• 제목/요약/키워드: Effect mechanism

검색결과 7,725건 처리시간 0.032초

The Inhibitory Mechanism of Gentamicin on Electrical Field Stimulation Response in Rat Bladder Smooth Muscle

  • Min, Chang Ho;Wang, YiYi;Bae, Jinhyung;Han, Jung Hoon;Sohn, Uy Dong
    • The Korean Journal of Physiology and Pharmacology
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    • 제19권5호
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    • pp.473-478
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    • 2015
  • To see the inhibitory mechanism of gentamicin in response to electrical field stimulation (EFS) using the rat bladder smooth muscle, atropine or guanethidine was treated but had no effect. Methylsergide, a non-selective 5-$HT_1$, 5-$HT_2$ receptor antagonist was also treated but had on effect. Kinase inhibitors, such as chelerythrine (PKC inhibitor), ML-9 (MLCK inhibitor), or Y27632 (rho kinase inhibitor) were pretreated before gentamicin treatment, but did not have effect. For U73122, a phospholipase C (PLC) inhibitor however, the inhibitory effect to gentamicin was significantly attenuated in all frequencies given by the EFS. Therefore gentamicin induced inhibitory effect on EFS response in rat bladder smooth muscle was not mediated by the activation of adrenergic, cholinergic, or serotonergic receptor. The inhibition of gentamicin might be mediated through the PLC dependent pathway, but not through the PKC, MLCK or rho kinase dependent pathway.

Role of Quantum Confinement Effect on Tunneling Operation of LTFET Devices

  • Najam, Faraz;Yu, Yun Seop
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2017년도 추계학술대회
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    • pp.241-242
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    • 2017
  • Part of the channel in L-shaped tunnel field-effect transistor (LTFET) is very thin and suffers from quantum confinement effect. Role of quantum confinement effect on band-to-band-tunneling (BTBT) of LTFET was investigated using numerical simulation and band diagram analysis. It was found that quantum confinement effect significantly affects the BTBT mechanism of LTFET devices.

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A Kinetic Study on Aminolysis of Benzyl 2-Pyridyl Thionocarbonate and t-Butyl 2-Pyridyl Thionocarbonate: Effects of Polarizability and Steric Hindrance on Reactivity and Reaction Mechanism

  • Kim, Min-Young;Bae, Ae Ri;Um, Ik-Hwan
    • Bulletin of the Korean Chemical Society
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    • 제34권8호
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    • pp.2325-2329
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    • 2013
  • Second-order rate constants $k_N$ have been measured for reactions of benzyl 2-pyridyl thionocarbonate (4b) and t-butyl 2-pyridyl thionocarbonate (5b) with a series of cyclic secondary amines in MeCN at $25.0{\pm}0.1^{\circ}C$. The $k_N$ values for the reactions of 4b and 5b have been compared with those reported previously for the corresponding reactions of benzyl 2-pyridyl carbonate (4a) and t-butyl 2-pyridyl carbonate (5a) to investigate the effect of changing the electrophilic center from C=O to C=S on reactivity and reaction mechanism. The thiono compound 4b is more reactive than its oxygen analogue 4a. The Br${\o}$nsted-type plots for the reactions of 4a and 4b are linear with ${\beta}_{nuc}=0.57$ and 0.37, respectively. The reactions of 4a were previously reported to proceed through a concerted mechanism, while those of 4b in this study have been concluded to proceed through a stepwise mechanism with formation of an intermediate being the rate-determining step on the basis of the ${\beta}_{nuc}$ value of 0.37. Enhanced polarizability upon changing the C=O in 4a by C=S has been suggested to be responsible for the reactivity order and the contrasting reaction mechanisms. In contrast, the reactivity of 5a and 5b is similar, but they are much less reactive than 4a and 4b. Furthermore, the reactions of 5a and 5b have been concluded to proceed through the same mechanism (i.e., a concerted mechanism) on the basis of linear Bronsted-type plots with ${\beta}_{nuc}=0.45$ or 0.47. It has been concluded that the strong steric hindrance exerted by the t-Bu in 5a and 5b causes a decrease in their reactivity and forces the reactions to proceed through a concerted mechanism.

