• 제목/요약/키워드: lactide

검색결과 277건 처리시간 0.029초

토끼 두개골 결손부의 골재생에 대한 poly(lactide-co-glycolide) (PLGA) 의 영향 (Effect of poly(lactide-co-glycolide) (PLGA) on bone regeneration in rabbit calvaria)

  • 박재영;황우진;정성념;김윤상;피성희;유형근;신형식
    • Journal of Periodontal and Implant Science
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    • 제39권2호
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    • pp.167-176
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    • 2009
  • Purpose: The purpose of this study is to histologically and histomorphometrically evaluate the effect of PLGA on bone regeneration compared with bone graft material. Methods: The experimental study was conducted in 10 rabbits with 2 different healing periods of 2 and 4 weeks. Following surgical exposure of the calvarium, 4 circular bone defects with a diameter of 4.6mm were formed. Rabbits were divided into control group, test groups I, and II. 10 defects assigned to the test group Ⅰ were grafted with Nu-oss and other 10 defects assigned to the test group II were grafted with PLGA. The rest of the defects were in the negative control group. At 2nd and 4th week after surgery, 10 rabbits were sacrificed through intracardiac perfusion and then specimens were obtained. Histological analysis was performed following staining with trichorme and transversal sectioning of the calvarial bone. Results: A group which used PLGA showed tissue reactions characterized by severe inflammation, rather than distinctive new bone formation. Conclusions: The present experimental investigations have failed to prove any beneficial effects of PLGA. PLGA used in this study exhibited foreign body reactions and a less favorable pattern of new bone formation in comparison to control group. Conclusion: PLGA did not function as scaffold. Further investigations of many types of micro PLGA that could improve its potential in GBR procedures are needed.

생분해성 고분자 코팅이 담관용 마그네슘 합금 스텐트의 분해 속도와 기계적 물성에 미치는 영향 (Effect of Biodegradable Polymer Coating on the Corrosion Rates and Mechanical Properties of Biliary Magnesium Alloy Stents)

  • 김현욱;이우일;송기창
    • Korean Chemical Engineering Research
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    • 제58권1호
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    • pp.36-43
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    • 2020
  • 생분해성 금속인 마그네슘 합금 와이어를 이용하여 담관용 스텐트를 제작하였다. 생체 내에서 마그네슘 합금의 문제점인 빠른 분해 및 부식을 제어하기 위하여 마그네슘 합금 와이어를 생분해성 고분자인 polycaprolactone (PCL), poly(propylene carbonate) (PPC), poly(L-lactic acid) (PLLA), poly(D,L-lactide-co-glycolide) (PLGA) 등으로 코팅하였다. 표면분해가 이루어지는 고분자인 PPC의 경우는 전분해 거동을 보이는 다른 고분자들(PCL, PLLA, PLGA)에 비해 크랙이나 박리가 없어 가장 효율적으로 마그네슘 와이어의 분해 속도를 지연시켰다. 또한 생분해성 고분자 코팅이 마그네슘 합금 스텐트의 기계적 물성인 축 방향 힘에 미치는 영향에 대하여 조사하였다. 대부분의 생분해성 고분자(PCL, PLLA, PLGA)로 코팅된 스텐트는 코팅되지 않은 스텐트에 비해 축 방향의 힘이 증가하여 스텐트의 유연성을 감소시켰으나, PPC로 코팅된 스텐트는 코팅되지 않은 스텐트와 비슷한 축 방향의 힘을 나타내 스텐트의 유연성을 감소시키지 않았다. 이상의 결과로부터 PPC가 가장 효율적인 생분해성 고분자로 판단된다.

Interaction of Different Types of Cells on Poly(L-lactide-co-glycolide) Surface with Wettability Chemogradient

