• 제목/요약/키워드: Membrane permeability

검색결과 931건 처리시간 0.028초

SMEDDS를 이용한 난용성 약물의 용출율 향상 (Improvement of Dissolution Rate of Poorly Water Soluble Drug Using Self-microemulsifying Drug Delivery System)

  • 김계현;이윤석;배준호;지상철;박은석
    • Journal of Pharmaceutical Investigation
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    • 제29권1호
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    • pp.37-45
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    • 1999
  • ABSTRACT-A self-microemulsifying drug delivery system (SMEDDS) was developed to enhance the solubility and dissolution rate of poorly water soluble drug, biphenyl dimethyl dicarboxylate, DDB. The system was optimized by evaluating the solubility of DDB and the microemulsion existence range after the preparation of microemulsions with varying compositions of triacetin and surfactant-cosurfactant mixtures (Labrasol as surfactant (S) and the combination of Transcutol, Cremophor RH 40 and Plurol oleique as cosurfactant (CoS)). SMEDDS in this study markedly improved the solubility of DDB in water up to 10 mg/ml and the size of the o/w microemulsion droplets measured by dynamic light scattering showed a narrow monodisperse size distribution with an average diameter less than 50 nm. The microemulsion existing range is increased proportional to the ratio of S/CoS, however, it decreased remarkably as the oil content was more than 20%. In vitro dissolution study of SMEDDS showed a significantly increased dissolution rate of DDB in water (> 12 fold over DDB powder), and SMEDDS also had significantly greater permeability of DDB in Caco-2 cell compared to powders.

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Leakage of Cellular Materials from Saccharomyces cerevisiae by Ohmic Heating

  • Yoon, Sung-Won;Lee, Chung-Young-J.;Kim, Ki-Myung;Lee, Cherl-Ho
    • Journal of Microbiology and Biotechnology
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    • 제12권2호
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    • pp.183-188
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    • 2002
  • The ohmic heating of foods for sterilization provides a shorter come-up time compared to conventional thermal processes. The electric fields as well as the heat generated by ohmic heating facilitate germicidal effects. In the present study, the effect of ohmic heating on the structure and permeability of the cell membrane of yeast cells, Saccharomyces cerevisae, isolated from Takju (a traditional Korean rice-beer), was investigated. The ohmic heating was found to translocate intracellular protein materials out of the cell wall, and the amount of exuded protein increased significantly as the electric field increased from 10 to 20 V/cm. As higher frequencies were applied, more materials were exuded. Compared to conventional heating, more amounts of proteins and nucleic acids were exuded when these cells were treated with ohmic heating. The molecular weights of the major exuded proteins ranged from 14 kDa to 18 kDa, as analyzed by Tricine-SDS PAGE. A TEM study also confirmed the leakage of cellular materials, thus indicating irreversible damage to the cell wall by ohmic heating. It was, therefore, concluded that the electric fields generated by ohmic heating induced electroporation, causing irreversible damage to the yeast cell wall and promoting the translocation of intracellular materials.

전기방사한 나노섬유 웹 라미네이트 소재의 반복 세탁에 따른 투습방수 성능 변화 및 내구성 (Changes in Waterproofness and Breathability after Repeated Laundering and Durability of Electrospun Nanofiber Web Laminates)

  • 이경;윤보람;이승신
    • 한국의류산업학회지
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    • 제14권1호
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    • pp.122-129
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    • 2012
  • To develop a waterproof breathable material, we fabricated three kinds of nanofiber web laminates using a massproduced electrospun nanofiber web with different substrates and layer structures. The waterproofness and breathability of nanofiber web laminates were evaluated after repeated launderings and compared with those of conventional waterproof breathable fabrics currently in use, including densely woven fabric, microporous membrane laminated fabric, and coated fabric. The durability of nanofiber web laminates, including adhesion strength, abrasion resistance, tensile strength, and tearing strength, was also assessed and compared with those of conventional waterproof breathable fabrics. The water vapor transmission of nanofiber web laminates increased slightly after repeated launderings, whereas the air permeability somewhat decreased after launderings but still maintained an acceptable level of air permeability. Laundering reduced the resistance to water penetration of nanofiber web laminates, which implies that laminating techniques or substrate materials that could support waterproofness of the laminated structure should be explored. The adhesion strength, abrasion resistance, tensile strength, and tearing strength of nanofiber web laminates were in a range comparable to conventional waterproof breathable materials.

