• 제목/요약/키워드: Polyelectrolyte Complex

검색결과 39건 처리시간 0.209초

Dual pH sensitive polyelectrolyte complex membranes composed of chitosan and poly(acrylic acid)

  • 박호범;남상용;이영무
    • 한국막학회:학술대회논문집
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    • 한국막학회 1996년도 추계 총회 및 학술발표회
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    • pp.80-81
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    • 1996
  • 일반적으로 고분자전해질은 고유의 독특한 특성으로 고분자 분리막, 이온교환수지, 의료용고분자등에 널리 응용이 되고 있다. 이러한 고분자전해질은 음이온성과 양이온성이 있으며, 그 이온적성질으로 인하여 반대의 전하를 띄는 고분자전해질들끼리 결합하는 성질을 가지고 있다. 이러한 고분자전해질 착체는 고분자전해질과는 또 다른 고유한 특성을 나타내고 있으며, 특히 고분자분리막과 의료용재료 분야에 응용가능성이 큰 물질이다. 특히 양이온성과 음이온성을 동시에 보유하고 있는 구조적 특성에 의하여 산성과 염기성 모두에서 감응성을 나타낼 수 있다. 일반적으로 고분자 겔의 경우 산성 또는 염기성 영역에서 해리되는 특성에 의하여 pH 감응성을 나타내지만 한쪽 영역에서만 특성을 나타내고 있다. 본 실험에서는 키토산과 폴리아크릴산으로 제조된 고분자전해질착체를 이용하여 pH변화에 따른 함수거동을 관찰함으로써 양쪽의 pH 감응성을 고찰해보고자 하였다.

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Complexation of Cadmium(II) with Soil Fulvic Acid

  • Me Hae Lee;Se Young Choi;Hichung Moon
    • Bulletin of the Korean Chemical Society
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    • 제14권4호
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    • pp.453-457
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    • 1993
  • Cadmium(II) complexation by a well characterized soil fulvic acid (FA) from the Okchun Metamorphic Belt were studied at pH of 6.0 in 0.1 M $NaClO_4$ using the ultrafiltration technique. The conditional stability constants thus obtained were log K= 3.90${\pm}$0.15 and 3.99${\pm}$0.12 $L{\cdot}mol^{-1}$ at fulvic acid concentrations of 101 and 226 mg${\cdot}L^{-1}$ respectively. When free cadmium ion concentration was measured directly using an ion selective electrode, log K of 4.12${\pm}$0.03 $L{\cdot}mol^{-1}$ was obtained. These results show that fulvic acid forms predominately 1 : 1 complex with $Cd^{2+}$ ions. The maximum binding ability of this polyelectrolyte material was 0.886 mmol Cd/g FA. The average gram formula weight of fulvic acid was estimated to be 1130 daltons.

전자선 조사를 이용한 히알루론산의 특성 조절 (Modulation of Hyaluronic Acid Properties by Electron Beam Irradiation)

  • 신영민;김우진;김용수;조선영;박종석;권희정;임윤묵;노영창
    • 방사선산업학회지
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    • 제5권2호
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    • pp.159-164
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    • 2011
  • A variety of natural polymers have been used as tissue engineering scaffolds, drug delivery system, and cosmetic materials due to their higher biocompatibility and water uptake. As a major component of extracellular matrix, hyaluronic acid consisting of D-glucuronic acid and N-acetylglucosamine has been popularly used as a hydrogel material. Even though it has good properties to be used in the tissue engineering and cosmetic industry, its higher viscosity has limited a potential use in a variety of applications; only low content should be applied in preparing above products. In the present study, we investigated the effect of electron beam irradiation on the properties of hyaluronic acid. Hyaluronic acid paste containing low contents of water changed to solution after electron beam irradiation ranging from 1 to 10 kGy, which didn't exhibit any alteration of surface properties and morphological change after freeze-drying. However, its viscosity was significantly decreased as absorbed dose increased, which was approximately one by hundred in comparison with the viscosity of original hyaluronic acid solution with same concentration. In addition, it can still interact with positive charged chitosan generating polyelectrolyte complex. Therefore, only viscosity was decreased after electron beam irradiation, whereas other properties of hyaluronic acid maintained. Consequently, these hyaluronic acids with lower viscosities can be used in a variety of applications in tissue engineering, drug delivery, and cosmetic industry.

