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LPS로 유도한 대식세포의 염증반응에서 우슬의 항염증 효과
김민선 ( Min Sun Kim ),정진수 ( Jin Soo Jeong ),이혜윤 ( Hye Youn Lee ),주영승 ( Young Sung Ju ),배기상 ( Gi Sang Bae ),서상완 ( Sang Wan Seo ),조일주 ( Il Joo Cho ),박성주 ( Sung Joo Park ),송호준 ( Ho Joon Song ) 대한본초학회 2011 大韓本草學會誌 Vol.26 No.2
Objectives: Achyranthes japonica (AJ ) has been used as an anti-bacterial and anti-inflammatory agent. However, it is unclear that AJ could show the anti-inflammatory effects in macrophages. In this experiment, we studied whether AJ could inhibit the inflammatory responses in macrophages. Methods: To measure out the cytotoxicity of AJ, we performed the MTT assay. We evaluated the nitric oxide (NO) production, and cytokine production such as interleukin (IL)-1b, IL-6 and tumor necrosis factor (TNF)-a. We also investigated the cellular mechanims such as mitogen activated protein kinases (MAPK)s and nuclear factor kappa B (NF-kB). Results: AJ inhibited lipopolysaccharide (LPS)-induced NO production. AJ also inhibited production levels of IL-1b, IL-6 and TNF-a in LPS-stimulated macrophage. Finally, western blot analysis showed that AJ treatment inhibited the activation of p38 but not of extracellular signal-regulated kinase, c-jun NH2-terminal kinase and NF-kB. Conclusions: These results showed that AJ down-regulated the inflammatory response via p38 in macrophages, which suggest that AJ could be a candidate on treating inflammatory diseases.
김영식,장성수,이선영,진원혁,조일주,남효진,부종욱,Kim Young-Sik,Jang Seong-Soo,Lee Caroline Sun-Young,Jin Won-Hyeog,Cho Il-Joo,Nam Hyo-Jin,Bu Jong-Uk 정보저장시스템학회 2006 정보저장시스템학회논문집 Vol.2 No.2
In this research, a wafer-level transfer method of cantilever away on a conventional CMOS circuit has been developed for high density probe-based data storage. The transferred cantilevers were silicon nitride ($Si_3N_4$) cantilevers integrated with poly silicon heaters and piezoelectric sensors, called thermo-piezoelectric $Si_3N_4$ cantilevers. In this process, we did not use a SOI wafer but a conventional p-type wafer for the fabrication of the thermo-piezoelectric $Si_3N_4$ cantilever arrays. Furthermore, we have developed a very simple transfer process, requiring only one step of cantilever transfer process for the integration of the CMOS wafer and cantilevers. Using this process, we have fabricated a single thermo-piezoelectric $Si_3N_4$ cantilever, and recorded 65nm data bits on a PMMA film and confirmed a charge signal at 5nm of cantilever deflection. And we have successfully applied this method to transfer 34 by 34 thermo-piezoelectric $Si_3N_4$ cantilever arrays on a CMOS wafer. We obtained reading signals from one of the cantilevers.
도형수(Hyung Soo Do),조진연(Jin Yeon Cho),박일주(Il-Ju Park),정성남(Sung Nam Jung),김태주(Tae Joo Kim),김도형(Do-Hyung Kim) 한국항공우주학회 2011 韓國航空宇宙學會誌 Vol.39 No.3
복합재료 로터 블레이드는 각종 보강재와 더불어 적층된 형태로 구성되어 있어 그 단면 구조가 매우 복잡하고, 이로 인해 모델링에 어려움이 존재한다. 본 논문에서는 효율적인 로터 블레이드 단면 모델링을 위해 집합 연산에 기반 한 2차원 모델링 알고리듬을 활용하여 그래픽 사용자 환경을 갖춘 프로그램 KSec2D를 구현하였다. 구현된 프로그램을 이용하여 복잡한 로터 블레이드 단면 형상 모델링을 수행하고 이를 통해 복합재료 로터 블레이드 모델링 시 개발된 프로그램의 유용성을 확인하였다. Generally, modeling procedure of cross section of composite rotor blade is complicated and time-consuming, because it is made up of various stiffeners and multiple layers of composite materials. For efficient modeling of cross section of composite rotor blade, a modeling program so called KSec2D, which provides a user friendly GUI, is developed by using a 2D modeling algorithm based on set operation. By the developed program KSec2D, a modeling of complicated cross section of rotor blade is carried out. Through the demonstration, the usefulness of developed program in modeling procedure of cross section of composite rotor blade is verified.
반사형 마이크로미러와 듀얼 코어 클리메이터를 이용한 광 마이크로폰
송주한,김도환,구현모,박현정,이상신,조일주,Song, Ju-Han,Kim, Do-Hwan,Gu, Hyun-Mo,Park, Hyun-Jung,Lee, Sang-Shin,Cho, Il-Joo 한국광학회 2006 한국광학회지 Vol.17 No.1
본 논문에서는 듀얼 코어 광섬유 콜리메이터(dual-core fiber collimator)와 멤브레인형 마이크로미러를 이용한 광마이크로폰을 제안하고 구현하였다. 콜리메이터와 미러는 각각 광헤드(optical head)와 반사형 진동판으로서 사용된다. 특히, 미러 진동판은 얇은 실리콘 바(bar)에 의해 프레임에 연결되어 있어서 인가된 음압에 따라 자유롭게 움직인다. 두 개의 콜리메이터가 집적된 광헤드는 음압을 감지하고 변조하는데 사용되는 광을 공급하고 받는 역할을 한다. 이 콜리메이터 광헤드를 사용함으로써 진동판과의 초기 정렬시 기존의 광섬유를 이용한 경우에 비해 허용 오차가 클 뿐만 아니라 전체적으로 광마이크로폰의 구조도 간단해졌다. 본 논문에서는 광헤드와 진동판 사이의 거 리를 변화시켜 가면서 응답 특성을 측정하여 선형성과 민감도가 최대인 지점을 동작점으로 결정하였다. 음성신호의 주파수를 변화시켜 가면서 광마이크로폰의 출력을 측정하여 얻은 주파수 대역폭은 약 $\pm$5 dB 이하 출력 변화에 대해 약 3 kHz였다. An optical microphone based on a dual-core fiber collimator and a membrane type micromirror serving as an optical head and a reflective diaphragm respectively was implemented. The micromirror diaphragm is suspended by a thin silicon bar linked with a frame, thus it is subject to a displacement induced by acoustic waves. The optical head incorporating two collimators integrated in a single housing gives light to and receives it from the diaphragm, rendering the optical microphone structure simple and compact. This dual-core collimator having a slowing varying beam profile facilitates the initial alignment of the optical head with the diaphragm, especially the distance between them. For the assembled microphone, the static characteristics were investigated tofind the operation point defined as the optimum distance between the head and the diaphragm, and a frequency response with a variation of about $\pm$5 dB for the range of up to 3kHz was achieved.