• Title/Summary/Keyword: Chitosan modified

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Chitosan-Cu-salen/Carbon Nano-Composite Based Electrode for the Enzyme-less Electrochemical Sensing of Hydrogen Peroxide

  • Jirimali, Harishchandra Digambar;Saravanakumar, Duraisamy;Shin, Woonsup
    • Journal of Electrochemical Science and Technology
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    • v.9 no.3
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    • pp.169-175
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    • 2018
  • Cu-Salen complex was prepared and attached into chitosan (Cs) polymer backbone. Nanocomposite of the synthesized polymer was prepared with functionalized carbon nano-particles (Cs-Cu-sal/C) to modify the electrode surface. The surface morphology of (Cs-Cu-sal/C) nanocomposite film showed a homogeneous distribution of carbon nanoparticles within the polymeric matrix. The cyclic voltammogram of the modified electrode exhibited a redox behavior at -0.1 V vs. Ag/AgCl (3 M KCl) in 0.1 M PB (pH 7) and showed an excellent hydrogen peroxide reduction activity. The Cs-Cu-sal/C electrode displays a linear response from $5{\times}10^{-6}$ to $5{\times}10^{-4}M$, with a correlation coefficient of 0.993 and detection limit of $0.9{\mu}M$ (at S/N = 3). The sensitivity of the electrode was found to be $0.356{\mu}A\;{\mu}M^{-1}\;cm^{-2}$.

Tyrosinase-Immobilized Biosensor Based on Ionic Property-Modified MWNTs Prepared by Radiation-Induced Graft Polymerization

  • Ryu, Ha-Na;Choi, Seong-Ho
    • Carbon letters
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    • v.11 no.3
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    • pp.216-223
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    • 2010
  • Two-types of ionically modified multi-walled carbon nanotube (MWNTs) based sensors were developed by radiationinduced graft polymerization using vinyl monomers such as 3-(butyl imidazol)-2-(hydroxyl)propyl methyl methacrylate and 1-[(4-ethenylphenyl)methyl]-3-buthyl-imidazolium chloride with ionic properties, in aqueous solution at room temperature. Subsequently, the tyrosinase-immobilized biosensor was fabricated by a hand-casting of the ionic property-modified MWNTs, tyrosinase, and chitosan solution as a binder onto ITO glass surface. The sensing ranges of the tyrosinase-biosensor for phenol in phosphate buffer solution was in the range of 0.005~0.2 mM. The total phenolic compounds mainly such as caffeine of the tyrosinase-immobilized biosensor for commercial coffee were also determined.

Synthesis and Characterization of N,O-Carboxymethylchitosan Hydrogel Crosslinked by γ-ray Irradiation

  • Gwon, Hui-Jeong;Lim, Youn-Mook;An, Sung-Jun;Youn, Min-Ho;Nho, Young-Chang
    • Journal of Radiation Industry
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    • v.2 no.1
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    • pp.15-19
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    • 2008
  • In order to develop a water-solubility and biocompatibility, chemically modified chitosan, N,O-carboxymethylchitosan (NOCC), was synthesized and the NOCC hydrogels were prepared by using ${\gamma}-ray$ irradiation instead of chemical reagents. The FT-IR spectroscopy, swelling behavior, gel content and mechanical property such as gel strength of the hydrogel were measured. When the NOCC solution concentration was 15 wt% and the dose of irradiation was less than 50 kGy, the NOCC hydrogels had an excellent hydrophilicity and exhibited a good swelling behavior and mechanical properties.

