• Title/Summary/Keyword: biodegradable polyester

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Experimental Evaluation of Algin-coated Vascular Grafts in Dogs (잡견에서의 알진 코팅 인조혈관 삽입실험)

  • 김원곤
    • Journal of Chest Surgery
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    • v.28 no.6
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    • pp.557-564
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    • 1995
  • Microvel knitted double velour vascular grafts coated with biodegradable algin were evaluated in the canine experimental model as a new biologically coated Dacron graft. Three series of implantations were conducted involving the insertion of 6 mm diameter grafts in the abdominal aortae of mongrel dogs. The first series used the regular Microvel vascular grafts coated with algin,whereas the second and third series used Hemashield [collagen-coated grafts and the regular Microvel grafts with preclotting,respectively as control groups. Each series involved the implantation of one prosthesis for each of 2 preselected periods,namely 3 months and 6 months. In addition,algin-impregnated grafts were implanted for 4 hours,72 hours,2 weeks,and 4 weeks. All grafts were patent when the animals were sacrificed at intervals ranging from 4 hours to 6 months. Histological examinations revealed no obvious or significant differences in the healing characteristics of the algin-coated grafts and the control grafts after 3 months and 6 months of implantation. Endothelial cell-like cells were present on the midsegments of all grafts explanted from animals sacrificed after 3 months and 6 months,except a suspicious finding in the 3 month-implantation animal of a preclotted graft. With special stains,the algin became invisible between the polyester filaments during the first 3 months of implantation. This study has demonstrated that the use of a biodegradable algin coating is a feasible approach as biological sealants for textile arterial prostheses.

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Processing and mechanical property evaluation of maize fiber reinforced green composites

  • Dauda, Mohammed;Yoshiba, Masayuki;Miura, Kazuhiro;Takahashi, Satoru
    • Advanced Composite Materials
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    • v.16 no.4
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    • pp.335-347
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    • 2007
  • Green composites composed of long maize fibers and poly $\varepsilon$-caprolactone (PCL) biodegradable polyester matrix were manufactured by the thermo-mechanical processing termed as 'Sequential Molding and Forming Process' that was developed previously by the authors' research group. A variety of processing parameters such as fiber area fraction, molding temperature and forming pressure were systematically controlled and their influence on the tensile properties was investigated. It was revealed that both tensile strength and elastic modulus of the composites increase steadily depending on the increase in fiber area fraction, suggesting a general conformity to the rule of mixtures (ROM), particularly up to 55% fiber area fraction. The improvement in tensile properties was found to be closely related to the good interfacial adhesion between the fiber and polymer matrix, and was observed to be more pronounced under the optimum processing condition of $130^{\circ}C$ molding temperature and 10 MPa forming pressure. However, processing out of the optimum condition results in a deterioration in properties, mostly fiber and/or matrix degradation together with their interfacial defect as a consequence of the thermal or mechanical damages. On the basis of microstructural observation, the cause of strength degradation and its countermeasure to provide a feasible composite design are discussed in relation to the optimized process conditions.

Structure and Characteristics of Biodegradable Polyester from Actinobacillus sp. EL-9 (Actinobacillus sp. EL-9로부터 생산된 생분해성 폴리에스터의 구조 및 특성)

  • Son, Hong-Ju;Lee, Gun;Kim, Geun-Ki;Kim, Han-Soo;Kim, Yong-Kyun;Lee, Sang-Jun
    • Journal of Life Science
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    • v.8 no.5
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    • pp.526-531
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    • 1998
  • In this study, the composition and characteristics of poly-$\beta$-hydroxybutyrate (PHB) biosynthesized by Actinobacillus sp. EL-9 are investigated. PHB produced by Actinobacillus sp. EL-9 was identified as the homopolymer of 3-hydroxy-butyric acid (PHB) by infrared spectroscopy and nuclear magnetic resonance spectroscopy analysis. The melting tem-perature (T$_{m}$), and crystallization temperature(T$_{c}$) of PHB was 169.7$^{\circ}C$ and 69.13$^{\circ}C$, respectively. The viscosity on he basis of Brookfield viscometer was 6.01 ㎗/g. The viscosity-average molecular weight estimated by Mark-Ho-wink-Sakurada equation was 1.08$\times$10$^{6}$ ($\pm$3,000).00).

