• Title/Summary/Keyword: degradation agent

검색결과 347건 처리시간 0.02초

Effect of quercetin on the production of nitric oxide in murine macrophages stimulated with lipopolysaccharide from Prevotella intermedia

  • Cho, Yun-Jung;Kim, Sung-Jo
    • Journal of Periodontal and Implant Science
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    • 제43권4호
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    • pp.191-197
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    • 2013
  • Purpose: Nitric oxide (NO) is a short-lived bioactive molecule that is known to play an important role in the pathogenesis of periodontal disease. In the current study, we investigated the effect of the flavonoid quercetin on the production of NO in murine macrophages activated with lipopolysaccharide (LPS) from Prevotella intermedia, a pathogen related to inflammatory periodontal disease, and tried to elucidate the underlying mechanisms of action. Methods: LPS was isolated from P. intermedia ATCC 25611 cells by the standard hot phenol-water method. The concentration of NO in cell culture supernatants was determined by measuring the accumulation of nitrite. Inducible NO synthase (iNOS) and heme oxygenase-1 (HO-1) protein expression, phosphorylation of c-Jun N-terminal kinase (JNK) and p38, inhibitory ${\kappa}B$ $(I{\kappa}B)-{\alpha}$ degradation, and signal transducer and activator of transcription 1 (STAT1) phosphorylation were analyzed via immunoblotting. Results: Quercetin significantly attenuated iNOS-derived NO production in RAW246.7 cells activated by P. intermedia LPS. In addition, quercetin induced HO-1 protein expression in cells activated with P. intermedia LPS. Tin protoporphyrin IX (SnPP), a competitive inhibitor of HO-1, abolished the inhibitory effect of quercetin on LPS-induced NO production. Quercetin did not affect the phosphorylation of JNK and p38 induced by P. intermedia LPS. The degradation of $I{\kappa}B-{\alpha}$ induced by P. intermedia LPS was inhibited when the cells were treated with quercetin. Quercetin also inhibited LPS-induced STAT1 signaling. Conclusions: Quercetin significantly inhibits iNOS-derived NO production in murine macrophages activated by P. intermedia LPS via anti-inflammatory HO-1 induction and inhibition of the nuclear factor-${\kappa}B$ and STAT1 signaling pathways. Our study suggests that quercetin may contribute to the modulation of host-destructive responses mediated by NO and appears to have potential as a novel therapeutic agent for treating inflammatory periodontal disease.

침전법으로 제조한 $Al_2O_3$-$ZrO_2$계 세라믹스의 열충격 거동 (Thermal Shock Behavior of $Al_2O_3$-$ZrO_2$ Ceramics Prepared by a Precipitation Method)

  • 홍기곤;이홍림
    • 한국세라믹학회지
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    • 제28권1호
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    • pp.11-18
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    • 1991
  • A precipitation method, one of the most effective liquid phase reaction methods, was adopted in order to prepare high-tech Al2O3/ZrO2 composite ceramics, and the effects of stress-induced phase transformation of ZrO2 on thermal shock behavior of Al2O3-ZrO2 ceramics were investigated. Al2(SO4)3.18H2O, ZrOCl2.8H2O and YCl3.6H2O were used as starting materials and NH4OH as a precipitation agent. Metal hydroxides were obtained by single precipitation(process A) and co-precipitation(process B) method at the condition of pH=7, and the composition of Al2O3-ZrO2 composites was fixed as Al2O3-15v/o ZrO2(+3m/o Y2O3). Critical temperature difference showing rapid strength degradation by thermal shock showed higher value in Al2O3/ZrO2 composites(process A : 20$0^{\circ}C$, process B : 215$^{\circ}C$) than in Al2O3(175$^{\circ}C$). The improvement of thermal shock property for Al2O3/ZrO2 composites was mainly due to the increase of strength at room temperature by adding ZrO2. The strength degradation was more severe for the sample with higher strength at room temperature. Crack initiation energies by thermal shock showed higher values in Al2O3/ZrO2 composites than in Al2O3 ceramics due to increase of fracture toughness by ZrO2.