Effect of Chitosan on Major Lipid-Related Parameters in Sera of Rats Fed High Fat Diet (키토산 첨가가 고지방 식이 랫드의 혈청 지질 농도의 변화에 미치는 영향)

  • Hwang, Eui-Kyung
    • Journal of Veterinary Clinics
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    • v.23 no.3
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    • pp.251-257
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    • 2006
  • This study was performed to investigate the growth rate, hematological and serological changes of the rats when they were fed with the high(at diets supplemented with or without chitosan for five weeks. Twenty-four Sprague-Dawley male rats($235.7{\pm}10.7g$ of body weight) were randomly divided into three groups control group(C) and two treatment groups. Rats in the control group were fed with the high-fat diet containing 10% lard, 1% cholesterol and 0.5% sodium cholate(w/w) which was modified from the formula of the American Institute of Nutrition-76(AIN-76) diet. Rats in treatment groups were red with above diet supplemented with 2.5% of chitosan(CS-2.5) or 5.0% chitosan(CS-5) on the weight to weight basis, respectively. The supplementation of chitosan did not induce any significant difference on the final body weight, gain of body weight and amount of feed intake of rats in between control and treatment groups but the feed efficiency of rats in CS-5 was lower than that of rats in C(p<0.05). The hemoglobin concentrations and hematocrit values showed no significant differences among groups. In addition the values of glucose concentration, total protein, albumin, globulin and albumin/globulin(A/G) ratio showed no significant differences among groups. The values of total cholesterol and low density lipoprotein-cholesterol(LDL-C) in sera of rats in CS-5 were lower than those in both C and CS-2.5(p<0.01). The values of high density lipoprotein-cholesterol (HDL-C) in sera of rats in CS-5 were higher than in both in C and CS-2.5(p<0.05). The values of atherogenic index(AI) of rats in CS-5 were the lowest among groups(p<0.01). AI of CS-2.5 were lower than that or C(p<0.05). The values of triglyceride in sera of rats showed no significant differences among groups. The values of AST in sera of rats in CS-2.5 were lower than those in both C and CS-5(p<0.05). However ALT values showed no significant differences among groups. Therefore the supplementation of chitosan to high fat diet reduced effectively the serum lipid levels such as total cholesterol, LDL-C and triglycerides which were regarded as to cause the cardiovascular diseases moreover it elevated effectively HDL-C value which was regarded protect cardiovascular diseases.

Pervaporation separation of MeOH/MTBE mixture through modified chitosan membrane

  • 우동진;남상용;이영무
    • Proceedings of the Membrane Society of Korea Conference
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    • 1996.10a
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    • pp.84-85
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    • 1996
  • 키틴은 자연계에 풍부하게 존재하는 다당류로서 이것을 이용하여 탈아세틸화된 형태인 키토산을 제조하였다. 키토산에는 히드록시기, 아민기 등 친수성 작용기들이 있어서 탈수용 분리막의 재료로서 많은 연구가 진행되어왔다. 함산소연료와 정밀화학제품의 원료로 쓰이는 MTBE(methyl t-butyl ether)는 methanol과 i-butylene을 합성시켜 만드는데 고순도의 MTBE를 얻기위해서는 미반응된 methanol의 분리, 제거가 필수적이다. 이에, methanol이 극성을 띄고 상대적으로 MTBE가 무극성인 것을 이용한 투과증발분리 연구가 진행되고 있다.

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Preparation and Characterization of O-Carboxymethyl Chitosan Ion-complexed Poly(L-Lysine) for Drug and Gene Delivery System (약물 및 유전자 전달체로 응용하기 위한 Poly(L-Lysine)이 결합된 O-Carboxymethyl Chitosan PEG의 제조와 특성)