Polyelectrolyte-Metal(II) 이온의 착물화 (제 3 보). Iron(II), Cobalt(II) Nickel(II) 및 Copper(II)와 Branched Poly(ethylene imine) (BPEI)간의 착물생성 (Complexation of Polyelectroyte-Metal(II) Ion. III. The Complex Formation of Iron(II), Cobalt(II), Nickel(II) and Copper(II) with Branched Poly(ethylene imine) (BPEI) in Aqueous Solution)

  • 김동수;조태섭
    • 대한화학회지
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    • 제30권5호
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    • pp.456-464
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    • 1986
  • branched poly(ethylene imine) (BPEI)와 2가 전이금속인 Fe(II), Co(II), Ni(II) 및 Cu(II)간의 착물생성을 가시선 흡수 및 30${\circ}$, 0.1M KCl수용액 중에서 pH적정법으로 연구하였다. M(II)-BPEI착물의 안정도 상수는 M(II)-BPEI착물의 안정도 상수는 Gergor등에 의해 수정된 Bjerrum법으로 계산하였다. M(II)-BPEI착물의 생성 곡선으로 부터 ethylene imine group이 Fe(II)이온에 네자리, Co(II), Ni(II) 및 Cu(II) 이온에 각각 두 자리 배위된 착물이 생성됨을 알 수 있었다. Cu(II)-BPEI착물의 경우 pH 3.4~3.8을 기준으로 산성도가 감소 또는 증가함에 따라 최대 흡광도(${\lambda}_{max}$)는 장파장 쪽으로 이동하고, 흡광도는 pH증가에 따라 감소하였다. 총괄 안정도 상수(log $K_2$)는 Co(II) < Cu(II) < Ni(II) < Fe(II)순으로 증가하였다.

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Neuronal Differentiation of PC12 Cells Cultured on Growth Factor-Loaded Nanoparticles Coated on PLGA Microspheres

  • Park, Keun-Hong;Kim, Hye-Min;Na, Kun
    • Journal of Microbiology and Biotechnology
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    • 제19권11호
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    • pp.1490-1495
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    • 2009
  • The development of nanotechnology has penetrated the fields of biology and medicine, resulting in remarkable applications for tissue regeneration. In order to apply this technology to tissue engineering, we have developed nano-scaled 3D scaffolds consisting of growth factor-loaded heparin/poly(l-lysine) nanoparticles (NPs) attached to the surface of polymeric micro spheres via polyionic complex methods. Growth factor-loaded NPs were simply produced as polyelectrolyte complexes with diameters of 100-200 nm. They were then coated onto positively charged poly(lactic-co-glycolic acid) (PLGA) pretreated with polyethyleneimine to enable cell adhesion, proliferation, and stimulation of neurite outgrowth. Propidium iodide staining and $\beta$-tubulin analysis revealed that neuronal PC12 cells proliferated extensively, expressed significant amounts of b-tubulin, and showed well-structured neurite outgrowth on polymeric microspheres by stimulation with growth factors. These results suggest that cellular adhesion and biological functionality on prepared PLGA microspheres enabled terminal differentiation of neuronal cells.

Low Molecular Weight PEI Conjugated Pluronic Copolymer: Useful Additive for Enhancing Gene Transfection Efficiency

  • Cho Kyung-Chul;Choi Seung-Ho;Park Tae-Gwan
    • Macromolecular Research
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    • 제14권3호
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    • pp.348-353
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    • 2006
  • For enhancing the gene delivery efficiency of polyplexes, a new formulation was developed using PEI conjugated Pluronic F127 copolymer as an effective additive. Low molecular weight, branched polyethylenimine Mw 600 (LMW BPEI 600) was conjugated to the terminal end of Pluronic F127. The PEI-modified Pluronic copolymers formed a micellar structure in aqueous solution, similar to that of unmodified Pluronic copolymer. PEI modification of Pluronic copolymer increased the size of micelles while concomitantly raising the critical micelle concentration (CMC). The PEI-modified Pluronic copolymer was used as a micellar additive to enhance the gene transfection efficiency of pre-formulated polyelectrolyte complex nanoparticles composed of luciferase plasmid DNA and branched PEI Mw 25k (BPEI 25k) or polylysine Mw 39k (PLL 39k). The luciferase gene expression levels were significantly enhanced by the addition of the BPEI-modified Pluronic copolymer for the two formulations of BPEl and PLL polyplexes. The results indicated that the BPEI-modified Pluronic copolymer micelles ionically interacted on the surface of DNA/BPEI (PLL) polyplexes which might facilitate cellular uptake process.

