• Title/Summary/Keyword: digestive cell

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Ultrastructure of the Digestive Diverticulum of Tegillarca granosa (Bivalvia: Arcidae) (꼬막, Tegillarca granosa 소화맹낭의 미세구조)

  • Ju, Sun Mi;Jeon, Mi Ae;Kim, Hyejin;Ku, Kayeon;Lee, Jung Sick
    • The Korean Journal of Malacology
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    • v.31 no.1
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    • pp.27-34
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    • 2015
  • The anatomy and ultrastructure of the digestive diverticulum of Tegillarca granosa were described using light and electron microscopy. The digestive diverticulum was situated on the gonad and connected to stomach by a primary duct. Digestive diverticulum is composed of numerous digestive tubules. The epithelial layer of digestive tubule, which is simple, is composed of basophilic cells and digestive cells. Basophilic cells are columnar in shape, and the electron density is higher than that of the digestive cell. The cytoplasm has a well-developed endoplasmic reticulum, tubular mitochondria, Golgi complex and of membrane-bounded granules of high electron density. Digestive cells were classified into three types. According to cell shape, electron density and cell organelles. However, three types of epithelia was same that striated border was observed in free surface and lysosome was observed in cytoplasm. The results of this study suggest that basophilic cells and digestive cells in the digestive tubule are specialized in the extracellular and intracellular digestions, respectively.

Microanatomical Structure of the Digestive Diverticulum of Mytilus galloprovincialis (Bivalvia: Mytilidae) (지중해담치, Mytilus galloprovincialis 소화맹낭의 미세해부학적 구조)

  • Ju, Sun-Mi;Lee, Jung-Sick
    • Applied Microscopy
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    • v.41 no.4
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    • pp.257-263
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    • 2011
  • The microanatomy and ultrastructure of the digestive diverticulum of Mytilus galloprovincialis were described using light and electron microscopy. The digestive diverticulum of tawny color was surrounded the stomach and connected to stomach by a primary duct. Digestive diverticulum is composed of numerous digestive tubules. The epithelial layer of a simple digestive tubule, which is simple, is composed of basophilic cells and digestive cells. Basophilic cells are columnar in shape, and has a well-developed endoplasmic reticula, tubular mitochondria, Golgi complex and membrane-bounded granules of high electron density in the cytoplasm. Whereas digestive cells are columnar in shape, with development of microvilli and cilia on the free surface. Pinocytic vasicles, active lysosomes and numerous mitochondria were observed in the apical cytoplasm of digestive cells. The results of this study suggest that basophilic cell and digestive cell of the digestive tubule are specialized in the extracellular and intracellular digestion, respectively.

Histochemical and Ultrastructural Study on the Digestive Tract of a Land Snail Nesiohelix samarangae (동양달팽이의 소화관에 대한 조직화학적 및 미세구조적 연구)

  • 정계헌;이용석
    • The Korean Journal of Malacology
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    • v.14 no.2
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    • pp.131-147
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    • 1998
  • A histochemical and ultrastructural study on the epithelia of some selected digestive tracks such as esophagus, crop, intestine of a land snail N. samarangae was carried out during the period of June 1997 to may 1998. The epithelium of digestive tract are simple columnar epithelium and consisted of five types of columnar cells. Type 1 cell which is majority in number has a brush border with microvilli on the free surface of the cell and contains numerous secretory granules supposed to be neutral mucopolysaccharide. Type 2 cell, elongated conical in shape, is rarely found in the epithelium. This cell also has a brush border with microvilli on its free surface and contains well developed rough surfaced endoplasmic reticulum, Golgi bodies, and secretory granules in various electron densities. This cell seems to produce both of acid and neutral mucopolysaccharides. Type 3 cell, which is morphologically similar to the Type 1 cell, has microvilli and cilia on the free surface and exists in group only in the limited regions of the intestine. Type 4 cell, typical goblet cell containing secretory granules in high electron density. Type 5 cell rarely found in the digestive tract. This cell contain inconspicuous materials.

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EGF Reverses Multi-drug Resistance via the p-ERK Pathway in HepG2/ADM and SMMC7721/ADM Hepatocellular Carcinoma Models

  • Yan, Feng;Bai, Li-Ping;Gao, Hua;Zhu, Chang-Ming;Lin, Li;Kang, Xiang-Peng
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.6
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    • pp.2619-2623
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    • 2014
  • Aim: To investigate signaling pathways for reversal of EGF-mediated multi-drug resistance (MDR) in hepatocellular carcinoma (HCC) models. Materials and Methods: HCC MDR cell strain HepG2/adriamycin (ADM) and SMMC7721/ADM models were established using a method of exposure to medium with ADM between low and high concentration with gradually increasing concentration. Drug sensitivity and reversal of multi-drug resistance by EGF were determined and the cell cycle distribution and apoptosis were analyzed by flow cytometry. Phosphorylation of ERK1, ERK2, ERK5 and expression of Bim were detected by Western blotting. Results: The results showed that HepG2/ADM and SMMC7721/ADM cells were resistant not only to ADM, but also to multiple anticancer drugs. When used alone, EGF had no anti-tumor activity in HepG2/ADM and SMMC7721/ADM cells in vitro, while it increased the cytotoxicity of ADM. EGF induced cell apoptosis and G0/G1 phase cell cycle arrest in HepG2/ADM And SMMC7721/ADM cells, while enhancing activity of p-ERKs and up-regulated expression of BimEL. Conclusions: EGF might enhance the chemosensitivity of HepG2/ADM and SMMC7721/ADM cells via up-regulating p-ERKs and BimEL protein.