전기장과 이온교환막을 이용한 토양에서의 중금속 제거에 대한 연구 (A study on the removal of heavy metals from soils using electrokinetic soil processing and ion exchange membrane)

  • 김순오
    • 자원환경지질
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    • 제32권1호
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    • pp.43-51
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    • 1999
  • In order to remediate hazardous waste site, a process of electrokinetically purging chemicals from saturated soil is examined by laboratory experiments. Electrokinetic soil remediation is one of the most promising soil decontamination processes that habe igh removal efficiency and time-effectiveness in low-permeability soils such as clay. Being combined with several mechanisms-electromigration, elec troosmosis, diffusion and electrolysis of water, electrokinetic soil processing can remove non-polar organics as well as ionic contaminants. The objectives of this study are; 1) the exploration of the feasibility of electrokinetic soil processing on the removal of heavy metals, 2) the investigation of applicability to the tailing-soils in aban doned mining area, 3) the examination of effects of soil pH and conductivity on the transport phenomena of elements in soils, and 4) the investigation of the applicability of the ionexchange membrance to the efficient collection of heavy metals removed from contaminated soils. With the result of this study, it is suggested that the removal efficiency is significantly influenced by applied voltage & current, type of purging solutions, soil pH, permeability and zeta potentials of soil. Although further study should be needed, it is possible to collect removed heavy metals with ion-exchange membrance in cathode compartment.

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Chitosan-g-Poly(4-vinyl pyridine) 공중합체막을 통한 인슐린의 투과 특성 (Permeation Properties of Insulin through Chitosan-g-Poly(4-vinyl pyridine ) Membrane)

  • 김공수;강석호;김수종;임정규
    • 공업화학
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    • 제5권4호
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    • pp.624-629
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    • 1994
  • Chitosan-g-Poly(4-vinyl pyridine)공중합체막을 제조하였으며 Chitosan-g-Poly(4-vinyl pyridine)공중합체막과 아크릴아마이드를 사용하여 glucose oxidase를 포함하는 chitosan/acrylamide 복합막을 제조하였다. Chitosan-g-poly(4-vinyl pyridine)공중합체막의 함수율과 인슐린의 투과량은 용액의 pH가 감소함에 따라 증가하였고, 복합막의 인슐린 투과량은 글루코오스의 농도가 증가할수록 증가하였다.

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티오글리콜산의 랫드 피부에 대한 투과 영향 (Effects of Skin Permeation for Rat of Thioglycolic Acid)

  • 정덕채;오세영;황성규
    • 한국환경보건학회지
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    • 제30권2호
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    • pp.65-70
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    • 2004
  • Hair is based upon the skin which enroll the body of high living animals and have multiple membrane structure. This study were used rats and carried out to find out the effects of commercial permanent wave products to skin which are composed of thioglycolic acid and bases. Results were as follows. Permanent wave penetrated to 3 hours later with steady state in skins and was not significant changeable after 20hr later. In case of neutralizer with thioglycolic acid lag time and permeability coefficient in healthy skin were 3.38hr and 0.96$\mu\textrm{g}$/$\textrm{cm}^2$/hr, in old skin were 3.14hr and 0.l28$\mu\textrm{g}$/$\textrm{cm}^2$/hr, and in wounded skin were 3.08hr and 0.157$\mu\textrm{g}$/$\textrm{cm}^2$/hr. In conclusion, lag time and permeability coefficient in old skin and wounded skin were faster than healthy skin. In vivo which was studied by general time and method of permanent wave. We found out that fine rinkle and rash of skin were changeable in the case of treating with permanent wave drugs than normal skin. Also, permanent wave drugs could induced rash and eruption at the skin by the naked eye.

Pathophysiology and protective approaches of gut injury in critical illness

  • Jung, Chang Yeon;Bae, Jung Min
    • Journal of Yeungnam Medical Science
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    • 제38권1호
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    • pp.27-33
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    • 2021
  • The gut is a complex organ that has played an important role in digestion, absorption, endocrine functions, and immunity. The gut mucosal barriers consist of the immunologic barrier and nonimmunologic barrier. During critical illnesses, the gut is susceptible to injury due to the induction of intestinal hyperpermeability. Gut hyperpermeability and barrier dysfunction may lead to systemic inflammatory response syndrome. Additionally, gut microbiota are altered during critical illnesses. The etiology of such microbiome alterations in critical illnesses is multifactorial. The interaction or systemic host defense modulation between distant organs and the gut microbiome is increasingly studied in disease research. No treatment modality exists to significantly enhance the gut epithelial integrity, permeability, or mucus layer in critically ill patients. However, multiple helpful approaches including clinical and preclinical strategies exist. Enteral nutrition is associated with an increased mucosal barrier in animal and human studies. The trophic effects of enteral nutrition might help to maintain the intestinal physiology, prevent atrophy of gut villi, reduce intestinal permeability, and protect against ischemia-reperfusion injury. The microbiome approach such as the use of probiotics, fecal microbial transplantation, and selective decontamination of the digestive tract has been suggested. However, its evidence does not have a high quality. To promote rapid hypertrophy of the small bowel, various factors have been reported, including the epidermal growth factor, membrane permeant inhibitor of myosin light chain kinase, mucus surrogate, pharmacologic vagus nerve agonist, immune-enhancing diet, and glucagon-like peptide-2 as preclinical strategies. However, the evidence remains unclear.