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Nanofabrication of Microbial Polyester by Electrospinning Promotes Cell Attachment

  • Lee, Ik-Sang;Kwon, Oh-Hyeong;Wan Meng;Kang, Inn-Kyu;Yoshihiro Ito
    • Macromolecular Research
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    • v.12 no.4
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    • pp.374-378
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    • 2004
  • The biodegradable and biocompatible poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV), a copolymer of microbial polyester, was fabricated as nanofibrous mats by electrospinning. Image analysis of the electrospun nanofibers fabricated from a 2 wt% 2,2,2-trifluoroethanol solution revealed a unimodal distribution pattern of fiber diameters with an observed average diameter of ca. 185 nm. The fiber diameter of electrospun fabrics could be controlled by adjusting the electro spinning parameters, including the solvent composition, concentration, applied voltage, and tip-to-collector distance. Chondrocytes derived from rabbit ear were cultured on a PHBV cast film and an electrospun PHBV nano-fibrous mat. After incubation for 2 h, the percentages of attached chondrocytes on the surfaces of the flat PHBV film and the PHBV nanofibrous mat were 19.0 and 30.1 %, respectively. On the surface of the electrospun PHBV fabric, more chondrocytes were attached and appeared to have a much greater spreaded morphology than did that of the flat PHBV cast film in the early culture stage. The electro spun PHBV nanofabric provides an attractive structure for the attachment and growth of chondrocytes as cell culture surfaces for tissue engineering.

The applicable evaluation of biodegradable polymer coated-mulching paper for afforestation seedlings (생분해성 고분자 코팅 조림묘목용 mulching mat 원지의 적용성 평가)

  • Lee, Geum-Ja;Yoo, Yeong-Jeong;Ko, Seung-Tae;Kim, Hyoung-Jin
    • Journal of Korea Technical Association of The Pulp and Paper Industry
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    • v.42 no.1
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    • pp.54-63
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    • 2010
  • Recently, as the function of largest supplier of biomass for "low carbon green growth", the necessity for systematic management of afforestation areas is emphasizing. The forestation of seedling, besides the afforestation cost itself, is required some additional follow-up management costs, like mowing and fertilizing of forestation area, and removal of bindweed. The mulching mat for afforestation seedlings is available for rooting of little seedlings as well as initial forestation expenses. Mulching technique is also used to control soil temperature and moisture by covering the surface of ground. In this study, the paper based-mulching film coated with biodegradable polymer and functional additive was specially produced using laboratory bar coater, and analyzed for its degradable behavior. Coating colors were prepared by dissolving PE (polyester) 80 % and PLA(polylactic acid) 20 % in chloroform and finally applied to handsheet prepared by preceding study conditions. Base paper and polymer-coated paper were artificially aged by 2 kinds of degradation methods, which are soil degradation by microorganism and light degradation by 257 nm UV wavelengths. Strength property, oxidation index and morphological property were evaluated by reduction rates of tensile strength, FTIR spectra ratio of carboxyl and carbonyl group and SEM micrograph. As these results, polymer coated-paper was superior to base paper in degradation behaviors, having results with lower reduction rate of strength properties.

Study on the Biodegradable Aliphatic Polyester(V): Thermal and Mechanical Properties of Copolyesterethylene/LDPE Blend (생분해성 지방족 폴리에스테르에 관한 연구(V) : Copolyesterethylene/LDPE 블렌드의 열적 성질 및 기계적 성질)

  • Park, Tae-Wook;Kang, Bye-Jung;Kim, Yong-Joo;Lee, Chi-Giu
    • Applied Chemistry for Engineering
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    • v.5 no.6
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    • pp.1068-1077
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    • 1994
  • Blend samples of biodegradable copolyesterethylene(CPEE) with LDPE were prepared by melt-mixing through 0 to 100% per 10% interval for studying of common use of biodegradable polymer. Miscibility behavior of blend samples has been studied by observing the melting temperature change, melting enthalpy, cold crystallization temperature and crystallization enthalpy using differential scanning calorimetry. It was shown that 10~30% blend composition of CPEE had the partial miscibility from the results of thermal analysis. Valuable compatibility has been observed in all blend composition except the samples of 30~80% CPEE component from results of mechanical properties. Morphology of blends has been observed with scanning electron microscopy. Biodegrability of CPEE/LDPE blends has been evaluated by measuring the change of weight after the inoculation with specific microorganism.

