• 제목/요약/키워드: Apical uptake

검색결과 16건 처리시간 0.018초

Mechanisms Underlying Enterococcus faecalis-Induced Tumor Necrosis Factor-$\alpha$ Production in Macrophages

  • Choi, Eun-Kyoung;Kim, Dae-Eob;Oh, Won-Mann;Paek, Yun-Woong;Kang, In-Chol
    • International Journal of Oral Biology
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    • 제35권2호
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    • pp.43-49
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    • 2010
  • Enterococcus faecalis, a gram-positive bacterium, has been implicated in endodontic infections, particularly in chronic apical periodontitis. Proinflammatory cytokines, including tumor necrosis factor-$\alpha$ (TNF-$\alpha$), are involved in the pathogenesis of these apical lesions. E. faecalis has been reported to stimulate macrophages to produce TNF-$\alpha$. The present study investigated the mechanisms involved in TNF-$\alpha$ production by a murine macrophage cell line, RAW 264.7 in response to exposure to E. faecalis. Both live and heat-killed E. faecalis induced high levels of gene expression and protein release of TNF-$\alpha$. Treatment of RAW 264.7 cells with cytochalasin D, an inhibitor of endocytosis, prevented the mRNA up-regulation of TNF-$\alpha$ by E. faecalis. In addition, antioxidant treatment reduced TNF-$\alpha$ production to baseline levels. Inhibition of extracellular signal-regulated kinase (ERK) and p38 mitogen-activated protein (MAP) kinase also significantly attenuated E. faecalis-induced TNF-$\alpha$ expression by RAW 264.7 cells. Furthermore, activation of NF-${\kappa}B$ and AP-1 in RAW 264.7 cells was also stimulated by E. faecalis. These results suggest that the phagocytic uptake of bacteria is necessary for the induction of TNF-$\alpha$ in E. faecalis-stimulated macrophages, and that the underlying intracellular signaling pathways involve reactive oxygen species, ERK, p38 MAP kinase, NF-${\kappa}B$, and AP-1.

리포솜 봉입이 로다민 123의 소장 흡수에 미치는 영향 (Effect of Liposome Encapsulation on Intestinal Absorption of Rhodamine 123)

  • 홍순선;이해리;이홍;정석재;김대덕;심창구
    • 약학회지
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    • 제49권2호
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    • pp.185-191
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    • 2005
  • The absorption of a P-gp substrate, rhodamine 123, from a liposomal dosage form was investigated across Caco-2 cell monolayers, rat intestines and rat intestinal Peyer's patches in Ussing chamber, Rhodamine 123 was incorporated into liposomes according to the standard evaporation method, which led to a production of liposomes with a mean diameter of 71.3 nm. The permeability (Papp of rhodamine 123 from a water solution across the monolayer was $2.45{\times}10^{-6}$ cm/s for $A{\leftrightarrow}B$ (apical to basal) and $14.0{\times}10^{-6}$ cm/s for $B{\leftrightarrow}A$ (basal to apical) directions, consistent with the fact that rhodamine 123 is one of the P-gp substrates. The transport of rhodamine 123 from the liposomal dosage form was much lower for both directions compared to the solution of rhodamine 123. The transport of rhodamine 123 across the rat intestine was also significantly decreased for both directions, I.e., influx and efflux, by the liposomal incorporation of the compound. The transport of rhodamine 123 across the Peyer's patch was substantially reduced by liposomal incorporation. No difference was found in the transport between the Peyer's patch and non-Peyer's patch. These observations suggest that the contribution of transport via Peyer's patches in the uptake of liposomes may be minimal, especially for rapidly absorbed compounds like rhodamine 123. Therefore, the increased absorption of P-gp substrates does not appear to be feasible by incorporating the compounds in liposomes, due to negligible involvement of Peyer's patches in the uptake of particulate dosage forms like liposomes. Liposomes may rather represent a sustained release dosage form of incorporated compounds.

