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김성철,송은영,김공호,권혁모,강상헌,박기훈,정용환,장기창,Kim, Seong-Cheol,Song, Eun-Young,Kim, Kong-Ho,Kwon, Hyeog-Mo,Kang, Sang-Heon,Park, Ki-Hun,Jung, Yong-Hwan,Jang, Ki-Chang 한국응용생명화학회 2003 한국농화학회지 Vol.46 No.3
양하(Zingiber mioga Roscoe) 근경의 에탄을 추출물을 재료로 Staphylococcus aureus, Bacillus subtilis 및 B. cereus에 대한 activity-guided fractionation을 실시하여 항균성 물질 세가지준 얻었다. 항균력실험 결과, 화합물 I과 111은 세가지균주 모두에 활성이 있었고, 화합물 II에서는 B. subtilis과 B. cereus에서만 활성이 나타났다. 그 중에서 가장 활성이 강한 화합물 I을 Bioscreen C로 optical density(600 nm)를 측정하여 증식억제실험을 한 결과 10 ppm 처리시 B. subtilis과 B. cereus에서 72시간동안 강한 증식억제효과를 나타내었으며, S. aureus에서는 25 ppm 처리시 72시간동안 완전증식억제효과를 나타내었다. $1^H-NMR$, ${13}^C-NMR$, DEPT,$1^H-1^H$ COSY, HMQC, HMBC 및 IR 스펙트럼 등을 분석한 결과 화합물 I, II, III은 labdane-type diterpene인 $(E)-8{\beta}(17)-epoxylabd-12-ene-15,16-dial(C_{20}H_{30}O_3,\;MW=318)$, $galanolactone(C_{20}H_{30}O_3,\;MW=318)$ 그리고 galanal A($C_{20}H_{30}O_3,\;MW=318$)로 각각 동정되었으며, 이들은 양하의 근경에서는 처음 분리된 것이다. In order to isolate antibacterial substances from the rhizome of Zingiber mioga Roscoe, the ethanol extracts was fractionated according to the activity against Bacillus subtilis, B. cereus and Staphylococcus aureus. Three antibacterial substances were isolated and purified by column chromatography and recrystallization. Compounds I and III showed activity against all the tested bacterias and compound II exhibited the activity against B. subtilis and B. cereus S. aureus. Compound I was examined antimicrobial activity against B. subtilis, B. cereus and S. aureus by optical density using Bioscreen C. Compound I showed strong growth inhibition at 10 ppm on B. subtilis and B. cereus for 72 hrs, and at 25 ppm on S. aureus. On the basis of spectrometric studies including $1^H-NMR$, ${13}^C-NMR$, DEPT, IH-lH COSY, HMQC, HMBC and IR, compounds I, II and III were identified as $(E)-8{\beta}(17)-epoxylabd-12-ene-15,16-dial\;(C_{20}H_{30}O_3,\;MW=318)$, galanolactone $(C_{20}H_{30}O_3\;MW=318)$ and galanal A $(C_{20}H_{30}O_3,\;MW=318)$, respectively. These results are the first reports on the isolation of $(E)-8{\beta}(17)-epoxylabd-12-ene-15,16-dial, galanolactone and galanal A from the rhizome of Zingiber mioga.
김성철(Sung-Cheol Kim),김경욱(Kyoung-Wook ),우천희(Chun-Hee Woo) 대한전기학회 2016 전기학회논문지 P Vol.65 No.3
The electric power industry have recently been building out Smart Grids, a two-way electricity grid that connects power consumers and producers to a network that enables one to respond quickly to any eventuality. The construction of a two-way electricity grid means that the power control process becomes unified, from what used to be separate processes that originate individually from the consumption phase and the production and supply phases. The role of power control that takes place within each section of the power system may be independent. However, this does not mean the independent control sections are operated individually, but are configured to meet a single target and purpose. Each control section possesses enough degree of independency to respond to eventualities that may occur within different stages of the power system, but at the same time, possesses unified system elements for the stability of the entire power system. From this perspective, Smart Grids are widely regarded as the most rational power industry operation plan. A variety of different control and communication systems can be applied for an effective deployment of Smart Grids. Recently, we have seen systems such as PMS(Power Management System) and PAS(Process Automation System) applied in the deployment of Smart Grids, which are developed from the techniques utilized in the industry. The PMS is attracting particular attention for its power operations management ability. In this study, we propose plans for improvement in the rational development of power system controls through case studies of live PMS operations.
