• 제목/요약/키워드: Brain metabolism

검색결과 294건 처리시간 0.025초

Glucocorticoid 및 성(性) Steroid 홀몬에 의한 뇌(腦) 및 복부내(腹部內) 장기(臟器)의 Polyamine 대사(代謝)의 변동(變動)에 관한 연구(硏究) (Influences of Hydrocortisone, DHEA, Estradiol and Testosterone on the Polyamine Metabolism of Mouse Brain, Kidney, Liver and Intestine)

  • 최상현;전보권;천종철;천연숙
    • 대한약리학회지
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    • 제27권1호
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    • pp.81-88
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    • 1991
  • 웅성-마우스의 고환을 diethyl ether마취하에서 제거하고, 수종의 steroid 홀몬을 각각 매일 1회씩 4일간 피하주사한 다음 날의 오전 11-12 시에 뇌, 신장, 간장 및 소장의 polyamine을 검량하여 다음의 성적을 얻었다. 1. 고환절제-마우스(CM)에서, 소장 putrescine(PT)는 비고환절제-마우스(UCM)에 비하여 유의한 저하를 보였으나, 간 및 소장의 spermine(SM)은 오히려 유의하게 증가되었다. 2. Hydrocortisone 50 mg/kg는 UCM의 소장 PT는 현저히 증가시켰으나, CM의 뇌 PT 함량은 오히려 감소시켰다. 3. Estradiol 5 mg/kg는 UCM의 간 PT 함량을 현저히 증가시켰으며, CM에서는 간 PT 뿐만 아니라 신장의 전 polyamin 함량-증가와 아울러, 다소의 뇌 및 소장 PT-증가를 유도하였다. 4. Dehydroepiandrosterone 250 mg/kg(DHEA)와 testosterone 5 mg/kg(TS)는 UCM의 경우 신장 PT 함량만 유의하게 증가시켰으나, CM에서는 신장의 PT, spermidine(SD), 및 SM 모두를 더욱 현저히 증가시켰고, 아울러 DHEA는 간 SM의 감소를, TS는 뇌 SM의 유의한 증가를 유도하였다. 이상의 결과로 미루어 볼때, 간 및 소장의 polyamine대사-특히 PT함량의 변동은 각각 E2 및 HC에 의하여 보다 특이적으로 조절되고, 신장의 polyamine 대사는 성steroid들에 의하여 다소 비특이적인 조절을 받는 것으로 생각되며, 고환절제-마우스에서 나타나는 HC에 의한 뇌의 전potyamine감소 및 성steroid들에 의한 신장의 전polyamine증가의 발현기전에 대한 연구가 있어야 할 것으로 사료된다.

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절수에 의한 mongolian gerbil 종뇌 및 간뇌에서 dopamine성 면역반응세포의 분포변화 (The change of dopaminergic immunoreactive cells in telencephalon and diencephalon of mongolian gerbil by water deprivation)

  • 송치원;이경열;박일권;정주영;권효정;이철호;현병화;이근좌;송운재;정영길;이강이;김무강
    • 대한수의학회지
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    • 제40권1호
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    • pp.1-16
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    • 2000
  • Nowadays, mongolian gerbil is notably utilized for the research of brain and water deprivation because of a congenital incomplete willis circle structure in the brain, audiogenic seizure in low noise, and special cholesterol metabolism without water absorption for a long time. In this study, we are intend to identify the morphological changes of the catecholaminergic neuron of brain according to the time lapse in the condition of long term water deprivation. 55 mongolian gerbil were divided 10 groups(control, 1, 2, 3, 4, 5, 10, 15, 20, 42th day water deprivation group), of which each group include 5 mongolian gerbils and 5 normal mongolian gerbils in control group were also used for brain atlas as a control. The brains were observed by the immunohistochemical stain using the TH, DBH and PMNT antibody. The results were as followings; 1. The nerve fibers of the TH-immunoreactive neuron were observed only in the and corpus striatum of the telencephalon. 2. Intensity of the immunostain of the nerve fiber in the cerebral cortex and corpus striatum was decreased gradually day by day after water deprivation. 3. The TH-immunoreactive nerve cells were observed in the paraventricular and periventricular nucleus of the 3rd ventricular in the hypothalamus of mongolian gerbil but the number of nerve cells were decreased from the first day of the water deprivation to the 10th day and increased until the 20th day, after than redecreased from the 20th day by the continuous water deprivation. The number of nerve fibers in this area were increased in the first day, but decreased from the 2nd day of water deprivation. The shape and density of the dopamine secreting cells in the brain of mongolian gerbil by the immunoreactive stain were changed in the continuous water deprivation. In this results, we can conclude that dopamine concerned in the water metabolism of mongolian gerbil, and mongolian gerbil could be used as an animal model for the research of water deprivation.