Ultrastructure of the Digestive Diverticulum of Saxidomus purpuratus (Bivalvia: Veneridae) (개조개, Saxidomus purpuratus 소화맹낭의 미세구조)

  • Ju, Sun-Mi;Lee, Jung-Sick
    • The Korean Journal of Malacology
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    • v.27 no.3
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    • pp.159-165
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    • 2011
  • The anatomy and ultrastructure of the digestive diverticulum of Saxidomus purpuratus were described using light and electron microscopy. The digestive diverticulum of dark green color was situated on the gonad and connected to stomach by a primary duct. Digestive diverticulum is composed of numerous digestive tubules. The epithelial layer of digestive tubule, which is simple, is composed of basophilic cells and digestive cells. Basophilic cells are columnar in shape, and the electron density is higher than that of the digestive cell. The cytoplasm has a well-developed endoplasmic reticulum, tubular mitochondria, Golgi complex and membrane-bounded granules of high electron density. Digestive cells are columnar in shape, with development of microvilli on the free surface. Pinocytic vasicles, lysosomes and numerous mitochondria were observed in the apical cytoplasm of digestive cells. The results of this study suggest that basophilic cells and digestive cells in the digestive tubule are specialized in the extracellular and intracellular digestions, respectively.

Ultrastructure of the digestive tract of Korean Leech (Erpobdella lineata) (한국산 거머리 (Erpobdella lineate) 소화관의 미세구조)

  • Chang, N.S.
    • Applied Microscopy
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    • v.24 no.3
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    • pp.34-45
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    • 1994
  • This investigation has been carried out to examine the structure of digestive tract from Korean Leech, Erpobdella lineata, using light and electron microscope. The digestive tract is composed of mouth, pharynx, Oesophagus, six-chambered stomach, three-chambered intestine, rectum and anus. Stomach and intestine have not gastric or intestine ceca and consist of only straight tube. All digestive tracts from pharynx to rectum are covered with simple columnar epithelial cells. While the surfaces of endothelial cell of pharynx and rectum are covered with cuticular layer of about $0.3{\mu}m$ in thickness, stomach and intestine are covered with estimated $0.2-0.3{\mu}m$ and $0.5{\mu}m$ microvilli respectively. Circular folds were found only in first and second chambers of stomach, intestine and rectum, but not in pharynx and the other chambers (third to sixth) of stomach. The granules of $0.3-0.8{\mu}m$ and $0.5-1.0{\mu}m$ in diameter were observed in the cytoplasm of stomach endothelial cell. These granules were demonstrated to contain protein which showed a positive reaction to ninhydrin. It was also found that there are well-developed microvilli in the apical portion of intestine endothelial cell in which endocytosis occurs actively.

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Effects of Artificial Digestive Juice on the Antitumor-Immunity Activity of Protein-bound Polysaccharide from Ganoderma lucidum (인공소화액이 영지 단백 다당체의 항암-면역 활성에 미치는 영향)

  • 유정실;현진원;김하원;심미자;김병각
    • YAKHAK HOEJI
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    • v.44 no.4
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    • pp.347-353
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    • 2000
  • To examine influence of artificial digestive juice on the antitumor activity of Ganoderma lucidum-A(GL-A), protein-bound polysaccharide from Ganoderma lucidum, we compared the digested protein-bound polysaccharide with undigested one both on immunopotentiating activity and influence of digestive juices. Protein-bound polysaccharide GL-B was obtained by digesting the antitumor component GL-A with artificial digestive Juices in vitro. When GL-A was administered orally to sarcoma 180 tumor-bearing ICR mice, the life prolonging effect was exhibited in a dose dependent manner Not only GL-A but GL-B increased the production of colony forming unit (CFU) to 10- and 8-fold of that of the control, respectively. Both of the protein-bound polysaccharides also showed the secretion of nitric oxide in RAW 264.7 cell lines to 3.5-and 3.7-fold of that of the control, respectively: GL-A activated components of the alternative complement pathway, whereas GL-B did not. In humoral immunity GL-A increased the activity of alkaline phosphatase in differentiated B cells to 3 times and GL-B to 4 times of that of the control. These results showed that the artificial digestive juices had no influence on the antitumor activity of the protein-bound polysaccharide from Ganoderma lucidum and that its immunomodulating activity retained after treatment with artificial digestive juice. And this provides a basis of the protein-bound polysaccharide of Ganoderma lucidum as an peroral anticancer drug.