  • Nam, Joung-Pyo;Kim, Young-Min;Park, Jin-Su;Lee, Eung-Jae;Choi, Chang-Yong;Jang, Mi-Kyeong;Nah, Jae-Woon
    • Applied Chemistry for Engineering
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    • v.21 no.6
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    • pp.643-647
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    • 2010
  • O-carboxymethyl water-soluble chitosan (OCMCh) prepared for enhance the application of chitosan was modified with mthoxy polyethyleneglycol (mPEG) by ion-complex for long circulation in the blood. OCMCh-PEG-PLLs was prepared by forming ion-complex with OCMCh-PEG and Poly(L-Lysine) (PLL) for drug and gene delivery system. The physicochemcal characterisitcs of OCMCh-PEG-PLLs were investigated by FT-IR, $^1H$-NMR. These results showed that CMCh-PEG-PLLs were successfully syntehsized by ion-complex. Particle size distribution and zeta potential of the OCMCh-PEG-PLLs were determined using dynamic light scattering technique. Transmission electron microscopy (TEM) was also used to observe the morphology of the OCMCh-PEG-PLLs. OCMCh-PEG-PLLs have spherical shapes with particle size 290∼390 nm. OCMCh-PEG-PLLs were showed when the feeding amount of mPEG ratio was increased, particle size and zeta potential were decreased. Based on these results, it is possible to introduction of the OCMCh-PEG-PLLs into various biomedical fields such as drug and gene delivery system.

Chitosan-alginate Gel Modified Poly (L-Lactic-co-ε-Caprolactone) (PLCL) as a Scaffold for Cartilage Tissue Engineering (변형된 키토산 알지네이트 겔 poly (L-Lactic-co-ε-Caprolactone) 지지체의 연골 조직 재생 평가)

  • Sutradhar, Bibek Chandra;Hwang, Yawon;Choi, Seokhwa;Kim, Gonhyung
    • Journal of Veterinary Clinics
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    • v.32 no.3
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    • pp.224-230
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    • 2015
  • This study was designed in the fabricated poly (L-Lactic-co-${\varepsilon}$-Caprolactone) (PLCL) scaffold using chitosan-alginate hydrogel, which would be more suitable to maintain the biological and physiological functions continuing three dimensional spatial organizations for chondrocytes. As a scaffold, hydrogels alone is weak at endure complex loading within the body. In this study, we made cell hybrid scaffold constructs with poly (L-Lactic-co-${\varepsilon}$-Caprolactone) (PLCL) scaffold and hydrogels to make a three-dimensional composition of cells and extracellular matrix, which would be a mimic of a native cartilage. Using a particle leaching technique with NaCl, we fabricated a highly-elastic scaffold from PLCL with 85% porosity and $300-500{\mu}m$ pore size. A mixture of bovine chondrocytes and chitosan-alginate gel was seeded and compared with alginate as a control on the PLCL scaffold. The cell maturation, proliferation, extracellular matrix synthesis, glycosaminoglycans (sGAG) production and collagen type-II expressions were better in chondrocytes seeded in chitosan-alginate hydrogel than in alginate only. These results indicate that chondrocytes with chitosan-alginate gel on PLCL scaffolds provide an appropriate biomimetic environment for cell proliferation and matrix synthesis, which could successfully be used for cartilage repair and regeneration.

Preparation and Characterization of Lithocholic Acid Conjugated Chitosan Oligosaccharide Nanoparticles for Hydrophobic Anticancer Agent Carriers (소수성 항암제의 전달체로 응용하기 위한 리소콜릭산이 결합된 키토산 나노입자의 제조와 특성)

  • Park, Jun-Kyu;Kim, Dong-Gon;Choi, Chang-Yong;Jeong, Young-Il;Kim, Myung-Yul;Jang, Mi-Kyeong;Nah, Jae-Woon
    • Polymer(Korea)
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    • v.32 no.3
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    • pp.263-269
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    • 2008
  • To develop carriers of hydrophobic anticancer agents based on chitosan, chitosan oligosaccharide lactate (COS) was chemically modified with lithocholic acid (LA) which is one of the bile acids as a hydrophobic group. The physicochemical properties of the lithocholic acid conjugated chitosan nanoparticles (COS-LA) were investigated using $^1H$-NMR spectroscopy, dynamic light scattering (DLS) and spectrofluorophotometer. COS-LA-paclitaxel (CLs-Tx) nanoparticles loading paclitaxel as an anticancer agent were prepared by a dialysis method and its loading efficiency was measured through HPLC. On the basis of DLS results, the estimated particle sizes of CLs-Tx were around 300 nm. Also, the critical micelle concentration (CMC) was proven to be dependent on the degree of substitution of lithocholic acid. It showed that the CLs-Tx has the superior potential for the application as a paclitaxel carrier.

