• Title/Summary/Keyword: 세포층

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Ultrastructure and Histochemistry on the Integumentary System of the Stone Flounder, Kareius bicoloratus (Teleostei: Pleuronectidae) (돌가자미 (Kareius bicoloratus) 피부계의 미세구조 및 조직화학)

  • Lee, Jung-Sick;Jin, Young-Guk
    • Applied Microscopy
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    • v.31 no.4
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    • pp.325-331
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    • 2001
  • Integumentary structures of the stone flounder, Karefus bicoloratus were examined by means of the light and transmission electron microscopy. Stratified epidermal layer consists of supporting cells, unicellular glands and granular cells. The epidermal layer could be classified into superficial, intermediated and basal layer by morphology and structure of the supporting cells . The cytoplasm of supporting cells is divided into cortex and medullar part. In the cortex microfilaments are well developed. Mucous cells of unicellular gland were observed in the superficial and intermediated layer of the epidermis. The mucous materials were identified as glycoprotein of neutral and carboxylated mucosubstance by histochemical methods. Club cell has well developed smooth endoplasmic reticula and Golgi complex in the cytoplasm. Granular cells were observed in the intermediated and basal layer, and the cytoplasm is occupied with membrane-bounded granules of electron dense. Three types of pigment cells could be distinguished with electron density of cytoplasmic inclusions. Nerve myelins were observed near the pigment cells.

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Ultrastructure and Histochemistry on the Integumentary System of the Rockfish, Sebastiscus tertius (Teleostei: Scorpaenidae) (붉은쏨뱅이 (Sebastiscus tertius) 피부계의 미세구조 및 조직화학적 특징)

  • Baek, Jae-Min;Kim, Chul-Won;Lim, Sang-Gu;Lee, Jae-Bong;Lee, Jung-Sick
    • Applied Microscopy
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    • v.34 no.2
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    • pp.83-93
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    • 2004
  • Integumentary structures of the rockfish, Sebastiscus tertius were examined by means of the light and transmission electron microscopy. Stratified epidermal layer consists of supporting cells, unicellular glands, granular cells and mitochondria-rich cells. The epidermal layer could be classified into superficial, intermediate and basal layer by morphology and structure of the supporting cells. Mucous cells of unicellular gland were observed in the superficial and intermediate layer of the epidermis. The mucous materials were identified as acidic and carboxylated mucosubstance by histochemical methods. Club cell has well-developed central vacuole, rough endoplasmic reticula and Golgi complex in the cytoplasm. Granular cells were observed in the superficial layer and contained numerous granules of high electron density. Mitochondria-rich cells are characterized by well-developed microfilaments in cortex and numerous tubular mitochondria in medullar cytoplasm. Three types of pigment cells in the dermal layer could be distinguished with electron density of cytoplasmic inclusions.

Microscopical Anatomy of Integumentary System of the Walleye Pollock Gadus chalcogrammus (Teleostei: Gadidae) (명태 Gadus chalcogrammus 피부계의 미세해부학적 구조)

  • Hyeon Jin Kim;So Ryung Shin;Jae Won Kim;Jung Sick Lee
    • Journal of Marine Life Science
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    • v.8 no.2
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    • pp.160-165
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    • 2023
  • This study describes the light microscopical cell types and histochemical characteristics as a preliminary study for the research on integument of the walleye pollock Gadus chalcogrammus in accordance with the physiological and environmental changes. The lateral line of the integument surface showed a curve in the anterior part and was straight from the middle to the posterior part. Integument is composed of outer epidermis and inner dermis. The epidermis is a stratified layer composed of epithelial cells, mucous cells, and club cells. Epithelial cells are classified into squamous superficial cell, cuboidal intermediated cell and columnar basal cell. The thickness of epidermis was 122.9 ㎛, and the ratio of epidermis thickness to body length was 0.03%. The mucous cell and club cell of unicellular gland were mainly distributed in the apical and middle layer of epidermis. The mucous cell contained mucosal materials of acidic glycoprotein. The proportion of mucous cells and club cells were 21.3 (± 7.0)% and 4.0 (± 1.0)% of epidermal area, respectively. The dermis was dense connective tissue layer and composed of mainly collagen fibers. It also contained fibrocytes, blood vessels, melanophores and scales.

Ultrastructure on the Integumentary Epidermis of the Marbled Sole, Limanda yokohamae (Teleostei: Pleuronectidae) (문치가자미 (Limanda yokohamae)피부 상피층의 미세구조)

  • Lee, Jung-Sick;Kang, Ju-Chan;Baek, Hea-Ja
    • Applied Microscopy
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    • v.30 no.3
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    • pp.303-310
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    • 2000
  • Ultrastructures on the integumentary epidermis of the marbled sole, Limanda yokahamae, were examined by means of the light and transmission electron microscope. Epidermal layer consists of supporting cells, unicellular glands and accessory cells. The supporting cells were classified into superficial cell, intermediated cell and basal cell. The cytoplasm of supporting cells is divided into cortex and medullar part. In the cortex and medullar part, microfilaments and cell organelles are well developed, respectively. Gland cells are present in the superficial and middle epidermis. The cytoplasm of mucous cell reacted to blue in AB-PAS (pH 2.5). Club cell has a roundish central vacuole and well-developed microfilaments in the cytoplasm. Granular cells are occurs in the middle and basal epidermis , and the cytoplasm is occupied with membrane-bounded granules of electron dense. Chloride cells are present in the superficial epidermis , and the cytoplasm is occupied with tubular mitochondria. Three types of pigment cells can be distinguished by electron density of cytoplasmic inclusions.

