• 제목/요약/키워드: $Brain\

검색결과 11,184건 처리시간 0.037초

랫트 뇌에서의 galectin-3의 검출 (Expression of galectin-3 in rat brain)

  • 이유경;강해은;우희종
    • 대한수의학회지
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    • 제44권1호
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    • pp.83-88
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    • 2004
  • Galectin family, endogenous ${\beta}$-galactoside-binding animal lectins, is known for the role in cell differentiation, morphogenesis, apoptosis and tumorigenesis. Galectin-3, one of family member, has been studied for its role in cell differentiation and tumor metastasis, and for its expression on epithelial cells of colon and mast cells but not in brain. Several reports, however, suggest its expression in brain including as a prion binding protein. In this report we explored possibility of galectin-3 expression in brain tissue. With Western blot and RT-PCR with rat brain tissues, we could detect galectin-3 that was not shown by conventional immunohistochemistry. Our results indicated galectin-3 was expressed in brain, and substantiate the previous report on galecin-3 as a prion-related protein in brain.

뇌조직의 활성산소 및 그 제거효소에 미치는 누에분말의 영향 (Effect of Silkworm Powder on Oxygen radicals and Their Scavenger Enzymes in Brain membranes of SD Rats)

  • 최진호;김대익;박수현;김동우;김정민;이희삼;류강선
    • 한국잠사곤충학회지
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    • 제42권2호
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    • pp.93-98
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    • 2000
  • This study was designed to investigate the effect of silkworm powder on oxygen radicals and their scavenger enzymes in brain membrances of SD rats. Hydroxyl radical (OH) levels resulted in a considerable decreases in brain mitochondria fraction. Superoxide radical (O$_2$) levels were a slightly decreased in brain cytosol fraction. Lipid peroxide (LPO) and Oxidized protein (OP) levels were significantly decreased in brain mitochondria and microsomes fraction. Mn-superoxide dismutase (SOD) activity was remarkably increased in the mitochondria fraction. Cu and Zn-SOD activities were effectively increased in brain cytosol fraction. GSHPx activity was considerably increased in brain cytosol fraction. These results suggest that anti-aging effect of silkworm plays an effective role in attenuating an oxidative stress and increasing a scravenger enzyme activity in brain membranes.

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Effects of betaine on the glutamate-induced neurotoxicity in primary cultured chicken brain cells

  • 김영중
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1993년도 제2회 신약개발 연구발표회 초록집
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    • pp.46-46
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    • 1993
  • The neuroprotective effect of betaine, one of the , components of Lycii Fructus, on glutamate-induced neurotoxicity in primary cultured chicken brain cells were examined. Betaine was found to attenuate glutamate-induced neurotoxicity at the concentration of 5-10 mM in both morphological and chemical aspects. The pretreament of chicken brain cells with 5-10 mM betaine for 2 hr at the 12th day of culture before the 40 min-exposure to 500${\mu}$M glutamate significantly increased the survival rate of nerve cells in chicken brain. Betaine could also raise the decreased LDH-level due to the neurotoxicity induced with 100${\mu}$M glutamate in chicken braill cells. LDH value was decreased to 63% of control level in chicken brain cells at the time of 48 hr after the exposure to glutamate. However, the pretreament of chicken brain cells with 5 mM betaine for 2 hr before the exposure to glutamate could prevent the decrease of LDH-level in brain cells showing 90% of control level. Nevertheless, tile remarkable neuroprotective effect of betaine on the glutamate-inducer in neurotoxicity in cultured chicken brain cells could not be observe when betaine was simultaneously administered with glutamate.

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뇌사의 진단과 진단을 위한 보조적 검사 (The Diagnosis and Ancillary Tests of Brain Death)

  • 김천식
    • 대한임상검사과학회지
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    • 제36권1호
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    • pp.64-68
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    • 2004
  • 뇌 기능의 비가역적 중단을 뇌사라 정의한다. 뇌사를 진단하기 위해 선행되어야 할 조건은 종양, 뇌졸중, 사고 등에 의한 뇌 기능의 소실된 원인이 확실하여야 하고, 자발호흡의 비가역적 중단과 약물이나 급성 대사성 장애가 없어야 하고, 저 체온 상태가 아니어야 하며, 심장 쇼크 상태가 아니어야 한다. 뇌간 반사 작용이 없어야 한다. 뇌사를 진단하기 위한 검사로는 뇌파검사와 유발전위 검사에서 뇌로부터 나오는 파형이 없어야 하고, 뇌혈류와 angiography에서 혈류의 흐름이 없어야 한다. 이 논문은 뇌사를 진단하는 신경과 의사와 뇌신경 검사를 시행하는 임상병리사에게 도움이 될 것이다.