단극성 직류전원으로 유도된 용액 플라즈마를 이용하여 제조한 젤라틴/은 나노입자 생체복합재료의 항균 효과
김성철 ( Seong Cheol Kim ),윤국진 ( Gook Jin Yoon ),남상우 ( Sang Woo Nam ),이상율 ( Sang Yul Lee ),김정완 ( Jung Wan Kim ) 한국미생물생명공학회(구 한국산업미생물학회) 2012 한국미생물·생명공학회지 Vol.40 No.4
본 연구에서는 용액 중 플라즈마 공정을 이용하여 젤라틴/Ag 나노입자(AgNP) 용액을 제조하고 동결건조하여 3차원비계 형태의 생체복합재료를 성공적으로 제조하였다. 본 공정에서는 환원제 사용 없이 플라즈마 방전 중 수소 라디칼과 Ag 이온의 환원을 통해, 젤라틴 기지재 내에 지름 12~20nm 크기의 구형 AgNP가 효과적으로 형성되었다. 젤라틴 농도가 높을수록(3%) AgNP의 분산안정성이 좋았으며, 3차원비계 형태의 젤라틴의 미세공 조직이 작아지고 밀도가 높아지는 것으로 나타났다. 또한 AgNP의 농도가 높을수록(5mM) 항균효과가 좋았는데, Ag5G3 생체복합재료를 사용했을 때 황색포도상구균의 생장은 44% 감소되었고, 대장균의 생장은 100% 감소되어 그람 음성균에 대한 항균력이 더 좋은 것으로 나타났다. Gelatin/Ag nanoparticle (AgNP) biocomposite was synthesized using the solution plasma process (SPP) that has been recently introduced as an effective method for synthesis of nanoparticles. In this study, gelatin/AgNP biocomposite was synthesized using various concentrations of Ag precursor (AgNO3) and gelatin in the range of 1-5 mM and 1-3% (w/w), respectively, without using any chemical reducing agent. Physical properties of the gelatin/AgNP biocomposites were analyzed using EDS, FE-SEM, and TEM. The results indicated that spherical AgNPs with approximately 12~20 nm in diameter were synthesized successfully in the gelatin matrix by SPP. As the concentration of gelatin was increased (3%, w/w), disperse stability of AgNP was improved and micro-pores of gelatin became smaller and denser in the 3D scaffold. Bactericidal activity of the AgNPs was examined against Staphylococcus aureus and Escherichia coli by measuring zone of growth inhibition and decrease in colony forming unit (CFU). CFUs of S. aureus and E. coli were decreased approximately to 56% and 0%, respectively, by the gelatin/AgNP biocomposite, Ag5G3.
김성철(Seong-Cheol Kim),장진욱(Jin-Wook Jang),김현아(Hyun-Ah Kim),이상호(Sang-Ho Lee),정영지(Young-Ji Jung),김지연(Ji-Yeon Kim),안종훈(Jong-Hoon Ahn),박은혜(Eun-hye Park),고용석(Yong-Seok Ko),김동술(Dong-Sul Kim),김상엽(Sang-Yub Kim) 한국식품과학회 2010 한국식품과학회지 Vol.42 No.4
심해성 어류 등에 대한 메틸수은 기준규격 설정에 따른 사후관리 차원의 모니터링을 실시하였다. 본 연구에 사용된 어종은 귀상어, 흑기흉상어, 곱상어, 청새리상어, 악상어, 적어, 은민대구 및 체장메기 등 총 492건을 수거하여 메틸수은 함량을 조사하였다. 메틸수은 분석을 위한 분석법 타당성을 검토한 결과 GC-μECD의 검출한계와 정량한계는 0.002 ㎎/㎏과 0.005 ㎎/㎏으로 나타났으며 메틸수은의 검량선은 상관계수가 0.9992로 우수한 직선성을 보였고, 회수율은 84.2-98.5%(평균 93.4%)로 나타났다. 심해성 어류의 메틸수은 함량은 각 어종 별로 유의적인 차이가 있었으며, 메틸수은 함량[최소값-최대값(평균±표준편차), 단위: ㎎/㎏]은 귀상어 0.157-2.009(0.546±0.311), 청새리상어 0.211-0.878 (0.501±0.154) 및 곱상어 0.121-0.993(0.482±0.189) 등에서 높게 나타났으며, 악상어 0.243-0.658(0.397±0.090), 흑기흉상어 0.074-1.958(0.353±0.418), 은민대구 0.038-0.807(0.302±0.201) 및 적어0.099-0.511(0.300±0.094) 등에서는 낮은 것으로 나타났고, 체장메기의 경우 0.037-0.133(0.067±0.016)으로 나타나 조사된 어종 중유의적으로 가장 낮은 함량을 나타내었다. 본 연구에서 조사된 심해성 어류 중 메틸수은 함량의 노출량 평가를 위해 JECFA의 PTWI와 비교 검토한 결과 상어류 0.7%, 은민대구 1.1% 및 체장메기 0.3% 수준으로 나타났다. 또한 극단적인 노출량 평가를 위해서 어종별 메틸수은 최대 함량을 이용하여 산출한 결과도 상어류 2.9%, 은민대구 2.9% 및 체장메기 0.6% 수준으로 나타나 심해성 어류의 섭취로 인한 메틸수은 노출량은 안전한 수준인 것으로 판단된다. The aim of this study was to determine the methylmercury (MeHg) levels in abyssal fish species. The MeHg in the fishes was extracted with hydrochloric acid and toluene and then purified using an L-cysteine solution. The extract was analyzed with a gas chromatography-electron capture detector (GC-μECD) with a thermon Hg-capillary column. The detection limit and the recovery of the method were 0.002 and 84.2-98.5% (mean, 93.4%), respectively. The MeHg content in 492 abyssal fishes ranged from 0.037 to 2.009 ㎎/㎏. The levels of MeHg [range, ㎎/㎏ (mean)] were significantly dependent on fish species and presented as the following; 0.157-2.009 (0.546) in Scalloped hammerhead shark, 0.211-0.878 (0.501) in Blue shark, 0.121-0.993 (0.482) in Spiny dogfish, 0.243-0.658 (0.397) in Salmon shark, 0.074-1.958 (0.353) in Blacktip shark, 0.038-0.807 (0.302) in Southern hake, 0.099-0.511 (0.300) in Scorpion fish, and 0.037-0.133 (0.067) in Ling. The monitoring results showed that the estimated weekly intake of MeHg from sharks, Southern hake, and Ling were lower than the provisional tolerable weekly intake recommended by the Joint FAO/WHO expert committee on food additives.