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The altered sphingolipid metabolism in rats following fumonisin B1 exposure

  • Choi, Heon-Kyo;Yoo, Jae-Myung;Oh, Sei-Kwan;Lee, Yong-Moon;Yun, Yeo-Pyo;Yoo, Hwan-Soo
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.162.2-163
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    • 2003
  • Fumonisins are specific inhibitors of ceramide synthase in sphingolipid metabolism. The objective of this study was to investigate whether the elevation of free sphingoid bases 1-phosphate (S1P) are related to the fumonisin exposure. Sprague Dawley rats were injected i.p. with 10mg/kg fumonisin B1 (FB1), and kidney, liver, heart, lung, brain and serum were collected for sphingolipid analysis. (omitted)

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Intermittent Fasting: a Promising Approach for Preventing Vascular Dementia

  • Yoon, Gwangho;Song, Juhyun
    • 지질동맥경화학회지
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    • 제8권1호
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    • pp.1-7
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    • 2019
  • Vascular dementia is the most common neuropsychiatric syndrome and is characterized by synaptic dysfunction, neuroinflammation, and cognitive dysfunction. Vascular dementia is associated with various environmental, genetic, and lifestyle risk factors. Recent research has focused on the association between vascular dementia and dietary patterns, suggesting that dietary regulation leads to better control of energy metabolism, improvements in brain insulin resistance, and the suppression of neuroinflammation. Intermittent fasting is a calorie-restriction method known to be more effective in promoting fat loss and regulating the impairment of glucose metabolism as compared with other dietary restriction regimens. Herein, the authors review the effects of intermittent fasting with regard to vascular dementia based on recent evidence and propose that intermittent fasting could be a therapeutic approach for ameliorating vascular dementia pathology and preventing its onset.

뇌질환 대사물질 변화의 고찰; 3 Teslar 수소 자기공명분광법 (A Study on the Metabolite Changes in Brain Diseases: 3 Teslar 1H Magnetic Resonance Spectroscopy)

  • 은성종;김정재;유승철
    • 한국방사선학회논문지
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    • 제8권1호
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    • pp.35-42
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    • 2014
  • 본 연구의 목적은 단일 복셀 자기공명 분광법을 이용하여 비정상적인 뇌질환을 가진 환자의 뇌대사물질이 어떻게 다른지를 알아보는데 있다. 수소 자기공명분광법의 정량적 분석의 결과 부신백질이영양증, 간선뇌병증, 뇌경색은 백질에 관련된 대사물질에 변화를 보였다. 세질환 모두 NAA가 감소하였고, ALD에서는 Cho, mI 과 Lac가 증가하였고, 간성뇌병변에서는 Cho가 감소, 그리고 뇌경색에서는 ${\beta}{\cdot}{\gamma}$-Glx와 Lac가 증가되었다. 결론적으로 수소 자기공명분광법은 비정상적으로 발전하는 뇌질환의 대사물질의 변화를 관찰하여 병을 진단할 수 있고 이는 임상에서 뇌질환의 진단과 예후를 평가하는데 유용할 것이다.

집쥐와 닭 뇌의 γ-Aminobutyric acid 함량 (γ-aminobutyric Acid Content in House Rat and Fowl Brain)

  • 허린수
    • 대한수의학회지
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    • 제11권1호
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    • pp.59-63
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    • 1971
  • Current interest in ${\gamma}$-aminobutyric acid (GABA) has arisen from the convergence of several independent line of investigation leading to the demonstration that this and related substances are normal products of brain metabolism and that GABA has an important physiological action upon brain function as well as upon certain peripheral nervous structures. The interest for neurophysiologists has been enhanced by the importance of the discovery for the role of humoral mediator of synaptic transmission or regulator of neuronal activity in the central nervous system, particularly if it may shed some elight upon the nature of central inhibitory processes. In accordance with such an interest and importance, this work was performed in order to standardize the normal content as a preliminary investigation of so-called night active and daytime active animals GABA content in their brains when they are exposed to light and darkness. The method, through which the estimation has made in this work, was paper chromatographic method developed by Maynert and Klingman for the estimation of GABA content in animal tissues. The results obtained are summerized as follows: 1) GABA content in the cerebral cortex of house rat ranged from 90 to $310{\mu}g/gm$ of wet weight. 2) The content of GAGA ranging from 130 to $510{\mu}g/gm$ of wet weight was occurred from midbrain of the rat. 3) GABA content was ranged from 30 to $150 {\mu}g/gm$ of wet weight of the rat cerebellum. 4) The contents of fowl cerebral cortex, midbrain, and cerebellum are estimated as ranging 230-590, 250-620, $50-280{\mu}g/gm$ of wet weight, respectively. As a result, it may be concluded that among three brain tissues of both animals the midbrain is the highest region in GABA content. Fowl brain, on the other side, contains more higher GABA content than the house rat brain does.