  • Gilson Khang;John M. Rhee;Lee, Jin-Ho;Lee, Ilwoo;Lee, Hai-Bang
    • Macromolecular Research
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    • 제8권6호
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    • pp.276-284
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    • 2000
  • A wettability chemogradient on poly(L-lactide-co-glycolide) (PLGA) films was prepared by treating the films in air with corona from a knife-type electrode whose power increases gradually along the sample length. The PLGA surfaces oxidized gradually with the increasing corona power, and the wettability chemogradient was created on the surfaces as evidenced by the measurement of water contact angles and electron spectroscopy for chemical analysis. The wettability chemogradient PLGA surfaces were used to investigate the interaction of four different types of cells such as hepatoma (Hep G2), osteoblast (MG 63), bovine aortic endothelial (CPAE), and fibroblast (NIH/3T3) cells in terms of the surface hydrophilicity/hydrophobicity of PLGA. The cells adhered and grown on the chemogradient surface along the sample length were counted and observed by scanning electron microscopy. It was observed that the cells were adhered, spread, and grown more onto the positions with moderate hydrophilicity of the wettability chemogradient PLGA surface than the more hydrophobic or hydrophillic positions, regardless of the cell types used. The maximum adhesion and growth of the cells appeared at around water contact angles of 53~55°. This result seems closely related with the serum protein adsorption on the surface; the serum proteins were also adsorbed more onto the positions with moderate hydrophilicity of the wettability chemogradient surface. It seems that the wettability plays important roles for cell adhesion, spreading and growth on the PLGA surface. The surface modification technique used in this study may be applicable tothe area of tissue engineering for the improvement of tissue compatibility of films- or scaffold-type substrates.

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응고화 경로가 고분자막 및 함침 약제 형상 변화에 미치는 영향의 분석 (Effect of Coagulating Conditions on the Morphology of Membrane and Drug Being Impregnated)

  • 한명진;남석태;이재훈
    • 폴리머
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    • 제25권2호
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    • pp.151-160
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    • 2001
  • 결정성 약제가 함침된 생분해성 고분자학이 고분자(poly(d,1-lactide)), 약제(progesterone) 및 용매(dimethylformamide)로 이루어진 고분자용액을 고형화시켜 제조되었다. 용매에 약제 및 고분자를 용해시켜 준비된 제막용액을 유리판 위에 도포한 후, 이로부터 용매를 증발시켜 고형화시키거나, 또는 고분자 및 함침 약제 모두에 비용매로 작용하는 물과 용액 필름에 존재하는 용매를 교환시켜 용액 필름이 응고되도록 하였다. 제조된 고분자막들은 용액 필름의 응고화 경로에 따라 뚜렷하게 다른 형상을 보여주었다. 진공 상태에서 용매의 증발을 통해 응고화되었을 때, 함침 약제인 프로제스테론은 구의 형상을 보여주며 고형화된 고분자 구조에 둘러싸여 막의 내부에 균일하게 분포되었다. 이에 비해, 비용매인 물에 침지시켜 용매와 비용매의 급속한 확산에 의해 응고화시키거나, 대기에 방치시켜 대기에 존재하는 수증기의 흡수에 의해 고분자 희박 지역의 핵 형성을 통한 용액 필름의 액체-액체 상분리를 유도하며 응고화시킨 경우, 함침된 약제는 고분자막 내부에 편상의 결정 구조를 지니며 막 내부에 불균일하게 분포되었다.

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이산화탄소 저감형 생분해성 고분자 (Carbon Dioxide-reducible Biodegradable Polymers)

  • 이원기
    • 청정기술
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    • 제17권3호
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    • pp.191-200
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    • 2011
  • 재생 가능한 자원으로 만들어지는 천연고분자, 바이오 고분자 및 합성고분자들은 지속가능하며 환경 친화적인 플라스틱으로 21세기 화두가 되고 있으나 많은 양의 썩지 않는 석유화학 유래 플라스틱이 사용되고 있다. 최근 들어 세 가지 관점에서 생분해성 고분자들이 많은 관심을 받고 있다: 1. 채취하기 쉬운 자원의 고갈에 따른 석유제품의 가격상승, 2. 폐플라스틱에 대한 환경 및 경제적인 관심, 3. 석유화학 유래 재료의 제조에 따른 이산화탄소배출. 이러한 관점에서 제조공정상에서 이산화탄소를 저감할 수 있는 poly(hydroxy alkanoate)나 poly(lactide)와 같은 생분해성 고분자에 대한 상업적 응용에 대한 관심이 고조되고 있다. 이들 고분자들은 초기분해가 진행됨에 따라 급격히 기계적 물성을 상실하기 때문에 상업적 응용을 위하여서는 분해거동이 중요하다. 본 총설에서는 초기분해속도의 조절을 위한 고분자 개질에 대한 최근의 연구동향을 살펴보았다.

