• Title/Summary/Keyword: Matrix degradation

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Organic Thin-Film Transistor-driven Current Programming Pixel Circuit for Active-Matrix OLEDs (Organic TFT를 이용한 AM-OLED 구동용 Pixel 보상회로 설계에 관한 연구)

  • Shin, A-Ram;Yoon, Bong-No;Seo, Jun-Ho;Bae, Young-Seok;Sung, Man-Young
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.335-336
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    • 2007
  • A new current-programmed pixel circuit for activematrix organic light emitting diodes (AMOLEDs), based on Organic TFTs (OTFTs), is proposed and verified by SPICE simulations. The simulation results show that the proposed pixel circuit, which is a current mirror structure consisting of five Organic TFTs and one capacitor, has reliable linear characteristics between input current and output OLED current. Also, the threshold voltage degradation of Organic TFTs due to long time operation stress is well compensated to reliable values.

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Effect of pH and storage time on the elution of residual monomers from polymerized composites

  • Jeon, Cheol-Min;Kwon, Hyuk-Choon
    • Proceedings of the KACD Conference
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    • 2003.11a
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    • pp.561-562
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    • 2003
  • pH varies in the oral environment and on tooth surfaces. The surface of a plaque covered resinous restoration has a low pH. In human dental plaque a number of acids are produced by bacterial metabolism. The predominant acids are acetic, propionic and lactic acids. These acids induced a surface swelling of restorative resin. The swelling cause formation of pores inside the resin matrix from which organic substances can be released, resulting in a mass loss. The purpose of this study was to qualitatively and quantitatively analyse the leached monomers of dental composites after storage in acetate buffer solution as a function of time by means of high performance liquid chromatography(HPLC) / mass spectrometer and further determine whether pH and time has any influence on the degradation behavior of composite restoration.(omitted)

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Hydrophilic Albumin Microspheres as Cytarabine Carriers

  • Kim, Chong-Kook;Chung, Myung-Hoa;Oh, Yu-Kyoung;Lah, Woon-Lyong
    • Archives of Pharmacal Research
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    • v.16 no.2
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    • pp.123-128
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    • 1993
  • The surface of cyarabine-entrapped albumin microspheres, the surface modified albumin microspheres hsowed remakably incrased hydrophilicity, good dispersability in aqueous medium and reduced aggregation during storage which met the requirements of injectable drug carriers in acqueous vehicle. In vitro cytarabine release from hydrophilic albumin microspheres (HAM) was a function of the cytarabine to albumin ratio, whereas no significant difference in the releasing capacity was obnserved between surface modified HAM within the small size range$(2\;to\;5\mu{m)}$ studied. HAM containing 15-23% drug were gradually degraded by protease and continuously released up to 60% of the total entrapped cytarabine for 6h. These results thus suggest that HAM is a suitable cytarabine carrier which may be injected intraveneously with the benefits of a reduced risk of blood embolism induced by aggregates and prolonged cytarabine release.

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Nondestructive Evaluation for Long-term Heat Treatment Effects on Microstructure of Co-base Superalloy by Scanning Acoustic Microscope (주사음향현미경을 이용한 코발트기 초내열합금 미세조직에 관한 장시간 열영향에 대한 비파괴평가)

  • lEE, JoonHee;Kim, ChungSeok
    • Journal of the Korean Society for Heat Treatment
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    • v.32 no.3
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    • pp.118-123
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    • 2019
  • The aim of this study investigates the feasibility of scanning acoustic microscope (SAM) with high frequency transducer for material degradation. The test specimen was prepared by artificial heat treatment of Co-base superalloy. The high frequency 200 MHz acoustic lens was used to generate the leaky surface acoustic wave (LSAW) on the test specimens. The matrix precipitates coarsened with thermal aging time, and then grow up to several tens of micrometers. The velocity of LSAW decreased with increasing aging time. Also, it has a good correlation between LSAW and hardness. Consequently, V(z) curve methods of SAM using high frequency transducer is useful tool to evaluate the heat treatment effects on microstructure.

