperfusion model using PC12 cell, the Sophora Subprostrata extract has the protective effect against ischemia in the dose of $2{\mu}/m{\ell}$ and $20{\mu}/m{\ell}$.This study suggests that Sophora Subprostrata has neuroprotective effect against neuronal damage following cerebral ischemia in vivo with a widely used experimental model of cerebral ischemia in Mongolian gerbils and that Sophora Subprostrata regulates the proportion of Bax and Bcl-2 protein following ischemia. And, Sophora Subprostrata extract has protective effects also on a hypoxia/reperfusion cell culture model using PC12 cell. Conclusions : Sophora Subprostrata has protective effects against ischemic brain damage at the early stage of ischemia.

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몽골리안 저빌(Meriones unguiculatus)의 위장관 내분비 세포에 대한 면역조직화학적 연구 (Immunohistochemical study of the gastrointestinal endocrine cells in the Mongolian Gerbils, Meriones unguiculatus)

  • 이재현;이형식;구세광;박기대;김길수
    • 대한수의학회지
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    • 제40권4호
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    • pp.653-660
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    • 2000
  • 몽골리안 저빌(Meriones unguiculatus)의 위장관을 분문부, 기저부, 유문부, 십이지장, 공장, 회장, 맹장, 결장 및 직장의 9부분으로 구분하고 이들 부위에서 cholecystokinin(CCK)-8, gastrin, secretin, pancreatic polypeptide(PP), somatostatin, serotonin, glucagon 및 insulin 등 8종의 항혈청에 대한 내분비 세포의 부위별 분포 및 출현빈도를 면역조직화화적으로 관찰하였던 바, CCK-8, gastrin, somatostatin 및 serotonin 면역반응세포들이 관찰되었다. 이들 면역반응세포들은 위 부위에서는 원형에서 타원형으로 주로 위샘(gastric gland) 또는 주세포와 벽세포 사이에서 관찰되었고, 장 부위에서는 원형 또는 타원형의 면역반응세포들이 공장의 장샘(intestinal gland)에서 관찰되었으며, 타원형에서 방추형의 세포들이 장상피세포 사이에서 관찰되었다. CCK-8 면역반응세포들은 유문부와 십이지장에 국한되어 다수 또는 소수 관찰되었으며, gastrin 면역반응세포들은 유문부에 국한되어 다수 관찰되었다. Somatostatin 면역반응세포들 역시 gastrin 변역반응세포들과 유사하게 유문부에 국한되어 중등도의 출현빈도를 나타내었고, serotonin 면역반응세포들은 분문부와 맹장을 제외한 위장관 전부위에 걸쳐 중등도 또는 다수 관찰되었으나, secretin, PP, glucagon 및 insulin 면역반응세포들은 관찰되지 않았다. 이상에서 몽골리안 저빌의 위장관에 존재하는 내분비 세포들의 종류 및 출현빈도는 다른 설치류에 비해 매우 적거나 낮은 것으로 관찰되었으며, 이들 내분비 세포들의 출현부위 역시 다른 설치류에서와는 달리 일부 부분에 국한되는 것으로 관찰되었다.

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Helicobacter pylori에 대한 천련자 추출물의 in vitro와 in vivo 실험에서의 항균활성 (In vitro and in vivo antibacterial activity of Meliae fructus extract against Helicobacter pylori)

  • 이현아;김옥진
    • 대한수의학회지
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    • 제52권2호
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    • pp.105-113
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    • 2012
  • In this study, a medicinal herbal plant, Meliae fructus, was examined and screened for anti-Helicobacter (H.) pylori activity. Seventy percent ethanol was used for herbal extraction. For anti-H. pylori activity screening, inhibitory zone tests as an in vitro assay and in vivo study using a Mongolian gerbil (Meriones unguiculatus) model were performed. Also, the safety of herbal compounds was evaluated by animal study. As a result of inhibitory zone test, Meliae fructus extract demonstrated strong anti-H. pylori activities. Also, as results of in vivo animal studies, Meliae fructus demonstrated strong therapeutic effects against H. pylori infection according to the criteria of histological examination and rapid urease test. As results of the safety study, after 28 days treatment of the Meliae fructus extract, the animals were not detected any grossly and histological changes. These results demonstrate that it can be successfully cured against H. pylori infection and protected from H. pylori-induced pathology with Meliae fructus. It could be a promising native herbal treatment for patients with gastric complaints including gastric ulcer caused by H. pylori.

황기와 원지분획의 뇌허혈에 관한 약효연구 (Effects of Astragali Radix and Polygalae Radix on Cerebral Ischemic and Reperfused Injury)

  • 한석희;박진혁;김진숙;이선미
    • 약학회지
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    • 제44권4호
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    • pp.371-377
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    • 2000
  • In order to investigate the pharmacological properties of fractions of Astragali Radix and Polygalae Radix, the effects of the fractions on cerebral ischemia and subsequent reperfusion were studied. Brain ischemia was induced by bilateral common carotid artery occlusion in mongolian gerbil. Brains were recirculated for 30 mins after the 20 min occlusion. Methanol and butanol fractions of Astragali Radix and Polygalae Radix were administered orally 2 hrs before common carotid artery occlusion. Histological observations showed that brain ischemia induced severe brain damage evidenced by the presence of necrotic foci, edema and hemorrhage. This injury was prevented by the methanol fraction and butanol fraction of Polygalae Radix. The level of ATP in brain tissue significantly decreased in ischemic gerbils. This decrease was prevented by the pretreatment with butanol fraction of Polygalae Radix. In contrast, the levels of lactate and lipid peroxide were both elevated in ischemic gerbils. This elevation was inhibited by the pretreatments with methanol fraction and butanol fraction of Polygalae Radix. Our findings suggest that the Polygalae Radix improves ischemia-induced brain damage.

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