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본태성 고혈압 환자의 적혈구 Na+-Li+ Countertransport 와 적혈구막 지방산 구성에 대한 연구
이영우,고경수,고재준,박경수,김원배,한은경,김성연,조보연,이홍규,고창순,민현기 한국지질학회 1991 韓國脂質學會誌 Vol.1 No.1
Since the changes of Na^+-Li^+ countertransport (SLC) Vmax in essential hypertension have been reported. it has been known that hyperlipidemia could affect SLC independently of blood pressure. To reveal the relation between SLC Vmax and RBC membrane fatty acid conposition in the hypertensive patients, we divided patients into two groups according to their levels of SLC Vmax of erythrocytes(elevated SLC Vmax: n=4, normal SLC Vamx: n=6). The results were as follows: 1) There was no difference in body mate index, waist-hip ratio, blood pressure, serum cholesterol level between two groups. Triglyceride were higher in elevated group (278.0±180.0 ㎎/㎗) than normal group (124.3±60.7 ㎎/㎗) but there was no statistical significance. HDL-cholesterol levels were significantly lower in elevated group (32.0±3.6 vs. 44.8±8.9 ㎎/㎗) and free fatty acid concentrations, intracellular (RBC) Na^+ concentrations were similar between two groups. 2) The results of oral glucose tolerance test showed no differences in the glucose and insulin area, however the incremental insulin areas of elevated group (108.8±31.3, μU. min/㎖×10²) were significantly higher compared with those of normal group (56.3±20.7 μU. min/㎖×10²). 3) In the elevated group, palmitic acid proportions of erythrocytes (22.1±0.7%) were higher than those of normal group (20.1±0.7%) and SLC Vmax showed significant correlation (r=0.81, p$lt;0.01) with palmitic acid proportion. These results suggest that the abnormal lipid metabolism may change the RBC Na^+ transport system through the alterations of RBC membrane fatty acid composition.
S-Adenosyl-L-methionine ameliorates TNFα-induced insulin resistance in 3T3-L1 adipocytes
Min Kyong Moon,김민,정성수,Hyun Joo Lee,Sung Hee Koh,Peter Svovoda,Myung Hee Jung,Young Min Choi,Young Joo Park,Sung Hee Choi,장학철,박경수,이홍규 생화학분자생물학회 2010 Experimental and molecular medicine Vol.42 No.5
An association between inflammatory processes and the pathogenesis of insulin resistance has been increasingly suggested. The IκB kinase-β (IKK-β)/ nuclear factor-κB (NF-κB) pathway is a molecular mediator of insulin resistance. S-Adenosyl-L-methionine (SAM) has both antioxidative and anti-inflammatory properties. We investigated the effects of SAM on the glucose transport and insulin signaling impaired by the tumor necrosis factor α (TNFα) in 3T3-L1 adipocytes. SAM partially reversed the basal and insulin stimulated glucose transport, which was impaired by TNFα. The TNFα-induced suppression of the tyrosine phosphorylation of the insulin receptor substrate-1(IRS-1) and Akt in 3T3-L1 adipocytes was also reversed by SAM. In addition, SAM significantly attenuated the TNFα-induced degradation of IκB-α and NF-κB activation. Interestingly, SAM directly inhibited the kinase activity of IKK-β in vitro. These results suggest that SAM can alleviate TNFα mediated-insulin resistance by inhibiting the IKK-β/NF-κB pathway and thus can have a beneficial role in the treatment of type 2 diabetes mellitus.
정경환 ( Kyong-hwan Chung ),고태석 ( Tae-suck Koh ),장덕례 ( Duck-rye Chang ),윤형선 ( Hyung-sun Yoon ),정승원 ( Seung-won Jeong ),정민철 ( Min-chul Chung ),안호근 ( Ho-geun Ahn ) 한국환경기술학회 2006 한국환경기술학회지 Vol.7 No.2
대기환경 규제지역으로 지정된 광양만권의 산업체에 대한 질소산화물 저감기술 적용성에 대해 조사하였다. 질소산화물 저감기술에 대한 효율성, 경제성 그리고 저감기술의 장단점을 비교하여 가장 효율적인 질소산화물 저감기술을 도출하고자 하였다. 광양만권 산업체가 적용하고 있는 질소산화물 저감기술은 질소산화물 배출량이 많을 경우 선택적 촉매환원법이나 선택적 무촉매환원법을 적용하는 비율이 높았다. 질소산화물 배출량이 100톤/년 이하인 공정에는 저NOx 버너를 사용하는 것이 경제적인 것으로 판단되었다. 광양만권 대기환경개선 실천계획을 달성하기 위해서는 질소산화물 발생량이 100톤/년 이상인 공정에는 선택적 촉매환원법을 적용하도록 유도하는 것이 바람직한 것으로 판단되었다. The application of reduction technology for nitrogen oxide was studied to the industries located in Gwangyang-bay area. The efficiency, strength and weakness, and economics for equipment and operation about the technology were investigated to establish the most efficient reduction technology on Gwangyang-bay area. The low NOx burner was useful to the industries emit low concentration of nitrogen oxide compound below 100 ton/year. It is certified that the selective catalytic reduction process has to be applied to the industries which emit a large amount of nitrogen oxide compound more than 100 ton/year to accomplish the action plan for improvement of air pollution on Gwangyang-bay area.