• 제목/요약/키워드: poly (l-lactide)

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Poly(L-Lactide)-Degrading Enzyme Production by Actinomadura keratinilytica T16-1 in 3 L Airlift Bioreactor and Its Degradation Ability for Biological Recycle

  • Sukkhum, Sukhumaporn;Tokuyama, Shinji;Kitpreechavanich, Vichien
    • Journal of Microbiology and Biotechnology
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    • 제22권1호
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    • pp.92-99
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    • 2012
  • The optimal physical factors affecting enzyme production in an airlift fermenter have not been studied so far. Therefore, the physical parameters such as aeration rate, pH, and temperature affecting PLA-degrading enzyme production by Actinomadura keratinilytica strain T16-1 in a 3 l airlift fermenter were investigated. The response surface methodology (RSM) was used to optimize PLA-degrading enzyme production by implementing the central composite design. The optimal conditions for higher production of PLA-degrading enzyme were aeration rate of 0.43 vvm, pH of 6.85, and temperature at $46^{\circ}C$. Under these conditions, the model predicted a PLA-degrading activity of 254 U/ml. Verification of the optimization showed that PLA-degrading enzyme production of 257 U/ml was observed after 3 days cultivation under the optimal conditions in a 3 l airlift fermenter. The production under the optimized condition in the airlift fermenter was higher than un-optimized condition by 1.7 folds and 12 folds with un-optimized medium or condition in shake flasks. This is the first report on the optimization of environmental conditions for improvement of PLA-degrading enzyme production in a 3 l airlift fermenter by using a statistical analysis method. Moreover, the crude PLA-degrading enzyme could be adsorbed to the substrate and degraded PLA powder to produce lactic acid as degradation products. Therefore, this incident indicates that PLA-degrading enzyme produced by Actinomadura keratinilytica NBRC 104111 strain T16-1 has a potential to degrade PLA to lactic acid as a monomer and can be used for the recycle of PLA polymer.

첨가제 함유 BCNU/PLGA웨이퍼의 in vitro 항암 활성 (In Vitro Antitumor Activity of BCNU-Loaded PLGA Wafer Containing Additives)

  • 이진수;안태군;신필경;채강수;정제교;이봉;조선행;강길선;이해방
    • 폴리머
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    • 제27권3호
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    • pp.217-225
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    • 2003
  • 약물의 방출 경향을 제어할 목적으로 폴리비닐피롤리돈 (PVP) 또는 염화나트륨을 함유한 항암제 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU, carmustine)/poly(L-lactide-co-glycolide) (PLGA) 웨이퍼를 직접 압축성형 방법에 의해 직경 3 mm와 두께 1 mm의 조건으로 제조하였다. 생체외 방출실험에서 BCNLT/PLGA 웨이퍼로부터 약물 방출거동은 웨이퍼에 함유된 첨가제에 의해 조절할 수 있었다. BCNU의 초기 방출량과 방출속도 및 기간은 염화나트륨 또는 PVP의 첨가에 외해 변화하였다. 9L gliosarcoma세포를 이용한 생체 외 항암 활성 실험에서 첨가제가 함유된 웨이퍼로부터 방출된 BCNU를 처리한 세포의 생존율을 분석하여 평가했고, 그 결과 지속적으로 9L gliosarcoma세포의 성장을 억제함을 확인하였다. 9L gliosarcoma세포에 대한 첨가제 함유 BCNU/PLGA 웨이퍼로부터 방출된 BCNU 약효 검색을 통하여 웨이퍼로부터 BCNU가 지속적으로 방출되어 9L gliosarcoma세포의 생존과 증식을 효과적으로 억제함을 확인하였다. 특히, 첨가제 함유 BCNU/PLGA 웨이퍼의 지속적인 성장 억제는 첨가제를 함유하지 않은 웨이퍼의 것보다 더욱 효과적이었다. 또한 염화나트륨 함유 BCNU/PLGA 웨이퍼가 PVP 함유 BCNU/PLCA 웨이퍼보다 세포 증식 억제 효과가 뛰어남을 보였다.