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Kinetic study for the optimization of ginsenoside Rg3 production by heat treatment of ginsenoside Rb1

  • Vo, Hoang Tung;Cho, Jae Youl;Choi, Yong-Eui;Choi, Yong-Soon;Jeong, Yeon-Ho
    • Journal of Ginseng Research
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    • 제39권4호
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    • pp.304-313
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    • 2015
  • Background: Ginsenoside Rg3 is a promising anticancer agent. It is usually produced by heat treatment of ginseng, in which ginsenoside Rb1 is the major ginsenoside. A kinetic study was conducted to optimize ginsenoside Rg3 production by the heat treatment of ginsenoside Rb1. Methods: Ginsenoside Rb1 was heated using an isothermal machine at $80^{\circ}C$ and $100^{\circ}C$ and analyzed using HPLC. The kinetic parameters were calculated from the experimental results. The activation energy was estimated and used to simulate the process. The optimized parameters of ginsenoside Rg3 production are suggested based on the simulation. Results: The rate constants were $0.013h^{-1}$ and $0.073h^{-1}$ for the degradation of ginsenosides Rb1 and Rg3 at $80^{\circ}C$, respectively. The corresponding rate constants at $100^{\circ}C$ were $0.045h^{-1}$ and $0.155h^{-1}$. The estimated activation energies of degradation of ginsenosides Rb1 and Rg3 were 69.2 kJ/mol and 40.9 kJ/mol, respectively. The rate constants at different temperatures were evaluated using the estimated activation energies, and the kinetic profiles of ginsenosides Rb1 and Rg3 at each temperature were simulated based on the proposed kinetic model of consecutive reaction. The optimum strategies for producing ginsenoside Rg3 from ginsenoside Rb1 are suggested based on the simulation. With increased temperature, a high concentration of ginsenoside Rg3 is formed rapidly. However, the concentration decreases quickly after the reaching the maximal concentration value. Conclusion: The optimum temperature for producing ginsenoside Rg3 should be the highest temperature technically feasible below $180^{\circ}C$, in consideration of the cooling time. The optimum reaction time for heat treatment is 30 min.

활성화 부위의 황화기가 화학적으로 변형된 Myosin Heavy Chain의 Calpain에 의한 선택적 분해 (Myosin Heavy Chain Covalenily Modified at Its Reactive Site Sulfhydryl Residues is Preferentially Degraded by Calpain)

  • 곽규봉;정성수;이창호;하두봉;정진하
    • 한국동물학회지
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    • 제36권3호
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    • pp.347-352
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    • 1993
  • N-ethylmaleimide는 낮은 농도에서 Myosin heavy chain의 활성화 부위에 존재하는 2개의 황화기에 선택적으로 결합하는 것으로 알려져 있다. 계 근조직에서 분리된 $Ca^2$+-의존성 단백질 분해효소, Calpain은 이와같이 알킬화된 Myosin heavy chain을 알킬화 되지 않은 것에 비하여 우선적으로 분해하는 것으로 나타났다. 또한, 황화기를 특이하게 산하시키는 KMnO$_4$가 처리된 Myosin heavy chain도 산화되지 않은 것에 비하여 훨씬 빠른 속도로 분해됨을 관찰하였다. 뿐만아니라, N-ethylmaleimide나 KMnO$_4$의 처리는 농도-의존적으로 myosin에 의한 ATP 분해를 불활성화 시키었다. 이러한 결과는 활성화 부위에 존재하는 황화기의 화학적 변형은 Myosin hsavy chain이 Calapin과 같은 세포내 단백질 분해효소에 의하여 인식되는 기구임을 시사한다.

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생물정화용 제품의 유류분해능 비교 (Effects of Bioremediation Products on the Oil Degradability)

  • 김상진;신수경
    • 미생물학회지
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    • 제33권2호
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    • pp.157-162
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    • 1997
  • 최근 유류에 오염된 환경을 회복시키기 위하여 생물정화 방법이 널리 이용되고 있다. 따라서 유류오염 환경을 처리하기 위한 생물정화용 생물제제가 보편화되면서 외국으로부터 많은 제품이 국내로 유입되고 있다. 그러나 국내에는 이와 같은 제품의 규격기준이나 표준 실험방법이 체계화되어 있지 않고 또한 효용성에 대한 실제 실험결과가 없는 상태이다. 그러므로 본 실험에서는 일부 유류처리용 생물제제 5종을 대상으로 유류분해율에 대한 실험을 수행하였다. 실험결과 대부분의 제품들은 함유된 화학유분산제에 의해 유류분산능을 나타내었고 유류분해율은 매우 낮은 것으로 나타났다. 일부제품(D)의 경우에는 해수에 분포되어 있는 토착 유류분해세균의 유류분해도를 오히려 저해하는 결과를 나타내었다. 이와 같은 실험의 결과로 미루어 향후 생물정화용 제제의 규격기준 및 표준 실험방법을 국내에도 확립할 필요가 있고, 그러므로서 효율적인 생물정화 기술방법 사용이 활성화될 수 있을 것이다.

