• 제목/요약/키워드: Immunoreactive cell

검색결과 169건 처리시간 0.022초

Immunocytochemical Study on the Enteroendocrine Cells in the Gastrointestinal Tract of Lateolabrax japonicus, Epinephelus septemfasciatus and Mugil cephalus

  • Ok, Sun-Hee;Jo, Gi-Jin;Lee, Eung-Hee;Choei, Byung-Tae;Jo, Un-Bock
    • Journal of Life Science
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    • 제9권2호
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    • pp.24-33
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    • 1999
  • The gastrointestinal tract of three Percida, Lateolabrax japonicus, Epinephelus septemfasciatus and Mugil cephalus, was investigated immunocytochemically for the occurrence of somatostatin-. seotonin-, gastrin-, pancreatic polypeptide(PP)-, cholecystokinin-8(CCK-8)- and glucagon-immunoreactive cells. In Lateolabrax japonicus and Epinephelus septemfasciatus, five endorcrine cell types, such as somatostatin-, serotonin-, gastrin-, PP- and CCk-8-immunoreactive cells were demonstrated. In Mugil cephalus, however, six endocrine cell types, such as somatostatin-, serotnin-gastrin-, PP-, CCK-8- and glucagon-immunoreactive cells were detected. Somatostatin- and serotonin-immunoreactive cells were detected in the gastric mucosa of all species. Glucagon-immunoreactive cells were found only in the gastric mucoas of Mugil cephalus. In the pyloric caeca, PP-and CCK-8-immnuoreactive cells fo all species. gastrin-immunoreactive cells of Epinephelus septemfasciatus and Mugil cephalus, and serotonin-immunoreactive cells of Epinephelus septemfasciatus were demonstrated. In the intestinal mucosa of all species, gastrin-, PP- and CCK-8-immunoreactive cells were detected, and in the intestinal mucosa of Epinephelus septemfasciatus serotonin-immunoreactive cells were also detected. The frequency of these immunoreactive cells differs from each portion of the gastrointestinal tract of all species.

북극여우의 위장췌 내분비세포에 관한 면역조직화학적 연구 (Immunohistochemical study on the gastro-entero-pancreatic(GEP) endocrine cells of the blue fox, Alopex lagopus)

  • 이재현;이형식
    • 대한수의학회지
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    • 제33권3호
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    • pp.369-379
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    • 1993
  • 북극여우의 위장췌 내분비세포의 부위별 분포, 출현빈도 및 세포의 종류를 밝히고자 면역조직화학적으로 관찰하였던 바 위장관에서는 6종, 췌장에서는 4종의 면역반응세포가 동정되었다. 5-HT 및 somatostatin면역반응세포는 전 위장관에 다수 분포하였으나 이중 somatostatin 면역반응세포는 장관에서 소수로 관찰되었다. Gas/CCK 면역반응세포는 주로 유문부와 십이지장에 국한하여 다수 분포하였다. Glucagon 면역반응세포를 분문부와 위저부에서 다수 그리고 장관에서 소수 관찰되었다. BPP 면역반응세포는 분문부와 위저부에 중등도, 대장에 소수 분포하였다. 다수의 porcine CG 면역반응세포가 분문부와 위저부에서만 동정되었다. 한편 췌장에서는 somatostatin, glucagon, BPP 및 insulin 등 4종의 면역반응세포가 췌도 및 외분비부에서 관찰되었다. 이상의 결과는 위췌장 내분비세포의 부위별 분포와 출현빈도가 동물종에 따라 매우 상이하다는 사실을 시사한다.

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북극여우의 위장췌 내분비세포에 관한 면역조직화학적 연구 (Immunohistochemical study on the gastro-entero-pancreatic(GEP) endocrine cells of the blue fox, Alopex lagopus)

