• Title/Summary/Keyword: Outer membrane

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The Biocidal Activity of Nano-sized Silver Particles Comparing with Silver Ion (은 이온과의 비교를 통한 나노 은 입자의 항균 특성 연구)

  • Kim, Jee-Yeon;Kim, Sung-Eun;Kim, Jae-Eun;Lee, Jong-Chan;Yoon, Je-Yong
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.7
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    • pp.771-776
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    • 2005
  • In recent days, there is much interest in the biocidal activity of silver since silver is known to be safe and effective as disinfectant and biocidal material against coliforms and viruses. In particular, nano silted silver particles which can be used as effective biocidal material received more attention. Accordingly, it is important to investigate antimicrobial activity and mechanism of nano sized silver particles prepared in a cost-effective manner. In this study, nano sized silver particles were prepared via photoreduction of a silver salt ($AgNO_3$) in the bulk phase of $PEO_{20}-PPO_{70}-PEO_{20}$ (Pluronic 123) block copolymer The antimicrobial efficacy of silver nano particles against E. coli was investigated and compared with that of silver ion as the concentration of silver nano particles, pH ($5.6{\sim}8.2$), temperature ($4^{\circ}C{\sim}35^{\circ}C$) varied in aqueous system. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) was used to examine the nature of damaged microorganism with nano sized silver particles and silver ion. This study showed that antimicrobial efficacy of silver nano particles was approximately one twentieth than that of silver ion. It was more biocidal at higher pH in contrast with silver ion. In addition, nano silver particles was demonstrated to disrupt the outer membrane of E. coli, subsequently causing their aggregation. On the other hand, silver ion diffused into the cell damaging the cytoplasmic membrane without disrupting the outer membrane of E. coli.

Two Case Studies of the Use of Oreong-san for a Chronic Subdural Hematoma (만성 경막하 혈종(Chronic subdural hematoma, CSDH)에 대한 오령산 증례보고 2례)

  • Jeong, Yun-kyeong;Kim, Su-bin;Yang, Jung-yun;Moon, Sang-kwan;Jung, Woo-sang;Kwon, Seung-won;Cho, Ki-ho
    • The Journal of Internal Korean Medicine
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    • v.38 no.2
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    • pp.259-263
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    • 2017
  • We describe the cases of two patients with chronic subdural hematomas who were treated with Oreong-san. The patients' symptoms improved, as verified by brain computed tomography imaging. Oreong-san may control membrane permeability by inhibiting the aquaporin channel of the outer membrane of a hematoma. We speculate that hydrostatic modulation is a key mechanism underlying the effectiveness of Oreong-san in the treatment of subdural hematomas.

Toxoplasmosis in piglets (자돈의 톡소플라즈마증 발생)

  • Roh, In-soon;Han, Jeong-hee;Kim, Jae-hoon;Ahn, Byeong-woo
    • Korean Journal of Veterinary Research
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    • v.37 no.4
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    • pp.817-823
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    • 1997
  • Suckling piglets and weaned pigs showed anorexia, dehydration, severe abdominal breathing, emaciation and paresis from Oct. 1993. to Nov. 1993. Five 2-week-old piglets were submitted for diagnosis in Kangwon National University. At necropsy, the pin-point well demarcated yellowish white foci were scattered on the surface of the lung, heart, liver, spleen and kidney. Histologically, multifocal areas of necrosis with mononuclear cells infiltration were found in the lung, heart, liver, lymph node, spleen, kidney and small intestine. These lesions tended to be associated with blood vessels. Variable round to ovoid tachyzoites were located at the periphery of the lesions. The organisms were demonstrated as Toxoplasma gondii by immunohistochemical staining method. Ultrastructurally, this parasite was surrounded with parasitophorous vacuole in alveolar macrophage. The parasite was crescent-shaped and $6{\sim}8{\times}1{\sim}2{\mu}m$ in size. It was enclosed by an thick outer membrane and an underlying thin inner membrane. Several club-shaped paired organelles and conoids lay in the cytoplasm at the anterior. Numerous round body and one to several mitochondria were presented in the cytoplasm. Based on the gross findings, histopathology, immunohistochemical and electron microscopic findings, this case was diagnosed as toxoplasmosis in piglets.

