• Title/Summary/Keyword: Basal nucleus of Meynert

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The Differentiation of the Cholinergic Nerve Cells at the Meynert Basal Nucleus of the Basal Forebrains in the Growth Period of Rat (흰쥐 전뇌 기저부 Meynert기저핵에서 출생 후 발육기간에 따른 콜린성 신경세포의 분화)

  • Hahm, Young-Ok;Kim, Soo-Jin
    • Applied Microscopy
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    • v.31 no.4
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    • pp.355-365
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    • 2001
  • This study was performed to investigate the distribution and differentiation on the immunoreacted cells of the ChAT (choline acetyltransferase) at the Meynert basal nucleus of the forebrains in the growth periods of rat, using the immunohistochemistric method. According to the cell shape and the ratio of long axis vs short axis of cell soma, the ChAT antibody reacted nerve cells in the Meynert basal nucleus of the rats were classified into six types. In the adult rats, the FD (frequency distributions) of round, oval and elongated cells were maximum. The FD of these types were shown to be progressively decreased during the postnatal development. In addition, the FD of elongated nerve cells in were observed in the adult rats respectively. This was thought to be the same phenomenon as those in the round and oval cells . The total mean volume of ChAT antibody reacted cell somata was lowest in the PND (postnatal days) 7 rats and was highest in the PND 21 rats. But, those were decreased to the adult. These results suggest that ChAT antibody reacted nerve cells grow up to PND 21 and then, differentiate into the various types by neurites outgrowing. On the electron micrography, the adult rat forebrain cells were obtained to be well developed ribosomes, polysomes , rough endoplasmic reticula and mitochondria. The immunreactivities were observed in ribosomes, polysomes, rough endoplasmic reticula and outer membrane of mitochondria. Golgi complexes were poorly developed and not showed jmmunreactivity. The ribosomes , polysomes and endoplasmic reticula are considered to be closely related to the inter cellular localization and biosynthesis of the ChAT but not Golgi complex. According to the results in the present study, it is considered that the ChAT-immunoreacted nerve cells in the Meynert basal nucleus of the rat forebrains are differentiated throughout the postnatal development with following processes of changes; 1) the cholinergic nerve cells develop postnatally 2) cell soma volumes gradually increase during the early postnatal days 3) and then, cells differentiate into the various types by projecting the neurites to the appropriate area after PND 21.

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Distribution and Differentiation of the Choline Acetyltransferase-immunoreactive Nerve Cells in the Basal Nucleus of Meynert of the Rat Forebrains During the Postnatal Development (흰쥐 출생후 발생에 따른 전뇌 기저부 Meynert기저핵에서 Choline Acetyltranseferase 면역반응 신경세포의 분포 및 분화)

  • Lee, Nam-Seob;Chung, Young-Wha
    • Applied Microscopy
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    • v.29 no.4
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    • pp.479-491
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    • 1999
  • This study was performed to investigate the distribution and differentiation of choline acetyltransferase (ChAT)-immunoreactive cells in the basal nucleus of Meynert of the postnatal and adult rat forebrains, utilizing techniques of immunocytochemistry. According to the cell shape and the ratio of long axis vs short axis of cell soma, the ChAT-immunoreactive nerve cells in the basal nucleus of Meynert of the adult rat were classified into six types. In the adult rat, the frequency distributions (FD) of round, oval, elongated, fusiform, triangular and polygonal cells were 9.4%, 35.5%, 32.1%, 5.9%, 9.1% and 8.0%, respectively. The FD of oval and round nerve cells on the postnatal day (PND) 14 were observed to be 18.7% and 51.5%, respectively. Those were shown to be progressively decreased during developmental process to the adult. Also, those of elongated and triangular nerve cells on the PND 21 were observed to be 30.4% and 10.1%, respectively. Those were shown to be same phenomenon a,1 those in the round and oval cells. Meanwhile, those of the triangular and polygonal nerve cells were progressively increased from the early postnatal stage to the adult. The total mean volumes of ChAT-immunoreactive cell somata in the PND 7 rat were the lowest $(1,083{\mu}m^3)$ and those in the PND 21 rat were shown to be the highest $(5,045{\mu}m^3)$. But in the adult, those were decreased to $(2,731{\mu}m^3)$. Those in the PND 21 rat were shown to be about 84.7% larger than those in the adult. On the electron micrography, the cell organelles such as ribosomes, polysomes, rough endoplasmic reticula (RER) and mitochondria were well developed in the PND 21 rat forebrains, but Golgi complexes were shown to be proliferating phase. Especially, ribosomes, polysomes and RER were immunoreactive in the tissues treated with 0.05% triton X-100. According to the observations in the present study, it is considered that the ChAT-immunoreactive nerve cells in the basal nucleus of Meynert of the rat forebrains are differentiated throughout the following processes of changes during the postnatal development: 1) increase of cell soma volumes with the differentiation of tell organelles and neurites, 2) increase in the FD of differentiated tell types and 3) cell schrinkage without cell loss. The ribosomes, polysomes and RER are considered to be closely related to the intracellular localization and biosynthesis of the ChAT but not Colgi complex.