  • 이재현;이형식
    • 대한수의학회지
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    • 제33권4호
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    • pp.579-589
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    • 1993
  • 북극여우의 위장췌 내분비세포의 부위별 분포, 출현빈도 및 세포의 종류를 밝히고자 면역조직화학적으로 관찰하였던 바 위장관에서는 6종, 췌장에서는 4종의 면역반응세포가 동정되었다. 5-HT 및 somatostatin 면역반응세포는 전위방관에 다수 분포하였으나 이중 somatostatin 면역반응세포는 장관에서 소수로 관찰되었다. Gas/CCK 면역반응세포는 주로 유문부와 십이지장에 국한하여 다수 분포하였다. Glucagon 면역반응세포는 분문부와 위저부에서 다수 그리고 장관에서 소수 관찰되었다. BPP 면역반응세포는 분문부와 위저부에 중등도, 대장에 소수분포하였다. 다수의 porcine CG 면역반응세포가 분문부와 위저부에서만 동정되었다. 한편 췌장에서는 somatostatin, glucagon, BPP 및 insulin 등 4종의 면역반응세포가 췌도 및 외분비에서 관찰되었다. 이상의 결과는 위췌장 내분비세포의 부위별 분포와 출현빈도가 동물종에 따라 매우 상이하다는 사실을 시사한다.

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도롱뇽의 위장관 내분비세포에 관한 면역조직화학적 연구 (An immunohistochemical study of the gut hormones in Hynobius leechii)

  • 이형식;이재현
    • 대한수의학회지
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    • 제35권1호
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    • pp.39-44
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    • 1995
  • 도롱뇽(Hynobius leechii)의 위장관 내분비세포를 면역조직화학적으로 관찰하였던 바, BPP 면역반응세포는 유문부에서 중등도, 십이지장과 소장에서 소수로 관찰되었다. 중등도의 somatostatin 면역반응세포는 유문부에 국한되어 출현하였다. 5-HT 면역반응세포는 전장관에 걸쳐 출현하였으나 유문부에서 다수 그리고 직장에서 극소수로 분포하였다. 특히 BPP와 5-HT면역반응세포는 도롱뇽에서 최초로 동정하였다.

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한국 재래산양의 위장관에 출현하는 내분비세포의 면역조직화학적 연구 (An immunohistochemical study of the endocrine cells in gastrointestinal tract of the Korean native goat)

  • 이재현;이형식
    • 대한수의학회지
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    • 제30권3호
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    • pp.261-270
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    • 1990
  • 한국 재래산양의 위장관 내분비세포를 면역조직화학적으로 관찰하였던 바 5-HT, somatostatin, Gas/CCk, glucagon, chromogranin, PP 면역 반응세포들이 동정되었다. 한국 재래산양의 위장관에 있어서 이들 면역반응세포의 부위별 분포와 출현빈도의 특징은 다음과 같다. 5-HT 면역반응세포는 제 4 위 및 유문부에서 보다 대장과 소장에서 더 많이 출현하였다. Somatostatin면역반응세포는 대장과 소장에서 보다 제 4 위와 유문부에서 다수 출현하였다. Gas/CCk 면역반응세포는 유문부에서 가장 다수로 분포하였으며 기타 부위에서는 소수로 출현하였다. 대장과 소장에서는 중등도의 glucagon 면역반응세포가 관찰되었으나, 제 4위와 유문부에서는 소수로 관찰되었다. Chromogranin 면역반응세포는 전 위장관에서 골고루 그리고 아주 많이 출현하였다. PP면역반응세포는 대장에서 중등도로, 회장에서 소수로 분포하였다. Insulin 면역반응세포는 전 위장관에서 관찰할 수 없었다.

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Immunohistochemistry of Glucagon- immunoreactive Cells in the Developing Pancreas of the Korean Native Goat (Capra hircus)

  • Sae-Kwang Ku;Hyeung-Sik Lee;Jae-Hyun Lee
    • Animal cells and systems
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    • 제3권2호
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    • pp.187-191
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    • 1999
  • The distribution of glucagon-immunoreactive cells in the pancreas during various developmental stages (fetus, neonate, 1-month-old, 6-month-old and adult) of the Korean native goat was investigated by immunohistochemical methods. The varying distribution and frequency of glucagon-immunoreactive cells in the pancreas of the Korean native goat were observed. The glucagon-immunoreactive cells were detected in both exocrine and endocrine portions (pancreatic islets) at all developmental stages and also in ducts of the 6-month-old and adult. The relative frequencies of glucagon-immunoreactive cells increased in the pancreatic islets and ducts with age, but decreased in the exocrine portions. Generally, they were distributed in the interacinar spaces or marginal zone of the pancreatic islets during all stages of development. However, the cell distributions of the pancreatic islets in the neonate divided into two types: 1) ones which were distributed in the inner zone, and 2) others in the peripheral zone.