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Ultrastructure of the Mantle Epidermis in the Ark Shell, Scapharca broughtonii (Bivalvia: Acridae) (피조개, Scapharca broughtonii 외투막 상피층의 미세구조)

  • Lee, Jung-Sick
    • Applied Microscopy
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    • v.32 no.3
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    • pp.213-222
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    • 2002
  • Histology and ultrastructure of the mantle epidermis in the ark shell, Scapharca broughtonii are described using light and electron microscopy. The mantle of the ark shell is composed of outer epidermis, connective tissue and inner epidermis. Both epidermis are simple and consists of supporting cells, ciliated cells and secretory cells. Connective tissue is composed of mainly collagen and muscle fibers. The supporting cells in the inner epidermis are usually columnar and covered with microvilli. The ciliated cell have cilia and microvilli on the free surface, and numerous tubular mitochondria are observed in the apical cytoplasm. Secretory cells are mainly observed in the outer epidermis, and it can be divided into four types of A, B, C and D with morphological features of the secretory granules. Type A cells of mucous cell are found in the marginal and central mantle. And these cells contains numerous secretory granules of non-bounded and low electron density. Type B cells contains numerous rough endoplasmic reticula, well-developed Golgi complex and secretory granules of membrane-bounded and high electron density. Secretory granules of type C cells are divided into fibrous core layer and homogeneous peripheral layer. Type D cells are found in the outer epidermis of the central and umbonal mantle. And secretory granules of these cells are divided into homogeneous core layer and granular peripheral layer. This results suggest that the outer and inner epidermis of the mantle are related with shell formation and cleaning of the mantle cavity, respectively.

Structural Differentiation of Photosynthetic Tissue in Kranz Anatomy of Salsola Species (Salsola속 Kranz구조내 광합성조직의 구조분화)

  • Kim, In-Sun
    • Applied Microscopy
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    • v.31 no.4
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    • pp.367-374
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    • 2001
  • Leaves of two developmental stages of Salsola species, young and mature, were examined to reveal the structural and functional relationships in the photosynthetic tissue using anatomical and ultrastructural criteria. Both young and mature leaves had Kranz anatomy of the Salsolid type with two layers of chlorenchyma on the leaf periphery: an outer layer of palisade mesophyll cells and an inner layer of compact bundle sheath cells with centripetally arranged organelles. The chlorenchyma was continuous in young leaves , while it was discontinuous in mature leaves. The main vascular bundle occupied the central position in the leaf. but the small peripheral vascular bundles were in contact with the chlorenchyma. Structural dimorphism of chloroplasts was obvious in bundle sheath cells of mature leaves exhibiting noticeable grana reduction, whereas mesophyll cell chloroplasts had well developed grana in all cases. Plasmodesmata were less numerous and rather simple in young leaves relative to well-developed secondary plasmodesmata of the later stage. According to the current data, features of two stages of Salsola leaves corresponded to NADP-ME bio-chemical subtype on the basis of photosynthetic cell ultrastructure. Implications of developing such anatomical and ultrastructural data of Sulsola species and biochemical characteristics reported in other C-4 species have been discussed.

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The Temporal and Spatial Expression of the Cytokeratin in Keratinocytes during Cutaneous Wound Healing on the Amphibian(Bombina orientalis) (양서류 피부 상처회복과정 중 각질화세포 cytokeratin의 분포)

  • Lim, Do-Seun;Jeong, Soon-Jeong;Moon, Myung-Jin;Jeong, Moon-Jin
    • Applied Microscopy
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    • v.37 no.4
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    • pp.209-217
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    • 2007
  • The system of wound healing is very complex biological processing that includes inflammatory, reepithelialization, and matrix construction. For identification of the transitional pathway of the keratinocytes, we have employed immunohistochemical analysis using cytokeratin antibody after wounding. Epithelium in skin of the frog(Bombina orientalis) was examined with transmission electron microscopy. Cytokeratin was expressed in normal basal and gland cavity cells. At 3-hour basal layer cells were strong positive, however cells of the upper layer were negative reaction. Day1 and 2 after post-wounding, regenerating epithelial cell layer was positive reaction, especially basal layer cells were strong positive. At day 10 after wounding, the degree of positive reaction to basal cells of regenerating epithelial tissue was equal to day 7 wound tissue. At day of 19th, basal and spinous layer cells were strong positive reaction. Regenerating epithelial cells were positive but some basal cells were strong positive at day 27. From this result, we identified that the migration of the keratinocytes in amphibian skin wounds is initiated from basal layer fells and the keratinocytes migrate into basal and middle of the wound area.