Nanopharmaceutical Approach for Enhanced Anti-cancer Activity of Betulinic Acid in Lung-cancer Treatment via Activation of PARP: Interaction with DNA as a Target -Anti-cancer Potential of Nano-betulinic Acid in Lung Cancer-

  • Das, Jayeeta;Samadder, Asmita;Das, Sreemanti;Paul, Avijit;Khuda-Bukhsh, Anisur Rahman
    • 대한약침학회지
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    • 제19권1호
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    • pp.37-44
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    • 2016
  • Objectives: This study examined the relative efficacies of a derivative of betulinic acid (dBA) and its poly (lactide-co-glycolide) (PLGA) nano-encapsulated form in A549 lung cancer cells in vivo and in co-mutagen [sodium arsenite (SA) + benzo[a]pyrene (BaP)]-induced lung cancer in mice in vivo. Methods: dBA was loaded with PLGA nanoparticles by using the standard solvent displacement method. The sizes and morphologies of nano-dBA (NdBA) were determined by using transmission electron microscopy (TEM), and their intracellular localization was verified by using confocal microscopy. The binding and interaction of NdBA with calf thymus deoxyribonucleic acid (CT-DNA) as a target were analyzed by using conventional circular dichroism (CD) and melting temperature (Tm) profile data. Apoptotic signalling cascades in vitro and in vivo were studied by using an enzyme-linked immunosorbent assay (ELISA); the ability of NdBA to cross the blood-brain barrier (BBB) was also examined. The stage of cell cycle arrest was confirmed by using a fluorescence-activated cell-sorting (FACS) data analysis. Results: The average size of the nanoparticles was ~ 110 nm. Confocal microscopy images confirmed the presence of NdBA in the cellular cytoplasm. The bio-physical properties of dBA and NdBA ascertained from the CD and the Tm profiles revealed that NdBA had greater interaction with the target DNA than dBA did. Both dBA and NdBA arrested cell proliferation at G0/G1, NdBA showing the greater effect. NdBA also induced a greater degree of cytotoxicity in A549 cells, but it had an insignificant cytotoxic effect in normal L6 cells. The results of flow cytometric, cytogenetial and histopathological studies in mice revealed that NdBA caused less nuclear condensation and DNA damage than dBA did. TEM images showed the presence of NdBA in brain samples of NdBA fed mice, indicating its ability to cross the BBB. Conclusion: Thus, compared to dBA, NdBA appears to have greater chemoprotective potential against lung cancer.

조직공학적 골재생을 위한 탈미넬화된 골분을 함유한 다공성 지지체의 제조 및 그 특성 (Preparation and Characterization of Demineralized Bone Particle-loaded PLGA Scaffold for Tissue Engineered Bone)

  • 장지욱;이봉;한창환;김문석;조선행;이해방;강길선
    • 폴리머
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    • 제28권5호
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    • pp.382-390
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    • 2004
  • 생체적합성 천연재료 중 하나인 탈미네랄화된 골분 (demineralized bone particle, DBP)은 골형성단백질 (BMP)을 함유하고 있어 골수간엽줄기세포 (BMSCs)의 분화를 유도한다. 본 연구에서는 DBP를 함유한 폴리 락타이드 (PLA)와 락타이드-글리콜라이드 공중합체 (PLGA) 다공성 지지체를 용매 캐스팅/염추출법으로 제조하였고, 수은다공측정계 및 전자주사현미경을 이용하여 특성결정 하였다. BMSCs는 골분화 배지를 이용하여 조골세포로 분화시켜 Wright-Giemsa, Alizarin red, von Kossa 및 ALP 염색으로 확인하였다. DBP가 함유된 지지체와 DBP가 함유되지 않은 지지체에 BMSCs를 파종한 후 면역결핍 누드마우스의 피하에 삽입하여 이들의 골형성 정도를 비교하여 보았다. 제조한 지지체의 다공도는 $90.2\%$ 이상이었고 평균 다공크기도 69.1$\mu$m 이상이었다. BMSCs는 Wright-Giemsa, Alizarin red, von Kossa 및 ALP 염색결과 조골세포로 분화가 가능했으며, 동물실험을 수행한 결과 DBP가 함유된 지지체에서 칼슘침착 영역을 확인할 수 있었지만 DBP가 함유되지 않은 지지체에서는 칼슘침착 영역을 확인하지 못하였다. 결론적으로 DBP를 함유한 지지체에서 DBP와 BMSCs가 골형성에 중요한 요인으로 작용한다고 사료된다.