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Morphology of Digestive Tract and Its Goblet Cells of Giurine Goby Rhinogobius giurinus

  • Hur Sang-Woo;Song Young-Bo;Lee Chi-Hoon;Lim Bong-Soo;Lee Young-Don
    • Fisheries and Aquatic Sciences
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    • v.8 no.2
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    • pp.83-89
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    • 2005
  • Morphology, histology, and histochemical characteristics of the digestive tract of the guirine goby (Rhinogobius giurinus: Gobiidae), collected from the coast of Jeju Island, Korea, were investigated. The digestive tract of R. giurinus, which is a brackish water species, has a short (relative length of gut=0.42), simple, and narrow gut. The gastric glands are well developed in the stomach, but pyloric caeca are absent. The mucosal folds are regularly branched, and the muscularis extern a is thickest in the esophagus, which also contained the most mucus-secreting goblet cells (P<0.05). In R. giurinus, digestive function occurs in the anterior portion of the digestive tract, where mucus protects the tract from the actions of digestive enzymes and functions to activate digestion.

The Influence of Bcl-3 Expression on Cell Migration and Chemosensitivity of Gastric Cancer Cells via Regulating Hypoxia-Induced Protective Autophagy

  • Hu, Lin;Bai, Zhigang;Ma, Xuemei;Bai, Nan;Zhang, Zhongtao
    • Journal of Gastric Cancer
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    • v.20 no.1
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    • pp.95-105
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    • 2020
  • Purpose: Gastric cancer is a highly metastatic malignant tumor, often characterized by chemoresistance and high mortality. In the present study, we aimed to investigate the role of B-cell lymphoma 3 (Bcl-3) protein on cell migration and chemosensitivity of gastric cancer. Materials and Methods: The gastric cancer cell lines, AGS and NCI-N87, were used for the in vitro studies and the in vivo studies were performed using BALB/c nude mice. Western blotting, wound healing assay, Cell Counting Kit-8 assay, immunohistochemistry, and terminal deoxynucleotidyl transferase dUTP nick end labeling assay were used to evaluate the role of Bcl-3 in gastric cancer. Results: We found that the protein expression of hypoxia (HYP)-inducible factor-1α and Bcl-3 were markedly upregulated under hypoxic conditions in both AGS and NCI-N87 cells in a time-dependent manner. Interestingly, small interfering RNA-mediated knockdown of Bcl-3 expression affected the migration and chemosensitivity of the gastric cancer cells. AGS and NCI-N87 cells transfected with si-RNA-Bcl-3 (si-Bcl-3) showed significantly reduced migratory ability and increased chemosensitivity to oxaliplatin, 5-fluorouracil, and irinotecan. In addition, si-Bcl-3 restored the autophagy induced by HYP. Further, the protective role of si-Bcl-3 on the gastric cancer cells could be reversed by the autophagy inducer, rapamycin. Importantly, the in vivo xenograft tumor experiments showed similar results. Conclusions: Our present study reveals that Bcl-3 knockdown inhibits cell migration and chemoresistance of gastric cancer cells through restoring HYP-induced autophagy.

Ultrastructural Changes in digestive gland and Lipofuscin Accumulation of the Equilateral Venus, Gomphina veneriformis (Bivalvia: Veneridae) on Tributyltin chloride (TBTCl) Toxicity (TBTCl 독성에 의한 대복, Gomphina veneriformis 소화선의 미세구조적 변화 및 지방갈색소 축적)

  • Park, Jung-Jun;Lee, Jung-Sick
    • The Korean Journal of Malacology
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    • v.26 no.1
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    • pp.63-78
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    • 2010
  • The purpose of this study was to investigate the effect of tributyltin (TBT) on histopathological and ultrastructural changes in the digestive gland structure of the equilateral venus, Gomphina veneriformis. Experimental period was 36 weeks. Experimental groups consist of control condition and 3 TBTCl exposure conditions (0.4, 0.6, $0.8\;TBTC\;{\mu}g\;L^{-1}$). Outer envelop of the visceral mass of G. veneriformis exposed to TBTCl was observed disappearance of microvilli and cilia, decrease of mucous cell and partially destruction of epithelium. In the digestive gland showed an increase of number of hemocyte and mucopolysaccaride near the digestive tubule at early time of the exposure. Especially, in $0.8\;TBTC\;{\mu}g\;L^{-1}$ group, collapse of digestive tubule with modification of epithelium was observed. TEM observation revealed the numerous glycogen granules in epithelium of the outer envelop and connective tissue. In the ciliated cell of the primary duct formed the cilia in cytoplasm. Basophilic cell was observed destruction of the rough endoplasmic reticulum and mitochondria. Also, nucleus in the epithelium of the digestive tubule was disappeared heterochromatin and nucleolus, and condense. As the concentration of TBTCl increased, the accumulation of lipofucin increased in the digestive gland, but the collapse of digestive tubule induced a decrease of accumulation of lipofuscin.