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CaAlAs 저출력 레이저 자극이 흰쥐의 피부 전층결손 절제 창상의 치유시 proliferating cell nuclear antigen(PCNA)발현에 대한 면역조직화학법적 분석 (Immunohistochemical analysis of the effect of low power GaAlAs laser treatment on the expression of proliferating cell nuclear antigen (PCNA) in full-thickness excisional wound of rat skin)

  • 김순자;구희서
    • 대한물리치료과학회지
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    • 제10권1호
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    • pp.198-205
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    • 2003
  • We evaluated the effect of low power GaAsAl laser on re-epithelization in full-thickness excisional wound of rat skin. Two full-thickness excisions were made on the back of the experimental animals. Low power laser applications with 10mW intensity were treated experimental animals twice a day for 7 days. On the seventh postoperative day the quantitative analysis of re-epithelization was performed using immunohistochemical staining for proliferating cell nuclear antigen (PCNA). The majority of PCNA immunoreactive cells was observed at epithelial cells in the margin of full thickness excisional wound. The low power laser treatments significantly increased the number of PCNA immunoreactive cell as compared to that of non treated animal group (p<0.01). The shape of PCNA immunoreactive cell appeared as small dark, round to ovoid structures. Most PCNA immunoreactive cells exhibited a high intensity of staining that contrasted sharply with the surrounding background. In conclusion, these findings suggest that GaAlAs laser treatments effectively enhance the epithelial wound healing by the stimulating cell proliferation. Furthermore, the majority of cell proliferation occurred in the margin of full thickness excisional wound.

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Immunohistochemistry of the Pancreatic Endocrine Cells of the Red-eared Slider (Trachemys scripta elegans)

  • Ku, Sae-Kwang;Lee, Hyeung-Sik;Lee, Jae-Hyun;Park, Ki-Dae
    • Animal cells and systems
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    • 제4권2호
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    • pp.187-193
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    • 2000
  • Regional distribution and relative frequency of endocrine cells in the pancreas of the red-eared slider, Trachemys scripta elegans, were investigated by immunohistochemical methods. Chromogranin (Cg) A-, serotonin-, insulin-, glucagon-, somatostatin-, bovine pancreatic polypeptide (BPP)- and human pancreatic polypeptede (HPP)-immunoreactive cells were identified in this study. Most of immunoreactive cells in the exocrine and endocrine pancreas (Langerhans islet) were generally spherical or spindle-shaped (open-typed cell), while occasionally cells round in shape (close-typed cell) were found in the basal portion or interepithelial regions of the pancreatic duct. These immunoreactive cells were located in the exocrine, endocrine pancreas and/or basal or interepithelial portion of the pancreatic duct. Serotonin-immunoreactive cells were found in the basal portion of epithelia of the pancreatic duct at a low frequency and interacinar region of the exocrine at a moderate frequency. Insulin-immunoreactive cells were found in the central portion of the endocrine pancreas, interacinar regions of the exocrine pancreas and basal portion of the epithelia of the pancreatic duct at high, moderate and low frequencies, respectively. Glucagon-immunoreactive cells were detected in the periphery of the endocrine pancreas, interacinar region of the exocrine pancreas and basal portion of the epithelia or interepithelia of the pancreatic duct at high, moderate and moderate frequencies, respectively. Somatostatin-immunoreactive cells were dispersed in the whole area of the endocrine pancreas, interacinar regions of exocrine pancreas and basal portion of the epithelia or interepithelia of the pancreatic duct at a moderate frequency. BPP- and HPP-immunoreactive cells were detected in the iinteracinar region of the exocrine pancreas at moderate and hige frequencies, respectively. However, no Cg A- and motilin-immunoreactive cells were detected in this study.