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Erythropoietin의 투여가 신생백서 저산소허혈뇌손상에 미치는 영향 (The effect of erythropoietin in neonatal rat model of hypoxic-ischemic brain injury)

  • 김행미;최병호;권순학;손윤경
    • Clinical and Experimental Pediatrics
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    • 제52권1호
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    • pp.105-110
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    • 2009
  • 목적 : 신생 백서의 저산소 허혈 뇌손상에 있어서의 erythropietin (Epo) 투여의 손상 예방 효과와 보호 기전에 철 대사가 관여하는지를 조사하고자 하였다. 방 법 : 신생 백서를 암수 구별 없이 생후 7일째에 편측 온목동맥 결찰 후 산소 농도 8%인 환경에 2시간 노출시켜 저산소 허혈을 유도하였으며 저산소 노출 직후 Epo 5,000 u/kg를 복강내 투여하였다. 이들은 저산소 허혈 유도 전 투여한 생리식염수, 철, deferoxamine 등에 따라 Epo군, Iron+Epo군, Def+Epo군, Iron+ Def+Epo군, 대조군으로 나누어 저산소 허혈 유도 후 7일에 뇌손상 정도를 비교하였다. 결 과 : Epo 투여시 뇌손상의 빈도와 정도는 대조군에 비해 감소하였다. 뇌손상의 빈도와 손상 점수로 뇌손상 정도를 비교한 결과 철 투여는 Epo의 뇌손상 예방 효과를 감소시키지 않았다. Deferoxamine 투여는 Epo 단독 투여군에 비해 뇌손상의 빈도와 정도가 경감하였으나 통계적 유의성은 없었다. 결 론 : Epo는 저산소 허혈 뇌손상에 있어 뇌손상 보호 효과를 보인다. 철 투여는 뇌손상을 악화시키지 않았으나 deferoxamine 동시 투여는 Epo 단독 투여에 비해 뇌손상의 빈도와 손상 점수가 감소하여 뇌손상 보호 효과에 철 대사가 관여할 가능성을 제시하였다.

Mucopolysaccharidosis Type III: review and recent therapies under investigation

  • Lee, Jun Hwa
    • Journal of Interdisciplinary Genomics
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    • 제2권2호
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    • pp.20-25
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    • 2020
  • Mucopolysaccharidosis type III (MPS III or Sanfilippo syndrome) is a multisystem lysosomal storage disease that is inherited in an autosomal recessive manner. It consists of four subtypes (MPS IIIA, B, C, and D), each characterized by the deficiency of different enzymes that catalyze the metabolism of the glycosaminoglycan heparan sulfate at the lysosomal level. The typical clinical manifestation of MPS III includes progressive central nervous system (CNS) degeneration with accompanying systemic manifestations. Disease onset is typically before the age of ten years and death usually occurs in the second or third decade due to neurological regression or respiratory tract infections. However, there is currently no treatment for CNS symptoms in patients with MPS III. Invasive and non-invasive techniques that allow drugs to pass through the blood brain barrier and reach the CNS are being tested and have proven effective. In addition, the application of genistein treatment as a substrate reduction therapy is in progress.

Genome wide identification of Staufen2-bound mRNAs in embryonic rat brains

  • Maher-Laporte, Marjolaine;DesGroseillers, Luc
    • BMB Reports
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    • 제43권5호
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    • pp.344-348
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    • 2010
  • Messenger ribonucleoprotein particles (mRNPs) are used to transport mRNAs along neuronal dendrites to their site of translation. Staufen2 is an mRNA-binding protein expressed in the cell bodies and cellular processes of different brain cells. It is notably involved in the transport of dendritic mRNAs along microtubules. Its knockdown expression was shown to change spine morphology and impair synaptic functions. However, the identity of Staufen2-bound mRNAs in brain cells is still completely unknown. As a mean to identify these mRNAs, we immunoprecipitated Staufen2-containing mRNPs from embryonic rat brains and used a genome wide approach to identify Staufen2-associated mRNAs. The genome wide approach identified 1780 mRNAs in Staufen2-containing mRNPs that code for proteins involved in cellular processes such as post-translational protein modifications, RNA metabolism, intracellular transport and translation. These results represent an additional and important step in the characterization of Staufen2- mediated neuronal functions in rat brains.

Studies on the possible role of thiamine in the central nervous system

  • Iwata, Heitaroh
    • Archives of Pharmacal Research
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    • 제3권1호
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    • pp.51-55
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    • 1980
  • Thiamine, in the form of its diphosphate (TDP), is well known to act as a coenzyme, and during the early stage in the study of thiamine it had been believed that the symptoms of thiamine-deficiency were resulted secondarily from the disturbance of metabolic processes in which TDP participated as a coenzyme. However, the neurological symptoms in thiamine deficiency are now separated from the metabolic disturbances in thiamine deficiency. On the other hand, the specific involvement of phosphorylated thiamine in nerve conduction has been suggested by von Muralt, but nature of this involvement has not been elucidated at a molecular level. Recently the possible significance of thiamine triphosphate (TTP) in nervous tissue was suggested by the demonstration that TTP is not present in the brain of patients with subacute necrotizing encephalomyelitis, a fatal disease associated with an abnormality in thiamine metabolism. Furthermore, the studies using membrane fragments of rat brain strongly indicated that ion movement across the nerve membrane is associated with dephosphorylation of phosphorylated thiamine.

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