In situ Gel Forming Stereocomplex Composed of Four-Arm PEG-PDLA and PEG-PLLA Block Copolymers

  • Jun, Yeo-Jin;Park, Kyung-Min;Joung, Yoon-Ki;Park, Ki-Dong;Lee, Seung-Jin
    • Macromolecular Research
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    • 제16권8호
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    • pp.704-710
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    • 2008
  • Injectable hydrogels are quite promising materials due to their potential to minimize invasive implantation and this provides versatile fitness irrespective of the damaged regions and facilitates the incorporation of bioactive agents or cells. In situ gel formation through stereocomplex formation is a promising candidate for injectable hydrogels. In this paper, a new series of enantiomeric, four-arm, PEG-PLA block copolymers and their stereocomplexed hydrogels were prepared by bulk ring-opening polymerization of D-lactide and L-lactide, respectively, with stannous octoate as a catalyst. The prepared polymers were characterized by $^1H$ nuclear magnetic resonance (NMR) spectroscopy, Fourier-transform infrared (FT IR) spectroscopy, gel permeation chromatography (GPC) and thermal gravitational analysis (TGA), confirming the tailored structure and chain lengths. The swelling and degradation behavior of the hydrogels formed from a selected copolymer series were observed in different concentrations. The degradation rate decreased with increasing polymer content in the solution. The rheological behavior indicated that the prepared hydrogel underwent in situ gelation and had favorable mechanical strength. In addition, its feasibility as an injectable scaffold was evaluated using a media dependence test for cell culture. A Tris solution was more favorable for in situ gel formation than PBS and DMEM solutions were. These results demonstrated the in situ formation of hydrogel through the construction of a stereocomplex with enantiomeric, 4-arm, PEG-PLA copolymers. Overall, enantiomeric, 4-arm, PEG-PLA copolymers are a new species of stereocomplexed hydrogels that are suitable for further research into injectable hydrogels.

All-trans Retinoic Acid Release from Surfactant-free Nanoparticles of Poly(DL-lactide-co-glycolide)

  • Jeong, Young-Il;Kim, Don-Gon;Jang, Mi-Kyeong;Nah, Jae-Woon;Kim, Yong-Bae
    • Macromolecular Research
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    • 제16권8호
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    • pp.717-724
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    • 2008
  • In this study, we prepared all-trans retinoic acid (ATRA)-encapsulated, surfactant-free, PLGA nanoparticles. The nanoparticles were formed by nanoprecipitation process, after which the solvent was removed by solvent evaporation or dialysis method. When a nanoparticle was prepared by the nanoprecipitation - solvent evaporation method, the nanoparticles were bigger than the nanoparticles of the nanoprecipitation - dialysis method, despite the higher although loading efficiency. Nanoparticles from the nanoprecipitation - dialysis method were smaller than 200 nm in diameter, while the loading efficiency was not significantly changed. Especially, nanoparticles prepared from DMAc, 1,4-dioxane, and DMF had a diameter of less than 100 nm. In the transmission electron microscopy (TEM) observations, all of the nanoparticles showed spherical shapes. The loading efficiency of ATRA was higher than 90% (w/w) at all formulations with exception of THF. The drug content was increased with increasing drug-feeding amount while the loading efficiency was decreased. In the drug release study, an initial burst was observed for $2{\sim}6$ days according to the variations of the formulation, after which the drug was continuously released over one month. Nanoparticles from the nanoprecipitation - dialysis method showed faster drug release than those from the nanoprecipitation - solvent evaporation method. The decreased drug release kinetics was observed at lower drug contents. In the tumor cell cytotoxicity test, ATRA-encapsulated, surfactant-free, PLGA nanoparticles exhibited similar cytotoxicity with that of ATRA itself.

