• 제목/요약/키워드: Perinuclear material

검색결과 3건 처리시간 0.018초

여러 가지 정자구성성분 및 이종정자 주입에 의한 돼지난자의 활성 (Activation of Porcine Oocytes Following Intracytoplasmic Injection of Various Sperm Components and foreign species spermatozoa)

  • 전수현;신지수;도정태;권중균;김남형;이훈택;정길생
    • Clinical and Experimental Reproductive Medicine
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    • 제25권3호
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    • pp.331-340
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    • 1998
  • 본 연구에서는 돼지 난자내에 돼지정자, 여러 가지 처리된 정자두부 (1% Triton, 0.1% Trypsin, 100mM NaOH)및 이종정자 (소, 쥐, 사람)를 미세 주입한 후 난 활성과 웅성 전핵형성, 전핵의 이동 및 배발달을 관찰하였다. 전자현미경으로 관찰한 결과 Triton X-100을 처리하였을 때 첨체가 제거되었으나 핵 주변 물질은 제거되지 않았고 Trypsin 또는 NaOH를 처리 할 경우 핵주변 물질 (perinuclear material)이 제거됨을 볼 수 있었다. 돼지 난자는 정자, 정자두부 및 Triton X-100을 처리한 정자두부의 주입을 통해 난 활성이 유도되었으며 쥐, 소, 사람의 정자를 주입하였을 때 난 활성이 유도되고 정상적인 전핵형성이 이루어졌다. 그러나 정자꼬리나 Trypsin 또는 NaOH에 의해 정자 핵주변 물질(perinuclear material)이 제거된 정자두부를 주입하였을때는 난 활성은 야기되지 않았다. 유사분열 및 2-세포기까지 정상적인 수정은 동종의 정자 및 정자두부를 주입한 난자에서 관찰할 수 있었으나 이 종정자를 주입한 난자에서는 관찰되지 않았다. 또한 상실배 및 배 반포까지 정상적인 수정은 동종의 정자 및 정자두부를 주입한 난자에서 관찰할 수 있었다. 이러한 결과는 돼지에서 정자 및 정자두부의 미세주입에 의해 수정이 이루어지는 것을 시사하며 수정시 정자유래의 난할성인자는 정자 핵주변 물질(porinuclear material)에 존재하며 종특이적이지 않다는 것을 보여주는 것이다.

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누에나방(Bombyx mori L.) 종령유충일용 전환기(轉換期)의 전흉선(前胸腺) 분필세포(分泌細胞)의 미세구조적 변화 (Ultrastructural Changes on the Secreting Cells of the Prothoracic Gland During the Larva-pupal Molt of Bombyx mori L.)

  • 오수자;김지현;김창환;김우갑
    • Applied Microscopy
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    • 제12권2호
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    • pp.69-79
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    • 1982
  • In order to define the morphological changes of the secreting cells of prothoracic gland during larva-pupal molt, ultrastructural observations were carried out using Bombyx mori L. as the experimental material. At first stage of present experiment, 4 day old 5th instar larva, the polyhedral secreting cells were centrally located in the prothoracic gland surrounded by the connective sheath. The secreting cells were attached to the neighboring cells by the prominent desmosomes, and the plasma membrane contacted with connective sheath were highly infolded. In cytoplasm, the most of the cell organelles, such as rod-like mitochondria, rough surfaced endoplasmic reticulum, ribosome were developed. As the stages advance from larva to pupa, general feature of the secreting cells were retained, but structural changes of the various cytoplasmic organelles-ribosome, rough surfaced endoplasmic reticulum, mitochondria, Golgi apparatus, lamellar body, and vesicle-were noted. In the perinuclear cytoplasm of the secreting cells at the stage of 6 day old 5th instar larva, it is peculiar that only a large amount of ribosomes were distributed and the other organelles were retreated from the juxtanuclear region. Just before and after spining cocoon, these features were more remarkable. Rough surfaced endoplasmic reticulum were gradually increased from the stage just before spining cocoon to the pharate pupa. Rod-like mitochondria with irregular cristae and the matrix showing low density were distributed throughout the cytoplasm in the secreting cells of the 4 day old 5th instar larva. Sometimes, longitudinally distended and curved mitochondria were observed. At the stage of pharate pupa, most of mitochondria were deformed. The rod-like mitochondria of the secreting cells of pupal prothoracic gland were narrower than those of 4 day old 5th instar larva, and the electron density of the mitochondrial matrix is increased in pupa. Golgi apparatus were a few in number in both stages, last instar larva and spining cocoon. In stages of the pharate pupa, the Golgi apparatus were frequently observed. Cytoplasmic vesicles were observed for the first time in the secreting cells of one day after spining cocoon, and the number and the size of cytoplasmic vesicles were distinctly increased inpharate pupa and just after pupation. In the secretory cells of the PG, it in concluded that the RER was closely related to syntheting the enzymes seem to produce the ecdysone.

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5,7-Dihydroxytryptamine의 세포독성에 의한 고양이 망막내 미세아교세포의 반응양상 (Microglial Reaction to the Cytotoxicity of 5,7-Dihydroxytryptamine in the Cat Retina)

  • 주우현;남성안;조승묵;조현후;신민철;원무호;최창도
    • Applied Microscopy
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    • 제28권4호
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    • pp.425-434
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    • 1998
  • This study was designed to investigate the microglial reactions to the neurodegenerative changes in the cat retina. All experiments were performed using adult cats of both sex, weighing $2,500g\sim3,500g$. 5,7-DHT $(100{\mu}g)$ dissolved in 0.1% ascorbic acid was injected into the vitreous body. All injections were performed in one-side eye; the other side served as the control, which was injected only with 0.1% ascorbic acid. Cats were sacrificed at 1, 3, 7, 14 and 21 days after intravitreal injection of 5,7-DHT For light microscopy, retinae were fixed with 4% paraformaldehyde and processed using NDPase histochemistry. Same retinae were fixed with 1% para(formaldehyde-2.5% glutaraldehyde and processed for electron microscopy. NDPase-positive microglial cells were mainly distributed in the inner plexiform layer of the retina, and characterized by a small somata with a few slender processes, which were also extended in the ganglion cell layer (GCL) and inner nuclear layer (INL). The intensity of the microglia stained for NDPase was abruptly increased at 7 day as compared with that of the control, and thereafter continuously sustained until 21 day, the last experimental group in this study. Under the electron microscopical observation, microglial cells in the control group exhibited elongate nucleus with perinuclear chromatin condensation, and the perikaryon was scanty. However, a few hypertrophic glial cells were frequently found at 3 days after the drug injection. By 7 day, most microglial cells directed toward the degenerated neurons in the GCL, and the number of microglial cells was slightly increased as compared with the former group. At the 14 day, most microglial cells wrapped the degenerated cells in the GCL, and a few cells showed phagocytotic features. By 21 day, most microglial cells were engaged in phagocytotic activity, and their cytoplasm was filled with the phagorytosed material. Based on the results, 5,7-DHT may act as a specific neurotoxin to the cat retina, and microglial reactions to the neuronal death are already induced in early experimental stage. These results indicate that the microglial cells in the cat retina show characteristic features as a protective effect of neural tissue.

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