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Structure-antibiotic Acitivity Relationships of Brevinin-1 and Thanatin Containing Rana Box (Rana box를 포함한 Brevinin-1 및 Thanatin의 구조-상생활성 상관관계)

  • 신송엽;강주현;이동건;장소윤;서무열;함경수
    • Microbiology and Biotechnology Letters
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    • v.27 no.6
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    • pp.440-445
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    • 1999
  • In order to investigate structure-antibiotic activity relationships of brevinin-1 and thanatin containing Rana box composed of basic loop formed by disulfide bridge in their arboxy terminus, thanatin, brevinin 1 and their analogues (T-B1, T-B2 and B-T) in which their Rana box sequence exchanged was designed and synthesized by the solid phase method using Fmoc-chemistry. The basic sequence of Rana box of thanatin had more significant effect on both antibacterial and antifungal activity than that of brevinin 1. The tail sequence (QRM) of thanatin was found to be important in its antibacterial and antifungal activity. Rana box sequence of brevinin-1 did not have a significant effect on its antitumor and phospholipid vesicle-aggregating activities. Brevinin-1 showed stronger $\alpha$-helical structure in the membrane-mimicking environment such as SDS micelle than thanatin. A remarkable increase in a-helicity of bervinin-1 plays more important role in antibiotic activity than that of thanatin. Furthermore, antibacterial activity of thanatin against E. coli resulted from the disruptive effect against the outer cell membrane of E. coli.

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A Study on the Removal of Phenol by Hybrid Process coupling adsorption with microfiltration (흡착과 정밀여과의 혼성공정에 의한 페놀 제거에 관한 연구)

  • ;;Fane, A. G.
    • Membrane Journal
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    • v.6 no.2
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    • pp.109-116
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    • 1996
  • This work is a fundamental study for applying hybrid process coupling adsorption with microfiltration to waste-water treatment. Phenol was separated by adsorption on powdered activated carbon, adsorbed phenol with activated carbon was separated by microfiltration. As the particle size in suspension increased, filtration resistance decreased, and effect of particle concentration on resistance was less pronounced. The rate of uptake was greatly dependent on the degree of phenol loading. For a smaller amounts of activated carbon, the change of permeate concentration before break point and phenol loading with time were steeper than in the case of large amounts. Permeate concentration before break point decreased with decreasing particle size, this could be due to the increase of outer surface of particle and film mass transfer coefficient.

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Prevalence of Lymphocyte Nuclear Pockets in Holstein-Friesian Dairy Cattle Infected with Bovine Leukemia Virus in Korea

  • Yoon, Soon-Seek;Park, J.W.;Jean, Y.H.;Kim, H.J.;Han, B.;Han, H.R.
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.6
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    • pp.879-883
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    • 2005
  • The integral relationship between the occurrence of lymphocyte nuclear pockets (LNPs) and BLV-infection was examined in Holstein-Friesian dairy cattle in Korea. Transmission electron microscope (TEM) was used to detect LNP in peripheral blood lymphocytes. Morphologically, the membranes of LNP were composed of two layers of double nuclear membrane. The full thickness of LNP membranes including inner and outer nuclear membrane was 60 to 70 nm. LNP prevalence was different according to the bovine leukemia virus (BLV) infection status; in BLV-seropositive cattle, LNP prevalence was 48.4% and in BLV-seronegative cattle prevalence was 5.9%. Moreover, even in seropositive animals, leukemic group was the highest at 70% positive among the groups, followed by suspect group (42.4%) and aleukemic group (23.1%). Consequently, the numbers of LNP were increased in proportion to increase of the numbers of leukocytes among BLV-seropositive cattle. The numbers of LNP per lymphocyte were increased in BLVseropositive cattle compared with seronegative cattle. The mean numbers of LNP per 100-lymphocytes were 0.35, 0.77, 1.64 and 4.7 in BLV-seronegative, BLV-seropositive aleukemic, suspect and leukemic groups, respectively. Thus, it is reasonable that LNP test can be used as the one of the diagnostic criteria of BLV infection.

Optimal Design of a MEMS-type Piezoelectric Microphone (MEMS 구조 압전 마이크로폰의 최적구조 설계)

  • Kwon, Min-Hyeong;Ra, Yong-Ho;Jeon, Dae-Woo;Lee, Young-Jin
    • Journal of Sensor Science and Technology
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    • v.27 no.4
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    • pp.269-274
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    • 2018
  • High-sensitivity signal-to-noise ratio (SNR) microphones are essentially required for a broad range of automatic speech recognition applications. Piezoelectric microphones have several advantages compared to conventional capacitor microphones including high stiffness and high SNR. In this study, we designed a new piezoelectric membrane structure by using the finite elements method (FEM) and an optimization technique to improve the sensitivity of the transducer, which has a high-quality AlN piezoelectric thin film. The simulation demonstrated that the sensitivity critically depends on the inner radius of the top electrode, the outer radius of the membrane, and the thickness of the piezoelectric film in the microphone. The optimized piezoelectric transducer structure showed a much higher sensitivity than that of the conventional piezoelectric transducer structure. This study provides a visible path to realize micro-scale high-sensitivity piezoelectric microphones that have a simple manufacturing process, wide range of frequency and low DC bias voltage.