배지의 철이온과 pH 변화에 대한 인삼모상근의 생리적 반응 (Physiological Responses of Hairy Roots of Ginseng (Panax ginseng C.A. Meyer) to Iron Status and pH Change)

  • 양덕조;윤길영;김용해;양덕춘
    • 식물조직배양학회지
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    • 제27권1호
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    • pp.31-37
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    • 2000
  • 인삼 (Panax ginseng C.A. Meyer)의 뿌리로부터 유도한 모상근의 proton 방출은 철이온의 결핍 또는 nitrate나 ammonium이온에 의해 증가되었다. 철이온 결핍에 의한 수소이온 방출의 증가는 정단 조직에서 나타나는 반면에 nitrate와 ammonium 이온에 의한 수소이온 방출은 기저부위에서 높게 나타났다. 배지의 pH변화에 따른 무기이온의 흡수는 무기이온의 종류에 따라 다양한 양상을 나타냈다. $Ca^{2+}$, $Mg^{2+}$ 그리고 Fe$^{2+}$ 는 pH 4.8 에서 가장 높은 흡수를 나타냈으며, Mn$^{2+}$, $Zn^{2+}$ 그리고 Cu$^{2+}$ 는 pH 3.8에서 가장 높았다. HPLC를 이용한 유리당 및 ginsenoside분석에서, 인삼모상근 유리당 구성의 주성분은 sucrose, glucose 그리고 fructose 였으며, glucose와 fructose는 pH 6.8에서 sucrose는 pH 4.8 에서 함량이 가장 높았다. 반면에 ginsenosides와 phenolic compound의 함량은 MS 배지의 표준인 pH 5.8 에서 가장 높았다. pH 변화에 대한 인삼모상근의 이러한 생리적 반응은 인삼근의 적변유발과 관련된 무기이온의 mobilization 및 흡수기작의 구명을 위한 모델 시스템으로 이용할 수 있는 가능성을 제시하였다.

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Expression of Folate Receptor Protein in CHO Cell Line

  • Kim, Chong-Ho;Park, Seung-Taeck
    • 대한의생명과학회지
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    • 제14권4호
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    • pp.203-210
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    • 2008
  • One of cell surface receptor proteins, human folate receptor (hFR) involves in the uptake of folates through cell membrane into cytoplasm, and is anchored to the plasma membrane by a fatty acid linkage, which has been identified in some cells as a glycosylphosphatidylinositol (GPI)-tailed protein with a molecular mass of about 40 kDa. The hFR is released by phosphatidylinositol phospholipase C (PI-PLC) because it contains fatty acids and inositol on the GPI tail. Caveolin decorates the cytoplasmic surface of caveolae and has been proposed to have a structural role in maintaining caveolae. It is unknown whether caveolin is involved in targeting, and is necessary for the function of GPI-tailed proteins. To compare the ability of folic acid binding, internalization and expression of hFR, and the effect of caveolin at the both apical and basolateral side of cell surfaces in Chinese hamster ovary (CHO) clone cells overexpressed the hFR and/or caveolin. Our present results suggest a possibility that the overexpression of caveolin does not be involved in expression of hFR, but plays a role as a factor in PI-PLC releasing kinetics, and for a regulation of formation, processing and function of hFR in CHO clone cells overexpressed cavcolin.

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흰쥐에서 Divalent Metal Transporter 1의 조직내 분포와 Iron에 의한 조절 (Tissue Distribution of Divalent Metal Transporter 1 and Regulation by Dietary Iron in Rats)