순수 수소 공급조건에서 정치용 PEMFC MEA와 차량용 MEA 성능비교 (Performance Comparison Between Stationary PEMFC MEA and Automobile MEA under Pure Hydrogen Supply Condition)

  • 오소형;이미화;이학주;김욱원;박정우;박권필
    • Korean Chemical Engineering Research
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    • 제56권4호
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    • pp.469-473
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    • 2018
  • 개질가스를 일반적으로 사용하는 정치용 PEMFC에 순수 수소를 공급했을 때 그 특성을 차량용 막과 전극 합체(MEA)와 비교하였다. 수소 공급량을 변화시키며 anode에서 수소공급량이 전체 성능에 미치는 영향을 비교하였다. 수소를 1.0~1.7 과잉(stoi.)범위에서 공급량을 변화시켰을 때 정치용이나 차량용 모두 OCV에 미치는 영향은 거의 없었다. 0.7 V에서 정치용 MEA의 전류밀도는 차량용보다 약 16% 높았다. 그리고 상대습도를 변화시키며 I-V 성능, 임피던스, LSV를 측정하였다. 상대습도 증가에 따라 OCV와 전해질 막 저항이 모두 감소하였다. 정치용 MEA의 수소투과도가 차량용보다 더 낮아 정치용 MEA의 전해질 막의 내구성이 차량용보다 더 높을 수 있음을 보였다.

최소 기공층 구조가 PES계 정밀여과막 투과 성능에 미치는 영향 (Effect of the Structure of the Smallest Poresize Layer on the Permeability of PES Microfiltration Membranes)

  • 김노원
    • 멤브레인
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    • 제19권1호
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    • pp.25-33
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    • 2009
  • PES/DMF/TSA/PVP 고분자용액을 물에 침지시 시키는 상전이 공정을 통하여 비대칭성이 향상된 PES 멤브레인을 제조하였다. PES (polyethersulfone) 용액에 응고제 (p-toluenesulfonic acid, TSA)와 습윤제 고분자 (polyvinylpyrrolidone, PVP)의 첨가와 습윤 상태에 노출 시간으로 일어나는 멤브레인 표면의 pre-coagulation 현상은 멤브레인의 구조적 특성과 투과량 특성에 있어 중요한 역할을 한다. PES 용액은 폴리에스터 필름에 코팅된 후 약 $72{\sim}144$초 동안 80%의 습도하에서 공기에 노출된 후 응고조에 침지되었다. Capillary flow porometer, FE-SEM과 수투과 평가장치를 통하여 멤브레인의 특성을 살펴보았다. TSA 20 wt%와 PVP 10 wt%가 첨가된 11 wt%의 PES 용액에서 멤브레인 구조의 비대칭성이 크게 향상되었으며 최소 기공충의 두께도 얇아짐을 볼 수 있었다. 그 결과로 수투과량에 큰 증가를 가져옴을 볼 수 있었다.

광촉매 반응과 침지형 정밀여과를 이용한 자연산 유기물의 제거 (Use of a Combined Photocatalysis/Microfiltration System for Natural Organic Matter Removal)

  • 추광호;박경원;김문현
    • 멤브레인
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    • 제14권2호
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    • pp.149-156
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    • 2004
  • 본 연구에서는 광촉매 반응과 막분리 기술을 접목시킨 혼성 고도 정수처리 공정에서 소독 부산물의 전구체로 알려진 자연산 유기물을 효과적으로 제거하고자 하였고 다양한 운전 조건에서 시스템의 성능을 비교 평가하였다. 자연산 유기물은 흡입여과 방식의 분리막과 TiO$_2$ 광촉매를 이용하여 광분해하였을 때 광촉매 투입량의 증가에 따라 반응속도가 증가하였지만 과량의 촉매 주입시에는 반응 속도 향상에 오히려 부정적으로 작용하였다. 자연산 유기물을 보다 효과적으로 제거하기 위해 산화철 주입, TiO$_2$ 표면처리, 분리막 표면코팅을 시도하여 제거특성 및 운전에 따른 막여과 특성을 평가하였다. 산화철 주입은 초기에 흡착작용으로 인해 제거율 증가를 보였으나 반응이 진행됨에 따라 산화철 입자에 의한 광산란으로 광분해 효율이 오히려 감소되었다. 산화철 입자에 의한 광산란을 제어하고자 TiO$_2$ 표면을 광처리와 열처리 방법을 이용해 철을 직접 부착시킨 경우 긍정적인 효과를 얻지 못했다. 그러나 산화철로 막표면을 코팅하여 광산란 효과를 배제시킨 경우에는 향상된 결과를 보였다 막투과 플럭스 15 L/$m^2$-h에서 정밀여과를 수행하였을 때 TiO$_2$나 산화철에 의한 막오염은 거의 일어나지 않았고 안정된 막투과도를 나타내었다.