Molecular Mechanism of Copper Resistance in Pseudomonas syringae pv. tomato.

  • Cha, Jae-Soon;Donald A. Cooksey
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 1995.06b
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    • pp.97-117
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    • 1995
  • Copper resistance in Pseudomonas syringae pv. tomato is determined by copper-resistance operon (cop) on a highly conserved 35 kilobase plasmid. Copper-resistant strains of Pseudomonas syringae containing the cop operon accumulate copper and develop blue clonies on copper-containing media. The protein products of the copper-resistance operon were characterized to provide an understanding of the copper-resistance mechanism and its relationship to copper accumulation. The Cop proteins CopA (72 kDa), CopB (39 kDa), and CopC (12 kDa) were produced only under copper induction. CopA and CopC were periplasmic proteins and CopB was an outer membrane protein. Leader peptide sequences of CopA, CopB, and CopC were confirmed by amino-terminal peptide sequencing. CopA, CopB, and CopC were purified from strain PT23.2, and their copper contents were determined. One molecule of CopA bound 10.9${\pm}$1.2 atoms of copper and one molecule of CopC bound 0.6${\pm}$0.1 atom of copper. P. syringae cells containing copCD or copBCD cloned behind the lac promoter were hypersensitive to copper. The CopD (32 kDa), a probable inner membrane protein, function in copper uptake with CopC. The Cop proteins apparently mediate sequestration of copper outside of the cytoplasm as a copper-resistance mechanism.

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Fabrication and application of post surgical anti-adhesion barrier using bio-compatible materials (생체 적합성 재료를 이용한 수술후 유착 방지막의 제작과 응용)

  • Park S.H.;Kim H.C.;Yang D.Y.;Kim T.K.;Park T.K.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2006.05a
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    • pp.203-204
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    • 2006
  • Studies on some biodegradable polymers and other materials such as hydrogels have shown the promising potential for a variety of surgical applications. Postoperative adhesion caused by the natural consequence of surgical wound healing results in problems of the repeated surgery. Recently, scientists have developed absorbable anti-adhesion barriers that can protect a tissue from adhesion in case they are in use; however, they are dissolved when no longer needed. Although these approaches have been attempted to fulfill the criteria for adhesion prevention, none can perfectly prevent adhesions in all situations. Overall of this work, a new method to fabricate an anti-adhesion membrane using biodegradable polymer and hydrogel has been developed. The ideal barrier for preventing postoperative adhesion would have the following properties; it should be (i) resorbable (ii) non-reactive (iii) easy to apply (iv) capable of being fixed in position. In order to fulfill these properties, we adopted solid freeform fabrication method combined with surface modification which includes the hydrogel coating, therefore, inner or outer structure can be controlled and the property of anti adhesion can be improved.

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Mechanisms of Glucose Uptake in Cancer Tissue (악성종양의 포도당 섭취 기전)

  • Chung, June-Key
    • The Korean Journal of Nuclear Medicine
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    • v.33 no.1
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    • pp.1-10
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    • 1999
  • Cancer cells are known to show increased rates of glycolysis metabolism. Based on this, PET studies using F-18-fluorodeoxyglucose have been used for the detection of primary and metastatic tumors. To account for this increased glucose uptake, a variety of mechanisms has been proposed. Glucose influx across the cell membrane is mediated by a family of structurally related proteins known as glucose transporters (Gluts). Among 6 isoforms of Gluts, Glut-1 and/or Glut-3 have been reported to show increased expression in various tumors. Increased level of Glut mRNA transcription is supposed to be the basic mechanism of Glut overexpression at the protein level. Some oncogens such as src or ras intensely stimulate Glut-1 by means of increased Glut-1 mRNA levels. Hexokinase activity is another important factor in glucose uptake in cancer cells. Especially hexokinase type II is considered to be involved in glycolysis of cancer cells. Much of the hexokinase of tumor cells is bound to outer membrane of mitochondria by the porin, a hexokinase receptor. Through this interaction, hexokinase may gain preferred access to ATP synthesized via oxidative phosphorylation in the inner mitochondria compartment. Other biologic factors such as tumor blood flow, blood volume, hypoxia, and infiltrating cells in tumor tissue are involved. Relative hypoxia may activate the anaerobic glycotytic pathway. Surrounding macrophages and newly formed granulation tissue in tumor showed greater glucose uptake than did viable cancer cells. To expand the application of FDG PET in oncology, it is important for nuclear medicine physicians to understand the related mechanisms of glucose uptake in cancer tissue.

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