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Anti-Biofilm Activity of Grapefruit Seed Extract against Staphylococcus aureus and Escherichia coli

  • Song, Ye Ji;Yu, Hwan Hee;Kim, Yeon Jin;Lee, Na-Kyoung;Paik, Hyun-Dong
    • Journal of Microbiology and Biotechnology
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    • 제29권8호
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    • pp.1177-1183
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    • 2019
  • Grapefruit seed extract (GSE) is a safe and effective preservative that is used widely in the food industry. However, there are few studies addressing the anti-biofilm effect of GSE. In this study, the anti-biofilm effect of GSE was investigated against biofilm-forming strains of Staphylococcus aureus and Escherichia coli. The GSE minimum inhibitory concentration (MIC) for S. aureus and E. coli were $25{\mu}g/ml$ and $250{\mu}g/ml$, respectively. To investigate biofilm inhibition and degradation effect, crystal violet assay and stainless steel were used. Biofilm formation rates of four strains (S. aureus 7, S. aureus 8, E. coli ATCC 25922, and E. coli O157:H4 FRIK 125) were 55.8%, 70.2%, 55.4%, and 20.6% at $1/2{\times}MIC$ of GSE, respectively. The degradation effect of GSE on biofilms attached to stainless steel coupons was observed (${\geq}1$ log CFU/coupon) after exposure to concentrations above the MIC for all strains and $1/2{\times}MIC$ for S. aureus 7. In addition, the specific mechanisms of this anti-biofilm effect were investigated by evaluating hydrophobicity, auto-aggregation, exopolysaccharide (EPS) production rate, and motility. Significant changes in EPS production rate and motility were observed in both S. aureus and E. coli in the presence of GSE, while changes in hydrophobicity were observed only in E. coli. No relationship was seen between auto-aggregation and biofilm formation. Therefore, our results suggest that GSE might be used as an anti-biofilm agent that is effective against S. aureus and E. coli.

Decay of Populus cathay Treated with Paraffin Wax Emulsion and Copper Azole Compound

  • Liu, Jie;Liu, Min;Hou, Bingyi;Ma, Erni
    • Journal of the Korean Wood Science and Technology
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    • 제47권1호
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    • pp.21-32
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    • 2019
  • In order to investigate the decay process of wood treated with preservative, waterproofing agent and their compound systems, a full-cell process was applied to impregnate the sapwood of poplar (Populus cathay) at paraffin wax emulsion concentrations of 0.5% and 2.0%, Copper Azole (CA) concentrations of 0.3% and 0.5%, and their four compound systems, respectively. Leaching tests and laboratory decay resistance against the white-rot fungus Corious versicolor (L.) Murrill for treated wood were carried out according to the America Standard E11-06 and China Standard GB/T 13942.1-2009. At certain time intervals during the decay test, samples were characterized by Fourier transform infrared spectroscopy (FTIR) and X-ray diffraction technique (XRD) to investigate the time-dependent changes of chemical components and crystalline structure, thus clarifying the decay mechanisms. The results suggested that white-rot fungi degrade hemicellulose and lignin in the wood cell wall first, followed by a simultaneous degradation of polysaccharides and lignin. Besides, CA could not only slower the decomposition of both hemicellulose and lignin, but also reduce the degradation amount of hemicellulose. However, paraffin wax emulsion at high concentration had a negative effect on the impregnation of CA for the compound system treated wood.

Synergetic effect of soluble whey protein hydrolysate and Panax ginseng berry extract on muscle atrophy in hindlimb-immobilized C57BL/6 mice