Systematic studies on the properties of poly(lactic acid) (PLA)/liquid polybutadiene rubber (LPB) reactive blends

  • Lim, Sung-Wook;Choi, Myeon-Cheon;Jeong, Jae-Hoon;Park, Eun-Young;Ha, Chang-Sik
    • Advances in materials Research
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    • v.7 no.2
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    • pp.149-162
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    • 2018
  • Following our previous work, we have conducted further systematic studies to investigate the effects of reactive blending on the thermal and mechanical properties of blends of poly(lactic acid) (PLA) and a liquid rubber, polybutadiene (LPB). The toughened PLAs were prepared by melt-blending the PLA with various contents (0-9 wt.%) of the LPB in the absence or presence of dicumyl peroxide (DCP), a radical initiator. It was found that the rubber domains were homogeneously dispersed at the nanoscale in the PLA matrix up to 9 wt.% of LPB thanks to the reactive blending in the presence of DCP. Owing to the compatibilization of PLA with LPB through reactive blending, the elongation and toughness of PLA was enhanced, while the hydrolytic degradation of PLA was reduced.

Overview of active packaging to maintain the quality of fresh food products - focusing on controlled release packaging (식품의 선도 유지를 위한 액티브 포장 연구 고찰 기능성 방출 조절 포장 중심)

  • Lee, Myung-Ho;Lee, Youn Suk
    • Food Science and Industry
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    • v.50 no.2
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    • pp.27-36
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    • 2017
  • Today, the food packaging industry has a great interest in using active packaging to fresh food product as a solution for the future to positively provide its quality, safety and shelf life. Many researches have extensively studied functional packaging strategies in recently years. Controlled release packaging (CRP) is an innovative packaging technology in the packaging polymer matrix from which can active agents are delivered in a controlled way into the product. CRP technology is well-suited for controlling release of antimicrobial compounds and antioxidants to prevent food degradation reactions such as microbial growth and lipid oxidation. Advances in CRP technology allow food packaging manufacturers to challenge the development of better functional food packaging systems. This overview examines the most recent developments and technologies of active packaging for applying the food industry. The scope of this article has mainly been focused on controlled releasing systems.

OST -5440, A Small Molecule Inhibitor of Human Cathepsin K, Inhibits Bone Resorption In Vivo as well as In Vitro

  • Kim, H.D.;Park, J.H.;Lee, S.S.;H, Son-M.;Y, Kwak-W.;S, Yang-J.;I, Lim-J;Kim, S.H.;Kim, W.B.
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.133.1-133.1
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    • 2003
  • Cathepsin K (CK) is a cysteine protease that plays a major and essential role in osteoclast-mediated degradation of collagen matrix of bone. Its tissue-limited distribution and pivotal contribution to bone resorption meet the requirements as the potential therapeutic target of the disease with excessive bone loss such as osteoporosis. In a search for potent CK inhibitors. we found OST-5440 that effectively inhibited bone resorption in vivo as well as in vitro. (omitted)

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Effects of Long-term Heat treatment on Mechanical Softening of Mn-Mo-Ni Low-Alloy Steel (Mn-Mo-Ni 저합금강의 기계적 연화에 미치는 장시간 열처리 영향)

  • Kim, Minsuk;Kim, Chungseok
    • Journal of the Korean Society for Heat Treatment
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    • v.34 no.6
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    • pp.294-301
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    • 2021
  • In the present study, we investigate the effects of long-term heat treatment at elevated temperatures on the mechanical softening of the Mn-Mo-Ni low-alloy steel. The influence of long-term heat treatment on microstructure and mechanical strength was evaluated. To simulate the long-term material degradation, heat treatment test was interrupted at several stages up to 10,000 hours in an electric furnace. The Mn-Mo-Ni low-alloy steel shows a typical bainitic phase, which consists of a well-developed lath substructure with fine precipitates along the lath boundaries. However, these fine precipitates were redissolved into the matrix with long-term heat treatment, and then the lath substructures were recovered. Consequently, ultimate tensile strength and yield strength decreased during long-term heat treatment showing a mechanical softening phenomenon.