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Immunocytochemical Study of the Nerve Growth Factor Receptor in the Nucleus Basalis of Meynert of the Growth Receptorn in the Nucleus Basalis of Meynert of the Postnatal Rat BASAL Forebrain (출생후 발생에 따른 흰쥐 전뇌 기저부 Meynert 긴저칙에서의 신경성장인자 수용체에 대한 면역세포화학적 연구)

  • Jeong, Yeong-Hwa;Hong, Yeong-Ho;Sin, Bo-Cheol
    • The Korean Journal of Zoology
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    • v.36 no.4
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    • pp.562-579
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    • 1993
  • 출생후 발생에 따른 흰쥐 전뇌 기저부의 Mevnert 기저핵(nucleus basalis of Mevnert)에서 신경성장인자 수용체(nerve growth factor receptor, NGFr)를 함유하는 신경세포의 면역반응성 및 분포, 세포형의 분류, 각 형별 출현율 및 세포 크기 그리고 세포소기관과 NGFr 면역반응과의 관계를 조사하였다. NGFr 면역반응 신경세포들은 출생후 초기 발생에서 세포질 뿐만 아니라 원형질 막에서도 면역반응을 보였으나, 성체에서는 세포질에서만이 면역반응을 보였다. NGFr 면역반응 신경세포는 형태학적 특징인 세포체의 모양과 장·단축의 비를 기준으로 5가지 형, 즉 1) 원형, 2) 난형, 3) 세장형. 4) 방추형, 5) 삼각형(또는 다각형)세포로 구분되었다 원형과 난형 세포는 출생후 0일에서 각각 15.4%. 50.7%의 높은 출현율을 보였으나, 발생이 진행되면서 점차 감소하여 성체에서 각각 7.8%, 28.6%의 출현율을 보였다 반면, 세장형, 방추형 및 삼각형세포는 출생후 0일에서 각각 22%, 2.6% 9.2%의 낮은 출현율을 보였으나, 발생이 진행되면서 지속적으로 증가하여 성체에서는 각각 29 9%, 5.2%, 28.5%의 높은 출현율을 보였다. 출생후 0일에서 신경세포체의 부피는 매우 작았으나(1,642mm3), 발생에 따라 점차 증가하여 14일, 21일에서는 성체에서보다 매우 컸다(각각 6.745, 6,755mm3) 원형 및 난형세포체의 부피는 21일에서(각각 7 955. 7.020mm3), 세장형 방추형 그리고 삼각형세포체의 부피는 14일에서 제일 컸다(각각 7,067, 6,237, 7,748 mm3) 대체적으로 삼각형세포체의 부피가 제일 컸으며, 방추형세포체의 부피가 제일 작았다. 출생후 순일에서의 전자현미경적 관찰에서 세포소기관중 조면소포체, Golgi체, multivesicular body 그리고 세포표면 원형질막이 강한 NGFr 면역반응을 보였다. 위의 결과들로 미루어 MGFr은 출생후 흰쥐 전뇌 기저부 Meynert 기저핵 신경세포의 분화 및 분포와 밀접한 관계를 갖는 것으로 생각된다.

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Evidence of Memory Improvement by Phosphatidylcholine Supplement at Fetus and Neonate -Studies of Basal Forebrain Cholinerge Neuronal Activities- (태생기 및 신생기의 Phosphatidylcholine 보충기 기억력 향상에 미치는 영향 -전뇌기저부의 Choline성 신경세포 활성에 관한 연구-)

  • 전영희
    • Journal of Nutrition and Health
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    • v.32 no.8
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    • pp.864-869
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    • 1999
  • To investigate the effect of dietary phosphatidylcholine(PPC) supplement on memory improvement, biochemical study on the brain, and morphometric studies on the cholinergic neurons in the rat basal forebrain were undertaken. The pregnancy rats were divided into the normal control, the choline deficient and the PPC supplemental groups according to quantity of the PPC in diet. According to choline deficiency and PPC supplement after birth, the neonate rate of the normal control group were subdivided into the control diet(N-N) and the PPC supplied (N-S) groups, the choline deficient group were subdivided into the continually deficient (D-D), the control diet(D-N) and the PPC supplied groups(D-S), and the PPC supplemental group were subdivided into the control diet (S-N)and the continually supplied (S-S)group. The PPC supplemented diet was added 2% egg PPC in AIN 76 formula diet. PPC concentrations and cholinesterase(CE) activities were measured in the serum, the liver and the brain, respectively. Immunohistochemical stains for choline acetyltransferase(ChAT) was employed for the morphological and morphometric studies. The maze test was undertaken to evaluate memory improvement. PPC concentration and CE activities in the serum, liver and the brain were high in the PPC supplemental groups and low in the choline deficient groups. ChAT immunoreactivity neurons at the medial septal diagonal bond complex and the basal forebrain nucleus of Meynert were reduced in the choline deficient groups. Average failure rate for the maze test was the lowest in the S-S group and the highest in the D-D group. Insufficient choline suppley during the neuronal development would result in cholinergic neuronal damage, which could be prevented by adequate PPC supplement. It is consequently suggested that PPC supplement may be effective on memory improvement by maintaining the cholinergic neuronal activity in the basal forebrain of the rats.

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