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Study on Biodegradable Polyurethane Foam for Non-lethal Weapon (비 살상 무기 개발을 위한 생분해성 발포 폴리우레탄에 대한 연구)

  • Lee, Hyang Moo;Kim, Young Hyun;Kim, Kyung Won;Cheong, In Woo
    • Journal of Adhesion and Interface
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    • v.17 no.1
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    • pp.21-28
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    • 2016
  • Foam-type biodegradable polyurethane adhesives were developed as a non-lethal weapon against illegal fishing boats. The adhesives were prepared from a hardener of polymeric methylene diphenyl diisocyanate (MDI) and a base composed of polyester and/or polyether polyols. In order to accelerate biodegradability, starch, dextrin, and amylase were added into the base, and which present about 34% degradability within 4 weeks confirmed by OECD 301C method. For proper mixing and corresponding prompt foam reaction, viscosities of hardener and base compositions were investigated in the temperature ranges from 0 to $50^{\circ}C$. For fast completion of the foam forming and corresponding adhesion, rising time was recorded in the same temperature range, and the rising time of the adhesive was varied within around 1 minute. T-peel adhesion tests with cotton fabrics were performed which showed 20.78 N/cm and 11.95 N/cm as the maximum and the average values, respectively.

Novel Biodegradable Polyester Based on Saccharides (사카라이드로부터 제조한 새로운 생분해성 폴리에스테르)

  • Joo, Sang-Gee;Park, Chong-Rae
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.301-302
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    • 2003
  • Recently, synthetic polymers containing units of carbohydrate derivatives with pendatnt functional groups have been much studied. The polymers should be able to be used drug carriers and scaffold for tissue engineering, because of their nontoxicity, biocompatibility, and biodegradability.$\^$1-6/ During the last three decades, various polyfunctional polymers, e.g. polyhydroxypolyamides and polyesteramides, based on carbohydrates have been reported and synthesized by condensation polymerization between sugar derivative and diamines, although it could be done via complicated reaction routes going through protecting.$\^$1-6/ (omitted)

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Production System for Biodegradable Polyester Polyhydroxybutyrate by Corynebacterium glutamicum

  • Jo, Sung-Jin;Ooi, Toshihiko;Taguchi, Seiichi
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.352-352
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    • 2006
  • Corynebacterium glutamicum, which is well known as an amino acid fermentation bacterium, has been used as a producer of poly(3-hydroxybutyrate) [P(3HB)]. P(3HB) was synthesized in recombinant C. glutamicum harboring the expression plasmid vector with a strong promoter for cell surface protein gene derived from C. glutamicum and P(3HB) biosynthetic gene operon derived from Ralstonia eutropha. The expression of P(3HB) synthase gene was detected by enzyme activity assay. Intracellular P(3HB) was microscopically observed as inclusion granules and its content was calculated to be 22.5 % (w/w) with molecular weight of $2.1{\times}10^{5}$ and polydispersity of 1.63.

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Synthesis and Physical Properties of New Biodegradable Polyester-Polypeptide Copolymer

  • Yong Kiel Sung;Chu
    • Journal of Biomedical Engineering Research
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    • v.13 no.2
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    • pp.147-154
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    • 1992
  • Poly (glycolic aclu-co-glycine-L-lactic aclu) has been prepared by rlng opening polymerlzation. The monomer 6-methyl morpholine-2, 5-dlone was synthe-slzed by bromoproplonylation of 2 bromopropionyl bromide with glycine. Glycolide and 6-methyl morpholine-2, 5-dione have been used as starling materials for polydepsipeptides. The synthesized copolymers have been Identlrled by NMR and FT-lR spectrophotometer. The Tg value of poly(glycollc aclu-co glycine-L-tactic acld ) Is In creased with increasing mole fraction of 6-methylmorpholine-2, 5-dlone(60-$84^{\circ}C$). The glass trasltion temperature of poly(glycolic acid-co-glycine-L-lactic-acid) (62-$86^{\circ}C$) is lower than that of poly (L-lactic acrid-co-glycine-L-lactic acid ). The thermal degradation of poly( L-lactic acid-co- glycine-L-lactic acid ) Is decreased with increasing mole fraction of L-lactide. The thermal degrada pion of poly(glycolic acrid-co-91ycine-L-lactic aclu ) is increased with increasing mole Fraction of glycolide.

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