케라틴이 함유된 조직공학적 PLGA 지지체의 제조 및 특성 분석 (Preparation and Characterization of PLGA Scaffold Impregnated Keratin for Tissue Engineering Application)

  • 오아영;김순희;이상진;유지;;이종문;강길선
    • 폴리머
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    • 제32권5호
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    • pp.403-408
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    • 2008
  • 케라틴은 울, 머리카락, 손톱 등을 형성하는 섬유단백질의 주요성분으로 유용한 생체재료이다. 골수간염 줄기세포를 이용한 조직공학 적용을 위해 Poly(4-lactide-co-glycolide) (PLGA)에 함량별로 케라틴을 함유한 지지체를 용매 캐스팅/염 추출법을 이용하여 제조하였다. 제조된 지지체의 표면과 단면의 형태를 전자현미경(SEM)으로 관찰하고 특성분석을 위해 다공도, 표면 적심성, 물 흡수성, 그리고 열적성질을 분석하였다. 이 후 쥐에서 분리한 골수간엽줄기세포를 지지체에 파종하여 세포의 증식율을 (4,5-dimethylthiazol-2-yl)-2.5-diphenyl-tetrazolium bromide(MTT) 분석방법을 이용하여 측정하였다. 천연/합성 하이브리드 담체인 케라틴/PLGA 지지체는 PLGA 단독으로 제조된 지지체와 비교 시 골수간엽줄기세포의 생장에 유익한 환경을 제공함을 확인하였다.

Biocompatibility of Poly(MPC-co-EHMA)/Poly(L-1actide-co-glycolide) Blends

  • Gilson Khang;Park, Myoung-Kyu;Jong M. Rhee;Lee, Sang-Jin;Lee, Hai-Bang;Yasuhiko Iwasaki;Nobuo Nakabayashi;Kazuhiko Ishihara
    • Macromolecular Research
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    • 제9권2호
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    • pp.107-115
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    • 2001
  • Poly(L-lactide-co-glycolide)(PLGA) was blended with poly[$\omega$-methacryloyloxyethyl phospho-rylcholine-co-ethylhexylmethacrylate (PMEH)] (PLGA/PMEH) to endow with new functionality i.e., to improve the cell-, tissue- and blood-compatibility. The characteristics of surface properties were investigated by measurement of contact angle goniometer, Fourier-transform infrared spectroscopy with attenuated total reflectance (FTIR-ATR) and electron spectroscopy for chemical analysis (ESCA). NIH/3T3 fibroblast and bovine aortic endothelial cell were cultured on control and PLGA/PMEH surfaces for the evaluation of ceil attachment and proliferation in terms of surface functionality such as the concentration of phosphoryl-choline. Also, the behavior of platelet adhesion on PLGA/PMEH was observed in terms of the surface functionality. The contact angles on control and PLGA/PMEH surfaces decreased with increasing PMEH content from 75$^{\circ}$ to about 43$^{\circ}$. It was observed from the FTIR-ATR spectra that phosphorylcholine groups are gradually increased with increasing blended amount of MPC. The experimental P percent values from ESCA analysis were more 3.28∼7.4 times than that of the theoretical P percent for each blend films. These results clearly indicated that the MPC units were concentrated on the surface of PLGA/PMEH blend. The control and PLGA/PMEH films with 0.5 to 10.0 wt% concentration of PMEH were used to evaluate cell adhesion and growth in terms of phosphorylcholine functionality and wettability. Cell adhesion and growth on PLGA/PMEH surfaces were less active than those of control and both cell number decreased with increasing PMEH contents without the effect of surface wettability. It can be explained that the fibronectin adsorption decreased with an increase in the surface density of phosphorylcholine functional group. One can conclude the amount of the protein adsorption and the adhesion number of cells can be controlled and nonspecifically reduced by the introduction with phosphorylcholine group. Morphology of the adhered platelets on the PLGA/PMEH surface showed lower activating than control and the number of adhered platelets on the PLGA/PMEH sample decreased with increasing the phosphorylcholine contents. The amount of fibrinogen adsorbed on the PLGA/PMEH surface demonstrated that the phospholipid polar group played an important role in reducing protein adsorption on the surface. In conclusion, this surface modification technique might be effectively used PLGA film and scaffolds for controlling the adhesion and growth of cell and tissue, furthermore, blood compatibility of the PLGA was improved by blending of the MPC polymer for the application of tissue engineering fields.