  • 최재혁;박정덕
    • Environmental Analysis Health and Toxicology
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    • 제19권4호
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    • pp.359-366
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    • 2004
  • Iron (Fe) is an essential metal in biological processes, which maintains a homeostasis in the human body. Divalent metal transporter 1 (DMT1) has been known as an iron transporting membrane protein, which is involved in the uptake Fe at the apical portion of intestinal epithelium, and may transport Fe across the membrane of acidified endosome in peripheral tissues. In this study, we studied the tissue distribution of DMT1 in the Fe supplemented (FeS) diet fed rats, and the regulation of DMT1 expression by depleting body Fe. Sprague-Dawley rats were divided into two groups, and fed FeS (120 mg Fe/kg) diet or Fe deficient (FeD, 2∼6 mg Fe/kg) diet for 4 weeks. The evaluation of body Fe status was monitored by measuring sFe, UIBC and tissue Fe concentration. Additionally, DMT1 mRNA levels were analyzed in the peripheral tissues by using the quantitative real time RT-PCR method. In the FeS diet fed rats, the tissue Fe was maintained at a relatively high level, and DMT1 was eventually expressed in all tissues studied. DMT1 was highly expressed in the testis, kidney and spleen, while a moderate levels of DMT1 expression was detected in the brain, liver and heart. In the digestive system, the highest level of DMT1 was found in the duodenum. Feeding the FeD diet caused a reduced body weight gain and depletion of body Fe with finding of decreased sFe, increased UIBC and decreased tissue Fe concentration. The depletion of body Fe upregulated DMT1 expression in the peripheral tissue. The expression of DMT1 was very sensitive to the body Fe depletion in the small intestine, especially in the duodenum, showing dramatically higher levels in the FeD rats than those of the FeS group. In the FeD diet fed animals, the expression of DMT1 was low significantly in other tissues compared with the duodenum. The expression of DMT1, however, was 60∼120% higher in the testis, kidney and spleen, and 30∼50% higher in the lung, liver and heart, compared to the FeS diet fed rats. In summary, DMT1 expression was ubiquitous in mammalian tissue, and the level of expression was the organ-dependent. The expression of DMT1 in peripheral tissues was upregulated by depletion of body Fe. Duodenum was the most sensitive tissue among organs studied during Fe depletion, and expressed the greatest level of DMT1, while other tissues were less higher than in duodenum. This study supports that DMT1 plays a role in maintaining the body Fe level through intestinal uptake as well as homeostasis of Fe in the peripheral tissue.

심근관류 SPECT와 64채널 전산화 단층혈관 촬영 사진 융합으로 증명된 radius intermedius 협착에 의한 심근관류 저하 (Radius Intermedius Stenosis Induced Myocardial Perfusion Defect: Provened by the Fusion Images of Myocardial Perfusion SPECT and 64 Channel CTA)

  • 공은정;조인호;천경아;원규장;이형우;박종선
    • Nuclear Medicine and Molecular Imaging
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    • 제42권1호
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    • pp.77-78
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    • 2008
  • A 71-year-old woman was assigned to our department for Tc-99m myocardial perfusion SPECT(MPS) and coronary CT angiography. She admitted for substernal pain, via the ER, 2 days ago. The heart was scanned after intravenous injection of 925 MBq of $^{99m}Tc$-sestamibi adenosine-induced stress SPECT using dual head gamma camera (Hawkeye, GE healthcare. USA). The MPS shows decreased tracer uptake in the apical & mid area of anterior & lateral wall and mid & basal inferior wall. Coronary CT angiograph was obtained using Discovery VCT (GE healthcare). 3D angiography portrayed significant stenosis of ramus intermedius(RI) and posterolateral branch of right coronary artery(PLB) with fibrocalcified plaque. Two images were fused using Cardiac IQ fusion softwear package (Advantage workstation 4.4, GE healthcare) The fusion images explain the perfusion defect of anterior, lateral and inferior wall is due to stenosis of the RI and PLB. And 3 days later, coronary angiography was done and revealed the marked stenosis of RI and PLB. Then balloon angioplasty and stent was instituted in RI. Cardiac SPECT/CT fusion imaging provides additional information about hemodynamic relevance and facilitates lesion interpretation by allowing exact allocation of perfusion defects to its subtending coronary artery.