  • Han, Min Ji;Shin, Ji Eun;Park, Seok Jun;Choung, Se-Young
    • Journal of Ginseng Research
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    • 제46권2호
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    • pp.283-289
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    • 2022
  • Background: Sarcopenia, defined as loss of muscle mass and strength with age, becomes a public health concern as the elderly population increases. This study aimed to determine whether the mixture of soluble whey protein hydrolysate (WPH) and Panax ginseng berry extract (GBE) has a synergetic effect on sarcopenia and, if so, to identify the relevant mechanisms and optimal mixing ratio. Methods: In the first experiment, C57BL/6 mice were hindlimb immobilized for one-week and then administered WPH 800 mg/kg, GBE 100 mg/kg, WPH 800 mg/kg+ GBE 100 mg/kg mixture, and Fructus Schisandrae extract (SFE) 200 mg/kg for two weeks. In the second experiment, experimental design was same, but mice were administered three different doses of WPH and GBE mixture (WPH 800 mg/kg+ GBE 100 mg/kg, WPH 800 mg/kg+ GBE 90 mg/kg, WPH 1000 mg/kg+ GBE 75 mg/kg). Results: In the first experiment, we confirmed the synergetic effect of WPH and GBE on muscle mass and identified that GBE was more effective on the protein synthesis side, and WPH tended to be slightly more effective for protein degradation. In the second experiment, among three different ratios, the WPH 800 mg/kg+ GBE 100 mg/kg was most effective for muscle mass and strength. The mixtures activated muscle protein synthesis via PI3K/Akt/mTORc1 pathway and inhibited muscle protein degradation via suppressing ubiquitin-proteasome system (UPS) and autophagy-lysosome system (ALS), and these effects were more GBE dose-dependent than WPH. Conclusion: The WPH and GBE mixture having a synergetic effect is a potential agent to prevent sarcopenia.

복합재료의 수분에 의한 열화 및 회복 메커니즘에 관한 연구 (A Study on Degradation and Recovery Mechanisms of Composites under the Moisture Environment)

  • 김윤해;김국진;한중원;조영대;배성열;문경만
    • Composites Research
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    • 제21권2호
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    • pp.8-14
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    • 2008
  • 섬유강화 복합재료는 수분에 의해 강도저하가 발생하며 이로 인하여 파괴가 발생하여 인적 물적 피해를 야기하고있다. 본 논문에서는 흡습에 의한 강도저하의 원인을 규명하고자 하였다. 먼저 수분이 복합재료에 흡수되는 메커니즘을 가정하였다. 흡수 메커니즘은 step 1, step 2, 그리고 step 3로 구분하였다. 이 메커니즘을 증명하기 위하여 강화섬유 및 수지의 종류, 수분이 흡수되는 시간 등의 조건을 다르게 하여 시험을 하였으며 그 결과 건조에 의해 인장강도가 회복되는 가역(reversible)반응과 건조로 인해 회복이 불가능한 비가역(irreversible)반응이 모두 작용함을 알 수 있었다. 강도저하는 흡습율 2.5% 에서 거의 완료되며, 흡습율이 4%에 이르면 비가역반응에 의한 강도저하가 많이 작용하여 강도회복이 적어지는 경향을 보였다.

Anti-inflammatory effects of polydeoxyribonucleotide and adipose tissue-derived mesenchymal stem cells in a canine cell model of osteoarthritis

  • Ju-Hui Seo;Woo Keyoung Kim;Kyu-Won Kang;Seoyun Lee;Byung-Jae Kang
    • Journal of Veterinary Science
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    • 제25권5호
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    • pp.68.1-68.13
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    • 2024
  • Importance: A relatively new therapeutic agent for osteoarthritis (OA), polydeoxyribonucleotide (PDRN), shows potential in treating human OA due to its regenerative and anti-inflammatory effects. However, studies on PDRN for canine OA are limited, and no study has investigated their use with mesenchymal stem cells (MSCs) conventionally used for OA treatment. Objective: This study aimed to evaluate the potential of PDRN and explore its combined effect with adipose tissue-derived MSCs (AdMSCs) in treating canine OA. Methods: To study the impact of PDRN, canine chondrocytes, synoviocytes, and AdMSCs were exposed to various PDRN concentrations, and viability was assessed using cell counting kit-8. The OA model was created by treating chondrocytes and synoviocytes with lipopolysaccharide, followed by treatment under three different conditions: PDRN alone, AdMSCs alone, and a combination of PDRN and AdMSCs. Using real-time quantitative polymerase chain reaction, the anti-inflammatory effects and mechanisms were investigated by quantitatively assessing pro-inflammatory cytokines, collagen degradation markers, adenosine A2a receptor (ADORA2A), and nuclear factor-kappa B. Results: PDRN alone and combined with AdMSCs significantly reduced the expression of pro-inflammatory cytokines and collagen degradation markers in an OA model. PDRN promoted AdMSC proliferation and upregulated ADORA2A expression. AdMSCs exhibited comprehensive anti-inflammatory effects through paracrine effects, and both substances reduced inflammatory gene expression through different mechanisms, potentially enhancing therapeutic effects. Conclusions and Relevance: The results indicate that PDRN is a safe and effective anti-inflammatory material that can be used independently or as an adjuvant for AdMSCs. Although additional research is necessary, this study is significant because it provides a foundation for future research at the cellular level.