Electrochemistry of Hemoglobin in the Chitosan and TiO2 Nanoparticles Composite Film Modified Carbon Ionic Liquid Electrode and Its Electrocatalysis

  • Sun, Wei;Li, Xiaoqing;Liu, Shufeng;Jiao, Kui
    • Bulletin of the Korean Chemical Society
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    • v.30 no.3
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    • pp.582-588
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    • 2009
  • Direct electron transfer of hemoglobin (Hb) in the chitosan (CTS) and $TiO_2$ nanoparticles (nano-$TiO_2$) composite films was achieved by using a room temperature ionic liquid of 1-butyl-3-methylimidazolium hexafluorophosphate ($BMIMPF_6$) modified carbon paste electrode (CILE) as the basal electrode. UV-Vis and FT-IR spectroscopy indicated that Hb in the film retained the native structure. Electrochemical investigation indicated that a pair of well-defined quasi-reversible redox peaks of Hb heme Fe(III)/Fe(II) was obtained with the formal potential located at -0.340 V (νs. SCE) in pH 7.0 phosphate buffer solution (PBS). The electrochemical parameters such as the electron transfer coefficient (α), the electron transfer number (n) and the standard electron transfer rate constant ($k_s$) were got as 0.422, 0.93 and 0.117 $s^{-1}$, respectively. The fabricated CTS/nano-$TiO_2$/Hb/CILE showed good electrocatalytic ability to the reduction of trichloroacetic acid (TCA) and hydrogen peroxide ($H_2O_2$), which exhibited a potential application in fabricating a new kind of third generation biosensor.

Antibacterial Effect of Chitosan-Modified Fe3O4 Nanozymes on Acinetobacter baumannii

  • Wang, Wenjun;Wu, ziman;Shi, peiru;Wu, pinyun;Qin, peng;Yu, lin
    • Journal of Microbiology and Biotechnology
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    • v.32 no.2
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    • pp.263-267
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    • 2022
  • The aim of this study was to determine whether the antibacterial activity of chitosan-modified Fe3O4 (CS@Fe3O4) nanomaterials against Acinetobacter baumannii (A. baumannii) is mediated through changes in biofilm formation and reactive oxygen species (ROS) production. For this purpose, the broth dilution method was used to examine the effect of CS@Fe3O4 nanoparticles on bacterial growth. The effects of CS@Fe3O4 nanoparticles on biofilm formation were measured using a semi-quantitative crystal violet staining assay. In addition, a bacterial ROS detection kit was used to detect the production of ROS in bacteria. The results showed that CS@Fe3O4 nanoparticles had a significant inhibitory effect on the colony growth and biofilm formation of drug-resistant A. baumannii (p < 0.05). The ROS stress assay revealed significantly higher ROS levels in A. baumannii subjected to CS@Fe3O4 nanoparticle treatment than the control group (p < 0.05). Thus, we demonstrated for the first time that CS@Fe3O4 nanoparticles had an inhibitory effect on A. baumannii in vitro, and that the antibacterial effect of CS@Fe3O4 nanoparticles on drug-resistant A. baumannii was more significant than on drug-sensitive bacteria. Our findings suggest that the antibacterial mechanism of CS@Fe3O4 nanoparticles is mediated through inhibition of biofilm formation in drug-resistant bacteria, as well as stimulation of A. baumannii to produce ROS. In summary, our data indicate that CS@Fe3O4 nanoparticles could be used to treat infections caused by drug-resistant A. baumannii.