• 제목/요약/키워드: nano chitosan

검색결과 65건 처리시간 0.024초

Physicochemical and Sensory Properties of Nanopowdered Chitosan-Added Maribo Cheese during Ripening

  • Kim, Hee-Yeon;Jeong, Yu-Tae;Bae, In-Hue;Kwak, Hae-Soo
    • 한국축산식품학회지
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    • 제34권1호
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    • pp.57-64
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    • 2014
  • Nanopowdered chitosan (NPC) has high biological activities, such as blood cholesterol lowering effect and antidiabetic activity. This study is carried out to determine the effects of nano-powdered chitosan-added Maribo cheese (NCMC) for the physicochemical properties and sensory analysis during its ripening at $14^{\circ}C$ for 6 mon. From the results, the moisture and fat levels are not significantly influenced from the addition of chitosan (p>0.05), but ash contents increased with increasing chitosan concentrations and the protein contents decreased with increasing chitosan concentrations. In the short-chain fatty acids analysis during the ripening, the total production is initially 13.79 ppm in 0.2% NCMC and 13.81 ppm in control, and their levels have steadily increased to 59.94 and 53.11 ppm, respectively. For the color levels, the $L^*$ values decreased, while the $a^*$ and $b^*$ values significantly increased during ripening for all samples (p<0.05). In texture analysis, the hardness and gumminess of NCMC significantly decreased as compared to the control during ripening (p<0.05), while the cohesiveness, springiness and chewiness were not significantly different among the treatments (p>0.05). In sensory analysis, the butyric off-flavor and bitterness increased slightly with increasing concentrations of NCMC during ripening. The overall acceptability of 0.2% NCMC held the highest score amongst the samples during the ripening. From the results obtained, the 0.2% NCMC was preferred during the ripening and observed the possibility of functional cheese.

Preparation of a Porous Chitosan/Fibroin-Hydroxyapatite Composite Matrix for Tissue Engineering

  • Kim, Hong-Sung;Kim, Jong-Tae;Jung, Young-Jin;Ryu, Su-Chak;Son, Hong-Joo;Kim, Yong-Gyun
    • Macromolecular Research
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    • 제15권1호
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    • pp.65-73
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    • 2007
  • Chitosan, fibroin, and hydroxyapatite are natural biopolymers and bioceramics that are biocompatible, biodegradable, and resorb able for biomedical applications. The highly porous, chitosan-based, bioceramic hybrid composite, chitosanlfibroin-hydroxyapatite composite, was prepared by a novel method using thermally induced phase separation. The composite had a porosity of more than 94% and exhibited two continuous and different morphologies: an irregularly isotropic pore structure on the surface and a regularly anisotropic multilayered structure in the interior. In addition, the composite was composed of an interconnected open pore structure with a pore size below a few hundred microns. The chemical composition, pore morphology, microstructure, fluid absorptivity, protein permeability, and mechanical strength were investigated according to the composition rate of bioceramics to biopolymers for use in tissue engineering. The incorporation of hydroxyapatite improved the fluid absorptivity, protein permeability, and tenacity of the composite while maintaining high porosity and a suitable microstructure.

단백질 약물 전달을 위한 마이크로/나노 입자의 전기분무 제조법 (Electrospraying of Micro/Nano Particles for Protein Drug Delivery)

  • 유지연;김민영;이종휘
    • 폴리머
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    • 제31권3호
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    • pp.215-220
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    • 2007
  • 전기분무에서의 전기유체 역학적 힘에 의한 표면 에너지의 조절은 간단한 입자 크기 조절, 단분산성, 높은 회수율, 그리고 약한 가공조건과 같은 이점을 제공할 수 있다. 이러한 이점은 단백질 약물전달체 제조에 적절할 것으로 예상되어, 본 연구에서 전기분무법을 이용하여 단백질 약물의 나노포집을 시도하였다. 모델 단백질인 알부민을 단축 혹은 동축 전기분무로 가공하였고 키토산, 폴리카플로락톤(PCL), 폴리 (에틸렌 글리콜) (PEG) 등이 포집물질로 사용되었다. 효율을 최대로 높이기 위해 분무액의 전기전도도, 유속, 전기포텐셜 구배의 거리 등과 같은 가공변수들이 조사되었다. 키토산 시스템에서 입자크기에 대한 공정 변수의 영향은 유속이 늦어질수록, 노즐과 집적부 사이의 거리가 가까울수록 입자 크기가 감소하는 것을 알 수 있었다. PCL 시스템에서는 단축 전기분무의 경우 유속이 늦어질수록, 동축 전기분무의 경우 내부와 외부 물질의 유속비가 클수록 입자 크기가 증가하는 것을 확인할 수 있었다. 전기분무 노즐에서 생성된 초기 입자들은 좁은 입자 크기 분포를 보였으나, 그것들이 집적부에 도달했을 때 입자들이 응집되는 경향이 있었다. 이러한 전기분무법에서 PCL, PEG, 키토산을 사용한 알부민의 효과적인 나노 포집은 12 kV 이상에서 성공적으로 이루어졌다.