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수술실 의료진의 뇌사자 장기기증 태도 관련 요인 (Factors Affecting Attitudes toward Brain Death Organ Donation among Nurses and Doctors in an Operating Room)

  • 조은정;신기수
    • 동서간호학연구지
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    • 제28권1호
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    • pp.49-56
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    • 2022
  • Purpose: This study was conducted to identify the factors affecting the attitudes toward brain death organ donation among nurses and doctors in an operating room. Methods: A descriptive research was used. The participants included 90 nurses and 30 doctors who had experience of operating organ transplantation for brain death organ donation. Data were collected from March 12 to May 23, 2020 in the one tertiary general hospital. The outcome measures were perception and attitude of death and attitude towards brain death organ donation. Results: Attitudes toward brain death organ donation was influenced by type of occupation, intention of organ donation and attitude toward death. In addition, the explanatory power of the total variance was 52.1%. Conclusions: Based on the results, it is necessary to prepare an intervention to improve awareness of the brain death and the brain death organ donation.

Preliminary research on the development of boron neutron capture therapy drugs

  • Soyeon Kim;Ji-ung Yang;Kyo Chul Lee;Jung Young Kim;Yong Jin Lee;Ji-Ae Park
    • 대한방사성의약품학회지
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    • 제7권1호
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    • pp.3-10
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    • 2021
  • For successful boron neutron caputre therapy, it is essential to develop a boron drug with a selective accumulation capacity for tumors. In particular, in order to apply boron neutron caputre therapy to brain tumors, drugs with good blood-brain barrier penetration are required. In this study, two low-molecular-weight boron compounds were introduced as brain tumor boron neutron caputre therapy drugs, and their physical and biological efficacy were evaluated. Among them, B2 showed good blood-brain barrier permeability and a high brain/blood ratio. From these results, it is expected that B2 can be used as a useful boron drug for boron neutron caputre therapy in brain tumors.

Transfer-learning-based classification of pathological brain magnetic resonance images

  • Serkan Savas;Cagri Damar
    • ETRI Journal
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    • 제46권2호
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    • pp.263-276
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    • 2024
  • Different diseases occur in the brain. For instance, hereditary and progressive diseases affect and degenerate the white matter. Although addressing, diagnosing, and treating complex abnormalities in the brain is challenging, different strategies have been presented with significant advances in medical research. With state-of-art developments in artificial intelligence, new techniques are being applied to brain magnetic resonance images. Deep learning has been recently used for the segmentation and classification of brain images. In this study, we classified normal and pathological brain images using pretrained deep models through transfer learning. The EfficientNet-B5 model reached the highest accuracy of 98.39% on real data, 91.96% on augmented data, and 100% on pathological data. To verify the reliability of the model, fivefold cross-validation and a two-tier cross-test were applied. The results suggest that the proposed method performs reasonably on the classification of brain magnetic resonance images.

Region Specific Brain Organoids to Study Neurodevelopmental Disorders

  • Praveen Joseph Susaimanickam;Ferdi Ridvan Kiral;In-Hyun Park
    • International Journal of Stem Cells
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    • 제15권1호
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    • pp.26-40
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    • 2022
  • Region specific brain organoids are brain organoids derived by patterning protocols using extrinsic signals as opposed to cerebral organoids obtained by self-patterning. The main focus of this review is to discuss various region-specific brain organoids developed so far and their application in modeling neurodevelopmental disease. We first discuss the principles of neural axis formation by series of growth factors, such as SHH, WNT, BMP signalings, that are critical to generate various region-specific brain organoids. Then we discuss various neurodevelopmental disorders modeled so far with these region-specific brain organoids, and findings made on mechanism and treatment options for neurodevelopmental disorders (NDD).

청파활성분획이 허혈성 뇌손상에 미치는 실험적 연구 (Experimental Study of Fraction of Citri Reticulatae Viride Pericarpium extract on the Brain Damage in Cerebral Ischemia)

  • 노영호;정현우;이원석
    • 동의생리병리학회지
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    • 제16권5호
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    • pp.893-898
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    • 2002
  • Citri Reticulatae Viride Pericarpium extract(CRVP) have been used in oriental medicine for many centuries as a therapeutic agent for smoothing the liver and regulating the circulation of qi, and promoting digestion and removing stagnated food. The effects of CRVP on the inhibition of brain damage in cerebral ischemia is not known. Therefore, this Study was designed to investigate the cerebral protective effects of CRVP on the transient cerebral ischemia using modern techniques, and further to provide the possibility of scientification of oriental medicine. The size of cerebral infarct size was measured by morphometry, and brain edema was measured by morphometry and brain water content determination. The results were a$ follows ; 1. Water fraction of CRVP was reduced infect area of rats brain slices which were subjected to a transient cerebral ischemia in a dose-dependent manner. 2. Methylene chloride fraction and hexane fraction of CRVP was significantly reduced infarct area of rats brain slices which were subjected to a transient cerebral ischemia in a dose-dependent manner. 3. Methylene chloride fraction and hexane fraction of CRVP was significantly reduced infarct volume of rats brain which was subjected to a transient cerebral ischemia in a dose-dependent manner. 4. Methylene Chloride fraction and hexane fraction of CRVP was significantly decreased brain edema induced by a transient cerebral ischemia in a dose-dependent manner. 5. Methylene chloride fraction and hexane fraction of CRVP was significantly decreased brain water content of rats which were subjected to a transient cerebral ischemia. It is suggested that CRVP has an anti-ischemic effect through the inhibition of brain damage in a transient cerebral ischemia, and that in future further development of main effective constituent in CRVP can provide a novel therapeutic strategy for cerebral ischemia.