고분자-계면활성제 혼합물에 의한 마찰저항 감소연구 (A Study of Drag Reduction by Polymer-Surfactant Mixture System)

  • 김정태;김철암;최형진;김종보;윤형기;박성룡
    • 한국재료학회지
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    • 제8권2호
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    • pp.135-140
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    • 1998
  • 본 연구에서는 회전 원판 장치에 고분자-계면활성제의 혼합체를 첨가제로 사용하여 난류 유동장에서의 마찰저항 감소효과에 대해서 조사 연구하였다. 세가지의 분자량이 다른 PAA를 마찰저항 감소효과에 영향을 줄 수 있는 여러 인자들에 대헤서 살펴 보았다. 특히 이 연구에서는 이온성 고분자와 계면활성제의복합체가 마찰저항 감소현상에 어떠한 영향을 미치는 지에 대해서 연구하였다. 계면활성제와 고분자첨가제 사이의 형태학적 차이점에 특별한 관심을 가지고 실험을 하였으며 이온성 고분자의 pH에 대한 영향에 대해서도 조사하였다. 고분자와 계면활성제간의 복합체는 거대한 전해질과 같은 거동을 보이며 계면활성제가 고분자의 형태를 변화시켜 고분자의 크기를 확대시킨다. 따라서 이러한 복합체는 단일 고분자계와 비교해서 수력학적부피, 관성반경, 점도등의 값이 크게 나타나며 이렇게 팽창된 고분자는 난류 유동장에서의 마찰저항 감소효율을 증가시킨다.

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전해질 고분자 코팅 표면을 이용한 세포칩 제작 (Fabrication of Cell Chip through Eco-friendly Process)

  • 정헌호;송환문;이창수
    • 청정기술
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    • 제17권1호
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    • pp.25-30
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    • 2011
  • 본 연구 논문은 수용액 기반의 청정 표면 개질 기술을 이용하여 세포칩을 제작하는 방법에 관한 것이다. 세포칩의 활용범위는 유전학, 의생물학, 세포생물학 등과 같은 기초학문과 더불어 암 진단 및 치료에 대한 유용한 도구로 응용 가능성을 가지게 된다. 기존의 세포 칩 제작을 위해서는 다량의 유기용매의 사용, 반도체 공정의 복잡성, 고가의 장비 등을 사용함으로 인해 경제적 손실과 환경적 악영향을 주었다. 본 연구에서는 수용액 기반의 청정 표면 개질 기술과 마이크로 컨택트 프린팅 방법을 이용한 세포 패터닝 기술을 융합하여 매우 손쉬운 세포 칩 구현을 하는 기반기술을 제시하였다. 이 세포칩을 이용하여 암세포와 정상세포간의 세포표면에서 발현되는 다양한 탄수화물 및 그의 유도체의 발현양의 차이를 분석할 수 있었다. 이를 바탕으로 새로운 암진단 기술 및 기초 의공학 기술에 활용하고자 한다.

Experimental design approach for ultra-fast nickel removal by novel bio-nanocomposite material

  • Ince, Olcay K.;Aydogdu, Burcu;Alp, Hevidar;Ince, Muharrem
    • Advances in nano research
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    • 제10권1호
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    • pp.77-90
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    • 2021
  • In the present study, novel chitosan coated magnetic magnetite (Fe3O4) nanoparticles were successfully biosynthesized from mushroom, Agaricus campestris, extract. The obtained bio-nanocomposite material was used to investigate ultra-fast and highly efficient for removal of Ni2+ ions in a fixed-bed column. Chitosan was treated as polyelectrolyte complex with Fe3O4 nanoparticles and a Fungal Bio-Nanocomposite Material (FBNM) was derived. The FBNM was characterized by using X-Ray Diffractometer (XRD), Scanning Electron Microscopy-Energy Dispersive X-Ray Spectroscopy (SEM-EDS), Fourier Transform Infrared spectra (FTIR) and Thermogravimetric Analysis (TGA) techniques and under varied experimental conditions. The influence of some important operating conditions including pH, flow rate and initial Ni2+ concentration on the uptake of Ni2+ solution was also optimized using a synthetic water sample. A Central Composite Design (CCD) combined with Response Surface Modeling (RSM) was carried out to maximize Ni2+ removal using FBNM for adsorption process. A regression model was derived using CCD to predict the responses and analysis of variance (ANOVA) and lack of fit test was used to check model adequacy. It was observed that the quadratic model, which was controlled and proposed, was originated from experimental design data. The FBNM maximum adsorption capacity was determined as 59.8 mg g-1. Finally, developed method was applied to soft drinks to determine Ni2+ levels. Reusability of FBNM was tested, and the adsorption and desorption capacities were not affected after eight cycles. The paper suggests that the FBNM is a promising recyclable nanoadsorbent for the removal of Ni2+ from various soft drinks.