사물안신탕(四物安神湯)의 항경련(抗經攣) 효과(效果) 및 작용기전(作用機轉)에 관(關)한 실험적(實驗的) 연구(硏究) (Experimental studies on the anticonvulsion effect and mechanism of Samulanshintang)

  • 권보형;구병수
    • 동의신경정신과학회지
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    • 제10권2호
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    • pp.1-27
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    • 1999
  • For experimental studies on the anticonvulsion effect and it was measured in mice that toxigenic effect, influence on the central nervous system, anticonvulsion effect, mechanism of anticonvulsion effect by change of GABA level and glutamic acid in brain, effect of the creation and degradation system of brain oxygen free radicals in convulsion. The results were obtained as follows: 1. Samulanshintang was perfect medicine without toxigenic effect. 2. Pretreatment of Samulanshintang did not influence on the central nervous system. 3. Pretreatment of Samulanshintang did not influence on maximal electric seizure(MES), strychnine, bicuculine and picrotoxin, but pentylenetrazol(PTZ)-induced convulsion significantly decreased. 4. Effect of Samulanshintang except for Jinsa on the PTZ-Induced convulsion decreased. 5. Effect of Samulanshintang fragrance(SMATF) and Samulanshintang distiled water(SMATW) on the PTZ-induced convulsion did not influence. 6. Decrease of brain GABA level in PTZ-induced convulsion was increased by pretreatment of Samulanshintang. 7. Decrease of brain glutathione content in PTZ-induced convulsion was increased by pretreatment of Samu- lanshintang. 8. GABA-T activity increased by PTZ-induced was controlled by the pretreatment of Samulanshintang. 9. Increase of brain lipid peroxide content in PTZ-induced convulsion was decreased by pretreatment of Samulanshintang. 10. Significant increase of brain xanthine oxidase and aldehyde oxidase activities in PTZ-induced was controlled by pretreatment of Samulanshintang. 11. Decrease of brain superoxide dismutase(SOD), catalase and glutathione peroxidase activities in PTZ-induced was decreased by pretreatment of Samulanshintang. From the above results, Samulanshintang was perfect medicine without toxigenic effect and was recognized anticonvulsion effect by decreasing brain glutamic acid level and increasing brain GABA level. Samulanshintang have an effect on creation and degradation system of brain oxygen free radicals in convulsion, thus it was considered that Samulanshintang could be applied in convulsive disorder as epilepsy, febrile seizure and spasm etc.

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Mouse Air Pouch Model에서 침전극 저주파치료로 유도된 소염 작용에 관한 연구 (Study for Related Mechanism of Anti-Inflammatory Effect Induced by Neddle electrode electrical stimulation in Mouse Air Pouch Model.)

  • 정진우;황현숙;임종수
    • 대한물리치료과학회지
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    • 제9권2호
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    • pp.111-122
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    • 2002
  • In oriental medicine, manual-acupuncture and electroacupuncture (EA) have been widely utilized to cure several inflammatory diseases such as arthritis. We designed this experiment to find neurochemical mechanism related to electroacupuncture induced anti-inflammatory effect on mouse air pouch model. EA with both low frequency (1 Hz) and high frequency (120 Hz) was treated after induction of inflammation in air pouch using injection of zymosan. To verify the role of opioid system in electroacupuncture-induced anti-inflammatory effect, naloxone (10 mg/kg) was pretreated. In addition, idazoxan (5 mg/kg) was pre-treated to evaluate the possible effect of endogenous adrenergic system in autonomic system on EA induced anti-inflammatory effect. As results of this study, naloxone pretreatment did not change the anti-inflammatory effect evoked by high frequency EA, while low frequency EA(1 Hz) induced anti-inflammatory effect was dramatically suppressed by naloxone pretreatment. These data indicated that endogenous opioid system might be extensively involve in anti-inflammatory effect evoked by not high frequency, but low frequency EA. However, idazoxan pretreatment did not produce any modulatory effect on both low and high frequency EA induced anti-inflammatory effect, suggesting that EA induced anti-inflammatory effect was not mediated by endogenous adrenergic system. In conclusion, these data strongly suggested that EA induced anti-inflammatory effect is mediated by endogenous opioid system, not endogenous adrenergic system.

