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김위 연구실
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김위 연구실

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김위 연구실은 외장형 장기 개념을 기반으로 생체 기능을 외부 플랫폼에서 구현하기 위한 기초 구조와 상호작용 원리를 탐구합니다. 외부 환경에서 장기 반응을 모사하기 위한 자극 전달 방식, 구조적 안정성 조건, 기능적 동작 규칙을 분석하며 이를 시스템화하기 위한 설계 원리를 다룹니다. 또한 외장형 생체 시스템의 응용 가능성을 평가하기 위한 모듈 구조, 기능 검증 체계, 운용 환경 모델을 구축하여 생체 기능 모사 기술의 실용적 기반을 확보합니다.

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생체 장기 외장형 시스템 기초 연구
Fundamental Research on External Organ Systems
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연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
최신 논문
6
논문 전체보기
1
Article
|
·
인용수 8
·
2010
Temporal analysis of mechanisms leading to stimulation of glucose uptake in skeletal muscle cells by an adipokine mixture derived from primary rat adipocytes
Vivian Vu, Keith Dadson, Tanya Odisho, W. Kim, Xingdong Zhou, Farah S. L. Thong, Gary Sweeney
International Journal of Obesity
https://doi.org/10.1038/ijo.2010.160
Internal medicine
Adipokine
Adipocyte
Endocrinology
GLUT4
Adiponectin
Skeletal muscle
Glucose transporter
Glucose uptake
Chemistry
Biology
Adipose tissue
Cell biology
Insulin
Insulin resistance
Medicine
2
Article
|
인용수 80
·
2008
Correlation of circulating full‐length visfatin (PBEF/NAMPT) with metabolic parameters in subjects with and without diabetes: a cross‐sectional study
Ravi Retnakaran, Byung‐Soo Youn, Ying Liu, Anthony J. Hanley, Nam Seok Lee, Ji Woo Park, Eun Sun Song, Vivian Vu, W. Kim, Rungsunn Tungtrongchitr, Peter J. Havel, Michael M. Swarbrick, Collin Shaw, Gary Sweeney
Clinical Endocrinology
OBJECTIVE: Here we use a novel ELISA that is specific for full-length visfatin (PBEF/NAMPT), compare it with the existing C-terminal based assay and use it to investigate associations of visfatin with metabolic parameters. DESIGN, PATIENTS AND MEASUREMENTS: We established the specificity and effectiveness of the new ELISA and evaluated the associations of full-length visfatin with clinical, anthropometric and metabolic parameters in a cross-sectional study of 129 Thai subjects, consisting of 50 outpatients with type 2 diabetes and 79 healthy volunteers. RESULTS: The new ELISA accurately recovered full-length recombinant visfatin and detected visfatin secreted by primary human and rat adipocytes. We found serum full-length visfatin was significantly higher in subjects with diabetes compared to their nondiabetic peers (median 2.75 vs. 2.22 ng/ml, P = 0.0142). After adjustment for age, gender and traditional metabolic risk factors, adjusted mean visfatin remained significantly higher in the diabetes group (3.80 vs. 2.10 ng/ml, P = 0.0021). On Spearman univariate correlation analysis, visfatin was significantly associated with resistin (r = 0.30, P = 0.0011), but not with any other anthropometric or metabolic variables, including adiponectin multimers. On multiple linear regression analysis, the only covariates independently associated with visfatin were diabetes (t = 3.11, P = 0.0024) and log resistin (t = 2.68, P = 0.0086). CONCLUSIONS: Circulating visfatin is independently associated with diabetes and resistin concentration, but is not related to adiponectin multimers or other metabolic covariates. These data are suggestive of a potential role of visfatin in subclinical inflammatory states.
https://doi.org/10.1111/j.1365-2265.2008.03264.x
Adiponectin
Medicine
Internal medicine
Endocrinology
Resistin
Diabetes mellitus
Adipokine
Nicotinamide phosphoribosyltransferase
Subclinical infection
Anthropometry
Type 2 diabetes
Insulin resistance
Biology
Enzyme
3
Article
|
인용수 27
·
2007
Coculture with Primary Visceral Rat Adipocytes from Control But Not Streptozotocin-Induced Diabetic Animals Increases Glucose Uptake in Rat Skeletal Muscle Cells: Role of Adiponectin
Vivian Vu, W. Kim, Xiangping Fang, Yuan-Tao Liu, Aimin Xu, Gary Sweeney
Endocrinology
We developed a coculture system comprising primary rat adipocytes and L6 rat skeletal muscle cells to allow investigation of the effects of physiologically relevant mixtures of adipokines. We observed that coculture, or adipocyte-conditioned media, increased glucose uptake in muscle cells. An adipokine that could potentially mediate this effect is adiponectin, and we demonstrated that small interfering RNA-mediated knockdown of adiponectin receptor-2 in muscle cells reduced the uptake of glucose upon coculture with primary rat adipocytes. Analysis of coculture media by ELISA indicated total adiponectin concentration of up to 1 microg/ml, and Western blotting and gel filtration analysis demonstrated that the adipokine profile was hexamer greater than high molecular weight much greater than trimer. We used the streptozotocin-induced rat model of diabetes and found that high-molecular-weight adiponectin levels decreased in comparison with control animals and this correlated with the fact that diabetic rat-derived primary adipocytes in coculture did not stimulate glucose uptake to the same extent as control adipocytes. Coculture induced phosphorylation of AMP-activated protein kinase (T172) and interestingly also insulin receptor substrate-1 (Y612) and Akt (T308 & S473), which could be attenuated after adiponectin receptor-2-small interfering RNA treatment. In summary, we believe that this coculture system represents an excellent model to study the effects of primary adipocyte-derived adipokine mixtures on skeletal muscle metabolism, and here we have established that in the context of physiologically relevant mixtures of adipokines, adiponectin may be an important determinant of positive cross talk between adipocytes and skeletal muscle.
https://doi.org/10.1210/en.2007-0020
Internal medicine
Endocrinology
Adiponectin
Adipokine
Adiponectin receptor 1
Skeletal muscle
Adipocyte
Glucose uptake
Chemistry
Streptozotocin
Biology
Insulin
Adipose tissue
Insulin resistance
Diabetes mellitus
Medicine
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