케이신 포스포펩티드/키토올리고당 나노 복합체 형성과 특성 연구 (Formation and Characterization of Casein Phosphopeptide/Chitosan Oligosaccharide NanoComplex)

  • 백윤서;하호경;이지홍;이미령;이원재
    • Journal of Dairy Science and Biotechnology
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    • 제36권3호
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    • pp.164-170
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    • 2018
  • 본 연구에서는 CPP와 CSO를 사용하여 약 187~282 nm 크기의 균일한 구형의 나노 복합체를 성공적으로 제조하였다. 나노 복합체는 제조 공정 요인인 CPP 농도와 pH 조절을 통해 입자 크기, 다분산 지수, 그리고 표면 전하와 같은 나노 복합체의 물리화학적 특성을 조절할 수 있음을 확인하였다. 또한 CPP/CSO 나노 복합체의 분말화 공정을 통해 분말화 된 나노 복합체의 식품 적용성을 증진시킬 수 있음을 알 수 있었으며, food-grade 물질인 CPP와 CSO를 사용하여 제조한 나노 복합체는 향후 잠재적인 칼슘 전달체로써 식품 산업에 이용될 수 있을 것으로 기대된다.

Preparation and Characterization of Cisplatin-Incorporated Chitosan Hydrogels, Microparticles, and Nanoparticles

  • Cha, Ju-Eun;Lee, Won-Bum;Park, Chong-Rae;Cho, Yong-Woo;Ahn, Cheol-Hee;Kwon, Ick-Chan
    • Macromolecular Research
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    • 제14권5호
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    • pp.573-578
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    • 2006
  • Three different, polymer-platinum conjugates (hydrogels, microparticles, and nanoparticles) were synthesized by complexation of cis-dichlorodiammineplatinum(II) (cisplatin) with partially succinylated glycol chitbsan (PSGC). Succinic anhydride was used as a linker to introduce cisplatin to glycol chitosan (GC). Succinylation of GC was investigated systematically as a function of the molar ratio of succinic anhydride to glucosamine, the methanol content in the reaction media, and the reaction temperature. By controlling the reaction conditions, water-soluble, partially water-soluble, and hydrogel-forming PSGCs were synthesized, and then conjugated with cisplatin. The complexation of cisplatin with water-soluble PSGC via a ligand exchange reaction of platinum from chloride to the carboxylates induced the formation of nano-sized aggregates in aqueous media. The hydrodynamic diameters of PSGC/cisplatin complex nano-aggregates, as determined by light scattering, were 180-300 nm and the critical aggregation concentrations (CACs), as determined by a fluorescence technique using pyrene as a probe, were $20-30{\mu}g/mL$. The conjugation of cisplatin with partially water-soluble PSGC, i.e., borderline between water-soluble and water-insoluble PSGC, produced micro-sized particles $<500{\mu}m$. Cisplatin-complexed PSGC hydrogels were prepared from water-insoluble PSGCs. All of the cisplatin-incorporated, polymer matrices released platinum in a sustained manner without any significant initial burst, suggesting that they may all be useful as slow release systems for cisplatin. The release rate of platinum increased with the morphology changes from hydrogel through microparticle to nanoparticle systems.

Hydrogel Dressing with a Nano-Formula against Methicillin-Resistant Staphylococcus aureus and Pseudomonas aeruginosa Diabetic Foot Bacteria

  • El-Naggar, Moustafa Y.;Gohar, Yousry M.;Sorour, Magdy A.;Waheeb, Marian G.
    • Journal of Microbiology and Biotechnology
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    • 제26권2호
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    • pp.408-420
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    • 2016
  • This study proposes an alternative approach for the use of chitosan silver-based dressing for the control of foot infection with multidrug-resistant bacteria. Sixty-five bacterial isolates were isolated from 40 diabetic patients. Staphylococcus aureus (37%) and Pseudomonas aeruginosa (18.5%) were the predominant isolates in the ulcer samples. Ten antibiotics were in vitro tested against diabetic foot clinical bacterial isolates. The most resistant S. aureus and P. aeruginosa isolates were then selected for further study. Three chitosan sources were tested individually for chelating silver nanoparticles. Squilla chitosan silver nanoparticles (Sq. Cs-Ag0) showed the maximum activity against the resistant bacteria when mixed with amikacin that showed the maximum synergetic index. This, in turn, resulted in the reduction of the amikacin MIC value by 95%. For evaluation of the effectiveness of the prepared dressing using Artemia salina as the toxicity biomarker, the LC50 was found to be 549.5, 18,000, and 10,000 μg/ml for amikacin, Sq. Cs-Ag0, and dressing matrix, respectively. Loading the formula onto chitosan hydrogel dressing showed promising antibacterial activities, with responsive healing properties for the wounds in normal rats of those diabetic rats (polymicrobial infection). It is quite interesting to note that no emergence of any side effect on either kidney or liver biomedical functions was noticed.