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보 접착 모델을 이용한 게코 접착 시스템의 접착 메커니즘에 대한 연구 (A Study of Adhesive Mechanism of Gecko Adhesion System using Adhesive Beam Contact Model)

  • 김원배;조맹효
    • 한국전산구조공학회논문집
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    • 제23권4호
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    • pp.403-407
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    • 2010
  • 게코 접착 시스템은 보(beam)의 형상을 가지는 seta와 접착패드 역할을 하는 spatula로 구성된다. 본 논문에서는 보 접착 모델(ahhesive beam contact model)을 사용하여 게코(gecko) 접착 시스템의 접착 메커니즘의 해석을 수행한다. 보 접착 모델은 접촉면에서 불균일한 응력 분포를 가지는 특징이 있으며, 접촉면에서의 최대 인장 응력(tensile stress)에 의하여 접착/분리 메커니즘이 결정된다. 접착패드 역할을 하는 spatula는 최대 인장응력을 감소시키는 역할을 하며, 이로 인해 접착력이 증가한다. 역방향 하중에 대해서는 spatula에 의하여 최대 압축 응력(compressive stress)이 감소하며, 이러한 현상에 의하여 접착력과 분리력의 비대칭성이 발생한다. 본 연구에서는 보 접착 모델의 해석을 위해 유한요소법(Finite Element Method)을 사용되며, spatula effect를 위한 해석 결과가 제시된다.

강산성용액에서 엔올에스테르의 가수분해에 대한 반응속도론적 연구 (Kinetics and Mechanism of the Hydrolysis of Enol Ester in Strong Acidic Solution)

  • 허태성;유경화
    • 대한화학회지
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    • 제38권5호
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    • pp.391-396
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    • 1994
  • 강산성 용액에서 $\alpha$-벤족시스티렌(1)의 가수분해를 속도론적으로 다루었다. 과염소산이 5.5M보다 낮은 농도($H_o$ < -3.0)에서 수화파라메타 $\omega$ = + 7.6, $\Phi$ = + 0.54를 얻었다. 용매동위원소효과 $k_{H_2O}/k_{D_2O}$는 0.72였고, Hammett $\sigma^+$ 상수에 대한 치환기 효과 $\rho$ = -0.60이었다. 이 결과와 다른 증거로부터 이 산도 범위에서 엔올에스테르의 가수분해는 $A_{AL}$2 형태의 메카니즘에 의해 진행되었다. 과염소산 농도가 5.5 M 이상에서는 동위원소효과, $k_{H_2O}/_{D_2O}$는 3.32이었고, 치환기 효과, $\rho$=-1.6이었으며, 속도상수는 산도함수, $H_o$에 비례하였다. 따라서 반응메카니즘은 변하여 올레핀이 양성자화되는 첫단계가 속도결정단계가 된다.

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The Mechanism Study of Gait on a Load and Gender Difference

  • Ryew, Checheong;Hyun, Seunghyun
    • International Journal of Internet, Broadcasting and Communication
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    • 제13권1호
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    • pp.47-53
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    • 2021
  • Gait kinematics and kinetics have a similar tendency between men and women, yet it remains unclear how walking while carrying a load affects the gait mechanism. Twenty adults walked with preferred velocity on level ground of 20 m relative to change of a load carriage (no load, 15%, 30% of the body weights) aimed to observe gait mechanism. We measured gait posture using the three-dimensional image analysis and ground reaction force system during stance phase on left foot. In main effect of gender difference, men showed increased displacement of center of gravity (COG) compared to women, and it showed more extended joint angle of hip and knee in sagittal plane. In main effect of a load difference, knee joint showed more flexed postuel relative to increase of load carriage. In main effect of load difference on the kinetic variables, medial-lateral force, anterior-posterior force (1st breaking, 2nd propulsive), vertical force, center of pressure (COP) area, leg stiffness, and whole body stiffness showed more increased values relative to increase of load carriage. Also, men showed more increased COP area compared to women. Interaction showed in the 1st anterior-posterior force, and as a result of one-way variance analysis, it was found that a load main effect had a greater influence on the increase in the magnitude of the braking force than the gender. The data in this study explains that women require little kinematic alteration compared to men, while men in more stiff posture accommodate an added load compared to women during gait. Additionally, it suggests that dynamic stability is maintained by adopting different gait strategies relative to gender and load difference.