음이온성 유화제로 수식된 폴리락티드/글리코리드 공중합체 나노 입자와 백신의 결합성 (Binding of Vaccine and Poly(DL-lactide-co-glycolide) Nanoparticle Modified with Anionic Surfactant)

  • 최민수;박은석;지상철;신병철
    • Journal of Pharmaceutical Investigation
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    • 제34권3호
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    • pp.177-183
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    • 2004
  • Recently, studies on intranasal mucosa delivery of influenza vaccine have been actively developed because of lack of pain and ease of administration. We studied on preparation of nanoparticle delivery system using biodegradable polymer as a poly(DL-lactide-co-glycolide) (PLGA) and their binding characteristics with vaccine. Three kinds of PLGA nanoparticles were prepared by spontaneous emulsification solvent diffusion (SESD) method using sodium dodecyl sulfate and sodium laurate as an anionic surfactant and Lutrol F68 (polyethylene glycol-block-polypropylene glycol copolymer) as a nonionic surfactant. The 5-aminofluorescein labeled vaccine was coated on the surface of nanoparticles by ionic complex. The complexes between vaccine and nanoparticles were confirmed by change of the size. After vaccine coating on the surface of anionic nanoparticles, particle size was increased from 174 to 1,040 nm. However the size of nonionic nanoparticles was not more increased than size of anionic nanoparticles. The amount of coated vaccine on the surface of PLGA nanoparticles was $14.32\;{\mu}g/mg$ with sodium dodecyl sulfate, $12.41\;{\mu}g/mg$ with sodium laurate, and $9.47{\mu}g/mg$ with Lutrol F68, respectively. In conclusion, prepared nanoparticles in this study is possible to use as a virus-like nanoparticles and it could be accept in the field of influenza vaccine delivery system.

하악지 시상 골절단술 이후 흡수성 나사를 사용하여 고정한 환자에서 술 후 안정성에 대한 연구 (STABILITY AFTER SURGICAL CORRECTION OF MANDIBULAR PROGNATHISM USING BILATERAL SAGGITAL SPLIT RAMUS OSTEOTOMY AND FIXATION WITH POLY-L/DL-LACTIDE COPOLYMER SCREWS ($BIOSORB^{TM}FX$))

  • 권택균;김용덕;신상훈;김욱규;김종렬;정인교
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제27권2호
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    • pp.160-163
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    • 2005
  • This study was designed to assess skeletal stabilily after surgical correction of mandibular prognathism by bilateral saggital split ramus osteotomy(BSSRO) and fixation with absorbable screws. From July 2001 to September 2003, 30 patients with Class III malocclusion were treated with BSSRO and mandibular setback. They underwent fixation with Biosorb$^{TM}$ FX screws. Cephalograms were obtained preoperatibely, 2 or 3 days postoperatively, and about 12 months after the operation. Changes in the position of lower incisor tip, B point, and pogonion were examined on lateral cephalograms. The mean mandibular setback just after surgery was 10.6mm. 12 months after surgery, mean relapse at pogonion represented 17.9% and 15.1% at B point. Our results suggest that fixation of the bony segments with absorbable screws after BSSO may be used effectively in properly selected cases.

PLLA/HA Composite Scaffold와 골수 줄기세포를 이용한 조직공학적 골재생에 대한 연구 (BONE TISSUE ENGINEERING USING PLLA/HA COMPOSITE SCAFFOLD AND BONE MARROW MESENCHYMAL STEM CELL)

  • 김병렬;장현석;임재석;이의석;김동현
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제30권4호
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    • pp.323-332
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    • 2008
  • Aim of the study: Scaffolds are crucial to tissue engineering/regeneration. Biodegradable polymer/ceramic composite scaffolds can overcome the limitations of conventional ceramic bone substitutes such as brittleness and difficulty in shaping. In this study, poly(L-lactide)/hydroxyapatite(PLLA/HA) composite scaffolds were fabricated for in vivo bone tissue engineering. Material & methods: In this study, PLLA/HA composite microspheres were prepared by double emulsion-solvent evaporation method, and were evaluated in vivo bone tissue engineering. Bone marrow mesenchymal stem cell from rat iliac crest was differentiated to osteoblast by adding osteogenic medium, and was mixed with PLLA/HA composite scaffold in fibrin gel and was injected immediately into rat cranial bone critical size defect(CSD:8mm in diameter). At 1. 2, 4, 8 weeks after implantation, histological analysis by H-E staining, histomorphometric analysis and radiolographic analysis were done. Results: BMP-2 loaded PLLA/HA composite scaffolds in fibrin gel delivered with osteoblasts differentiated from bone marrow mesenchymal stem cells showed rapid and much more bone regeneration in rat cranial bone defects than control group. Conclusion: This results suggest the feasibility and usefulness of this type of scaffold in bone tissue engineering.