문치가자미 (Lymanda yokohamae) 피부계의 지지세포 및 선세포 미세구조

  • 박정준;김재원;강주찬;이정식
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.05a
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    • pp.389-390
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    • 2000
  • 어류의 피부계는 크게 상피층과 진피층으로 구성되고, 상피층을 구성하는 세포들의 종류와 발달정도는 종, 연령, 생활환경 그리고 이들의 생리적 상태에 따라 매우 다양하게 변화한다 (Henrikson and Natoltsy, 1968; Burton and Everard, 1991; Eastman and Hikida, 1991; Hertwig et al., 1992: Park et al., 1995; Lee and Kim, 1999). 본 연구는 저서 정착성 어류인 문치가자미의 피부 상피층 구성 세포들의 미세구조를 기재함으로서 추후 이들 어류의 생활환경 및 생리적 변화에 따른 피부계의 변화 양상에 관한 연구의 기초자료를 제공하고자 하였다. (중략)

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Pathogenesis of Inflammation in H. pylori Infection

  • 정현채
    • Journal of Gastric Cancer
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    • v.2 no.2
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    • pp.63-68
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    • 2002
  • 위의 parietal cell 혹은 대식세포와 유사한 세포 내부에서 H. pylori가 발견된다는 보고가 있기는 하나 일반적으로 H. pylori는 Shigella와 같은 침습성 세균은 아닌 것으로 알려져 있다. 그럼에도 불구하고 H. pylori에 감염된 위점막에는 많은 수의 호중구를 위시한 염증세포의 침윤이 관찰되는데 H. pylori가 위상피세포에 부착할 경우 위상피세포를 자극하여 interleukin-8을 위시한 cytokine을 발현케하고 이에 의하여 호중구 등의 염증세포가 몰려들게 된다. 한편 고유층에 몰려든 호중구에서는 다시 interleukin-8을 위시한 일련의 호중구 활성화 chemokine을 분비하여 염증반응을 증폭해 나갈 것이다. 호중구에서 발현되는 myeloperxidase나 활성산소 등도 위점막의 조직 손상에 기여할 것이다. 위상피세포를 덮고 있는 점액층은 위상피세포를 보호한다고 알려져 있으나 H. pylori 감염의 경우 점액층에 의하여 H. pylori의 운동성이 증가하고 이것이 위상피세포로부터의 cytokine 발현을 자극하여 염증반응을 증폭하는 데 관여할 가능성도 있다. H. pylori는 위상피세포에 대하여 apoptosis를 유도함과 동시에 고유층에 몰려든 호중구에 대하여는 apoptosis를 억제케하여 궁극적으로 염증반응을 증폭 및 지속시켜 나가는 쪽으로 작용한다. 한편 H. pylori는 위상피세로로부터 COX-2의 발현을 증가시키는데 이는 위상피세포의 APOPTOSIS를 억제하는 방향으로 작용한다. 이외에 H. pylori의 urease에 의하여 발생한 암모니아나 H. pylori 자신이 분비하는 세포독소가 세포 손상을 유발할 가능성도 있다. 상술한 여러 독성 인자들 중 어느 하나가 단독으로 작용하기보다는 여러 인자가 같이 동시에 또는 시차를 두고 작용할 가능성이 많다고 생각된다.

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Structure of Oocyte Surface in Two Korean Minnow Species, Rhynchocypris kumgangensis and R. oxycephalus (Pisces: Cyprinidae) (금강모치와 버들치 난모세포의 표피 구조)

  • Gwak, Jin-Young;Park, Jong-Young
    • Korean Journal of Ichthyology
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    • v.19 no.1
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    • pp.16-23
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    • 2007
  • Oocyte surface in two Korean minnows, Rhynchocypris oxycephalus and R. kumgangensis was examined by light and electron microscope. In two species, the development of the oocyte was similar, but the follicular layer surrounding full-grown oocyte showed an evident difference. In R. oxycephalus, the follicular layer at the yolk vesicle stage became bilaminar with the retention of its outer squamous cell layer and the acquisition of an inner cuboidal or round cell layer just over the zona radiata. As the oocyte grows, the cuboidal cells of the inner follicular layer began to be replaced by columnar cells. At the yolk granule stage, the columnar cells secreted mucin to their cytoplasm (adhesive materials) and then surround the entire oocyte, as bundles of fence-shaped structures. Whereas, although the follicular layer of R. kumgangensis had an outer squamous layer and an inner cuboidal or round cell layer at the yolk vesicles as in R. oxycephalus, no inner cells were more changed with the retention of its cuboidal or round cells. Finally, in R. kumgangensis, the adhesive materials did not occur. In Korean two minnows, the structural difference in the oocyte surface seems to be related to their habitats and spawning characteristics as well as taxonomic characters.