하악 2급 치근 이개부 병소에서 키토산 나노 차폐막을 이용한 치주조직 재생의 임상적 효과에 관한 비교 연구 (A comparative study of the clinical effects of chitosan nanofiber membrane in the treatment of mandibular class II furcation defects)

  • 최한선;정임;김정빈;홍기석;임성빈;정진형
    • Journal of Periodontal and Implant Science
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    • 제35권3호
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    • pp.703-718
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    • 2005
  • The purpose of this study was to evaluate the clinical efficacy of guided tissue regeneration(GTR) technique using chitosan nanofiber membrane and to compare it to the clinical efficacy following GTR using PLA/PLGA(copolymer of polvlactic acid and polylacticglycolic acid) membrane in mandibular class II furcation defects in human. The chitosan nanofiber membranes were applied to the mandibular class II furcation defects of 13 patients(test group) and PLA/PLGA membranes were applied to those of 11 patients(control group). Probing pocket depth, clinical attachment level, gingival recession, plaque index and gingival index were measured at baseline and 3 months postoperatively. Vertical and horizontal furcation defect depth were measured at surgery. Both groups were statistically analyzed by Wilcoxon signed Ranks Test and Mann-Whitney Test using SPSS program. The results were as follows: 1. Probing pocket depth, clinical attachment loss and gingival index were significantly reduced at 3 months postoperatively compared to values of baseline in both groups(p<0.05). 2. Gingival recession and plaque index were not significantly decreased at 3 months postoperatively compared to values of baseline in both groups. 3. No significant difference between two groups could be detected with regard to changes of probing pocket depth, gingival recession, clinical attachment level, plaque index and gingival index at 3 months postoperatively. In conclusion, chitosan nanofiber membrane is effective in the treatment of human mandibular class II furcation defects and a longer period study is needed to fully evaluate the outcomes.

Preparation of Cyclosporin A-loaded Nanoparticles Containing Ethyl Myristate or Chitosan and Pharmacokinetics in Rats

  • Nam, Dae-Sik;;Lee, Woo-Kyoung
    • Journal of Pharmaceutical Investigation
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    • 제37권1호
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    • pp.15-22
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    • 2007
  • An oil-in-water solvent evaporation method was used to prepare the cyclosporin A (CyA)-loaded nanoparticles varying in poly (D,L-lactide-co-glycolide) (PLGA) polymer (RG 502H, RG 503H) and the amount of additive ethyl myristate (EM) or chitosan (CS). The particles were characterized for drug loading and entrapment efficiency by HPLC, surface morphology by scanning electron microscopy, particle size by dynamic light scattering and surface charge by Zetapotential. The results showed drug loadings ranging from 10.9% to 15.8% with high encapsulation efficiency (82.0-97.8%). SEM and DLS studies showed discrete and spherical particles with smooth surfaces and mean size ranging 257.6-721.7 nm. The additive EM or CS did not change the mean sizes of the nanoparticles, whereas by the coating effect of CS, the Zetapotential values of the CS-added nanoparticles were moved to the more positive direction as the amount of CS was increased. From the pharmacokinetic analysis, the nanoparticles formulations showed the higher bioavailability and MRT than $Neoral^{\circledR}$ While little adding effect of EM or CS was detected in pharmacokinetic profile when RG 503H was used as polymer carrier, more noticeable different pharmacokinetic behaviors could be observed in case of RC 502H. EM incorporation was found to elevate the $K_{el}$, whereas CS coating resulted in the decrease of F and $K_{el}$, which seems to be due to the function of CS as a barrier and a mucoadhesive coating.

키토산/피브로인 나노섬유웹 제조와 그 특성화 (Production of Electrospun Chitosan/Fibroin Nano-sized Fiberwebs and Their Characterization)

  • Lee, Jin-Ah;Kim, Dong-Cheul;Joo, Chang-Whan
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2003년도 봄 학술발표회 논문집
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    • pp.179-182
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    • 2003
  • Chitin is the most abundant natural amino polysaccharide and is estimated to be produced annually almost as much as cellulose. It has become of great interest not only as an under utilized resource, but also as a new functional material of high potential in various fields. In addition, chitin and chitosan are recommended as suitable functional materials, because these natural polymers have excellent properties such as biocompatibility, biodegradability, non-toxicity and adsorption properties, etc. (omitted)

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