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Differentiation and Distrbution of the Choline Acetyltransferase-immunoreactive Nerve Cells in the Magnocellular Preoptic Nucleus of the Rat Forebrains during the Postnatal Development

  • Chung, Young-Wha;Choi, Yoon-Jin
    • Animal cells and systems
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    • 제1권3호
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    • pp.483-489
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    • 1997
  • This study was performed to investigate the differentiation and distribution of choline acetyltransferase (ChAT}-immunoreactive cells in the magnacellular preoptic nucleus (MCPO) of the postnatal and adult rat forebrains, utilizing techniques of immunocytochemistry. According to the cell shape and the ratio of long axis versus short axis of cell soma, the ChATimmunoreactive nerve cells in the MCPO were classified into six types: 1) round, 2) oval, 3) elongated, 4) fusiform, 5) triangular, and 6) polygonal types. Frequency distributions of the oval and round nerve cells on the postnatal day (PND) 0 were observed to be high. But in the adult, frequency distributions of the same cells were shown to decrease. Compared to those of the postnatal rats, frequency distributions of elongated, fusiform, triangular, and polygonal nerve cells in the adult were increased. The total mean volumes of ChAT-immunoreactive cell somata in the MCPO of PND 0 rat were the lowest, while those in the PND 17 rat were shown to be the highest and decreased in the adult. The soma volumes of the immunoreactive cells at the PND 17 were evenly distributed, but those in the other developmental stages (e.g. PND 7 and adult) appeared to exhibit unimodal distributions. On the electron micrography, the free ribosomes, polysomes, and rough endoplasmic reticula (RER) of the nerve cells in the MCPO of PND 21 rat forebrains were immunoreactive to ChAT in the tissues untreated with triton X-100. According to the observations in the present study, it is considered that the ChAT-immunoreactive nerve cells in the MCPO of the rat forebrains are differentiated throughout the following processes during the postnatal development: 1) increase in cell soma volumes, 2) development of neurites, 3) increase in the frequency of differentiated cell types, and 4) decrease in cell soma volumes. The ribosomes, polysomes, and RER are considered to be closely related to the intracellular localization and biosynthesis of the ChAT but not Golgi complex.

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각종 동물의 췌장 내분비세포의 면역조직화학적 연구 (Immunohistochemical studies of the pancreatic endocrine cells of the various animals)

  • 이재현;이형식
    • 대한수의학회지
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    • 제32권4호
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    • pp.497-510
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    • 1992
  • This study was attempted to comparative investigate the types and regional distribution of the endocrine cells in several vertebrates immunohistochemically using seven antisera. From carp pancreas could be observed 4 types which are insulin-, glucagon-, som- and BPP-immunoreactive cells. Insulin-immunoreactive cells were mainly distributed at the periphery and a few cells occupied the central region of the islets. Glucagon-immunoreactive cells were distributed at the periphery of the islets, and som - and BPP-immunoreactive cells were located at the central region. From frog pancreas could be observed 4 types which are insulin-, glucagon-, som- and BPP-immunoreactive cells. Insulin-immunoreactive cells were distributed throughout the islets. Som-immunoreactive cells were distributed at the periphery of the islets, and glucagon- and BPP-immunoreactive cells were found as single cell or as small groups located between the pancreatic acini. From snake pancreas could be observed 3 types which are insulin-, glucagon- and som -immunoreactive cells. Insulin-immunoreactive cells were distributed throughout the small islets, and they also were scattered at the periphery of the large islets. Glucagon-immunoreactive cells were distributed at the periphery of the islets, whereas som-immunoreactive cells were occupied the central region. From Ogolgae pancreas could be observed 4 types which are insulin-, glucagon-, som-and BPP-immunoreactive cells. Insulin-immunoreactive cells were distributed throughout the small islets, but at the periphery of the large one. Glucagon- immunoreactive cells were distributed at the periphery of the small islets and in the large islets showed scattering entired. Som-immunoreactive cells were distributed at the periphery of the small islets and in the large islets were located at the central region. A small numbers of BPP-immunoreactive cells were located at the periphery of the small islets and the exocrine regions. From the pancreas of the Korean native goat could be observed 6 types which are insulin-, glucagon-, som-, BPP-, 5-HT- and porcine-CG-immunoreactive cells. Insulin-immunoreactive cells were distributed throughout the islets. Som-immunoreactive cells were located at the periphery of the islets, but a tew were scattered at the central region of islets and in the epithelium of the secretory duct. Glucagon-, BPP-, 5-HT- and porcine CG-immunoreactive cells were distributed at the periphery of the islets. These findings indicated that the regional distribution patterns and cell types of pancreatic endocrine cells in vertebrates varies considerably among phylogenetically different vertebrates.

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