Effects of Glucose Degradation Products on Human Peritoneal Mesothelial Cells (포도당분해산물이 사람 복막중피세포 활성화에 미치는 영향)

  • Song, Jae-Sook;Lee, Kyung-Lim;Ha, Hunjoo
    • Microbiology and Biotechnology Letters
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    • v.33 no.4
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    • pp.308-314
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    • 2005
  • Both high glucose and glucose degradation products (GDP) have been implicated in alterations of peritoneal membrane structure and function during long-term peritoneal dialysis (PD). The present study examined the role of GDP including methylglyoxal (MGO), acetaldehyde, and 3,4-dideoxyglucosone (3,4-DGE) in HPMC activation with respect to membrane hyperpermeability or fibrosis. The role of reactive oxygen species (ROS) and activation of protein kinase C (PKC) in GDP-induced HPMC activation were also examined. Using M199 culture medium as control, growth arrested and synchronized HPMC were continuously stimulated by MGO, acetaldehyde, and 3,4-DGE for 48 hours. Vascular endothelial growth factor (VEGF) was quantified as a marker of peritoneal membrane hyperpermeability and fibronectin and heat shock protein 47 (hsp47) as markers of fibrosis. Involvement of ROS and PKC was examined by the inhibitory effect of N-acetylcystein (NAC) or calphostin C, respectively. MGO significantly increased VEGF (1.9-fold), fibronectin (1.5-fold), and hsp47 (1.3-fold) secretion compared with control M199. NAC and calphostin C effectively inhibited MGO-induced VEGF upregulation. Acetaldehyde stimulated and 3,4-DGE inhibited VEGF secretion. Fibronectin secretion and hsp47 expression in HPMC were not affected by acetaldehyde or 3,4-DGE In conclusion, MGO upregulated VEGF and fibronectin secretion and hsp47 expression in HPMC, and PKC as well as ROS mediate MGO-induced VEGF secretion by HPMC. This implies that PKC activation and ROS generation by GDP may constitute important signals for activation of HPMC leading to progressive membrane hyperpermeability and accumulation of extracellular matrix and eventual peritoneal fibrosis.

Interfacial Adhesion Properties of Oxygen Plasma Treated Polyketone Fiber with Natural Rubber (폴리케톤 섬유의 산소 플라즈마 처리에 따른 천연고무와의 계면접착 특성)

  • Won, Jong Sung;Choi, Hae Young;Yoo, Jae Jung;Choi, Han Na;Yong, Da Kyung;Lee, Seung Goo
    • Journal of Adhesion and Interface
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    • v.13 no.1
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    • pp.45-50
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    • 2012
  • Recently developed polyketone fiber has various applications in the mechanical rubber goods as reinforcement because of its good mechanical properties. However, its surface is not suitable for good adhesion with the rubber matrix. Thus, a surface modification is essential to obtain the good interfacial adhesion. Plasma treatment, in this study, has been conducted to modify the surface of the polyketone fiber. The morphological changes of the fibers by oxygen plasma treatment were observed by using SEM and AFM. The chemical composition changes of PK fiber surface treated with oxygen plasma were investigated using an XPS (X-ray photoelectron spectroscopy). Finally, the effect of these changes on the interfacial adhesion between fiber and rubber was analyzed by using a microdroplet debonding test. By the plasma treatment, oxygen moieties on the fiber surface increased with processing time and power. The surface RMS roughness increases until the proper processing condition, but a long plasma processing time resulted in a rather reduced roughness because of surface degradation. When the treatment time and power were 60 s and 80 W, respectively, the highest interfacial shear strength (IFSS) was obtained between the PK fiber and natural rubber. However, as the treatment time and power were higher than 60 s and 80 W, respectively, the IFSS decreased because of degradation of the PK fiber surface by severe plasma treatment.