The Influence of Trade and Foreign Direct Investment on Green Total Factor Productivity: Evidence from China and Korea

  • Li, Kan-Yong;Gong, Wen-Chao;Choi, Beak-Ryul
    • Journal of Korea Trade
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    • 제25권2호
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    • pp.95-110
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    • 2021
  • Purpose - This paper intends to conduct theoretical analysis and empirical test on the action mechanism of South Korea-China trade and South Korea's FDI to China on green total factor productivity, so as to provide a new perspective and ideas for the improvement of China's green total factor productivity and promote the high-quality development of China's economy Design/methodology - This paper uses the data of 30 provinces, autonomous regions and municipalities in China from 2004 to 2017 as the research sample, adopts the GML index method of SBM Directional Distance Function to measure GTFP, and analyzes the influence of South Korea-China trade and FDI from South Korea on China's GTFP. Findings - Trade is conducive to promoting technological progress, which has a significant promotion effect on China's green total factor productivity. While FDI has a significant inhibitory effect on China's green total factor productivity, which verifies the "pollution haven" hypothesis. In addition, such influence has certain regional overall heterogeneity. Trade has a more significant promoting effect on GTFP in eastern coastal areas, while FDI has a more significant inhibitory effect on GTFP in central and western inland areas. The interaction between trade and FDI is conducive to the improvement of green total factor productivity, indicating that the benign mechanism of trade and FDI has been formed. Urbanization, industrial structure, human resource level and investment in science and technology are all conducive to the improvement of GTFP. Originality/value - Through theoretical analysis and empirical test on the action mechanism of South Korea-China trade and South Korea's FDI on green total factor productivity, this paper provides a solid theoretical foundation for the further development of China-South Korea economic and trade cooperation in the future.

Ginsenoside Re inhibits myocardial fibrosis by regulating miR-489/myd88/NF-κB pathway

  • Jinghui Sun;Ru Wang;Tiantian Chao;Jun Peng;Chenglong Wang;Keji Chen
    • Journal of Ginseng Research
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    • 제47권2호
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    • pp.218-227
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    • 2023
  • Background: Myocardial fibrosis (MF) is an advanced pathological manifestation of many cardiovascular diseases, which can induce heart failure and malignant arrhythmias. However, the current treatment of MF lacks specific drugs. Ginsenoside Re has anti-MF effect in rat, but its mechanism is still not clear. Therefore, we investigated the anti-MF effect of ginsenoside Re by constructing mouse acute myocardial infarction (AMI) model and AngII induced cardiac fibroblasts (CFs) model. Methods: The anti-MF effect of miR-489 was investigated by transfection of miR-489 mimic and inhibitor in CFs. Effect of ginsenoside Re on MF and its related mechanisms were investigated by ultrasonographic, ELISA, histopathologic staining, transwell test, immunofluorescence, Western blot and qPCR in the mouse model of AMI and the AngII-induced CFs model. Results: MiR-489 decreased the expression of α-SMA, collagenI, collagen III and myd88, and inhibited the phosphorylation of NF-κB p65 in normal CFs and CFs treated with AngII. Ginsenoside Re could improve cardiac function, inhibit collagen deposition and CFs migration, promote the transcription of miR-489, and reduce the expression of myd88 and the phosphorylation of NF-κB p65. Conclusion: MiR-489 can effectively inhibit the pathological process of MF, and the mechanism is at least partly related to the regulation of myd88/NF-κB pathway. Ginsenoside Re can ameliorate AMI and AngII induced MF, and the mechanism is at least partially related to the regulation of miR-489/myd88/NF-κB signaling pathway. Therefore, miR-489 may be a potential target of anti-MF and ginsenoside Re may be an effective drug for the treatment of MF.