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자가기질혈관분획을 이용한 수지골 결손 환자의 치료 (Treatment of Phalangeal Bone Defect Using Autologous Stromal Vascular Fraction from Lipoaspirated Tissue)

  • 정태원;지이화;김덕우;동은상;윤을식
    • Archives of Plastic Surgery
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    • 제38권4호
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    • pp.438-444
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    • 2011
  • Purpose: Adipose-derived stromal cells (ASCs) are readily harvested from lipoaspirated tissue or subcutaneous adipose tissue fragments. The stromal vascular fraction (SVF) is a heterogeneous set of cell populations that surround and support adipose tissue, which includes the stromal cells, ASCs, that have the ability to differentiate into cells of several lineages and contains cells from the microvasculature. The mechanisms that drive the ASCs into the osteoblast lineage are still not clear, but the process has been more extensively studied in bone marrow stromal cells. The purpose of this study was to investigate the osteogenic capacity of adipose derived SVF cells and evaluate bone formation following implantation of SVF cells into the bone defect of human phalanx. Methods: Case 1 a 43-year-old male was wounded while using a press machine. After first operation, segmental bone defects of the left 3rd and 4th middle phalanx occurred. At first we injected the SVF cells combined with demineralized bone matrix (DBM) to defected 4th middle phalangeal bone lesion. We used P (L/DL)LA [Poly (70L-lactide-co-30DL-lactide) Co Polymer P (L/DL)LA] as a scaffold. Next, we implanted the SVF cells combined with DBM to repair left 3rd middle phalangeal bone defect in sequence. Case 2 was a 25-year-old man with crushing hand injury. Three months after the previous surgery, we implanted the SVF cells combined with DBM to restore right 3rd middle phalangeal bone defect by syringe injection. Radiographic images were taken at follow-up hospital visits and evaluated radiographically by means of computerized analysis of digital images. Results: The phalangeal bone defect was treated with autologous SVF cells isolated and applied in a single operative procedure in combination with DBM. The SVF cells were supported in place with mechanical fixation with a resorbable macroporous sheets acting as a soft tissue barrier. The radiographic appearance of the defect revealed a restoration to average bone density and stable position of pharyngeal bone. Densitometric evaluations for digital X-ray revealed improved bone densities in two cases with pharyngeal bone defects, that is, 65.2% for 4th finger of the case 1, 60.5% for 3rd finger of the case 1 and 60.1% for the case 2. Conclusion: This study demonstrated that adipose derived stromal vascular fraction cells have osteogenic potential in two clinical case studies. Thus, these reports show that cells from the SVF cells have potential in many areas of clinical cell therapy and regenerative medicine, albeit a lot of work is yet to be done.

Delayed degradation according to the location of fixation with using an absorbable plate

  • Kim, Tae Ho;Kang, Seok Joo;Sun, Hook
    • 대한두개안면성형외과학회지
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    • 제19권2호
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    • pp.114-119
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    • 2018
  • Background: The ideal absorbable plating system should provide sufficient rigidity and then be absorbed within a timely manner. The Resorb-X has been recently developed as a plating system with a mixture ratio of 50:50 poly(D, L-lactide). Methods: We present seven of 121 patients who experienced delayed degradation with this absorbable plate. One hundred twenty-one patients with facial bone fracture underwent surgical treatment from March 2011 to March 2015, and rigid fixation was achieved with the Resorb-X. Results: Of 121 patients, seven (5.8%) developed complications at the surgical sites. Six of 102 cases underwent fixation of the infraorbital rim and one of 73 underwent fixation of the frontozygomatic buttress; the other sites of fixation did not develop delayed degradation. Foreign body granuloma developed at the earliest by postoperative 20 months and at the latest by postoperative 28 months (average, 23.5 months). Conclusion: We observed that the use of absorbable plates in incision sites or areas with thin skin can increase the possibility of delayed degradation. When performing surgery in these areas, the normal skin above the fixed location should be covered sufficiently.

Curcumin-Loaded PLGA Nanoparticles Coating onto Metal Stent by Electrophoretic Deposition Techniques

  • Nam, So-Hee;Nam, Hye-Yeong;Joo, Jae-Ryang;Baek, In-Su;Park, Jong-Sang
    • Bulletin of the Korean Chemical Society
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    • 제28권3호
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    • pp.397-402
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    • 2007
  • Restenosis after percutaneous coronary intervention (PCI) continues to be a serious problem in clinical cardiology. To solve this problem, drug eluting stents (DES) with antiproliferative agents have been developed. Variable local drug delivery systems in the context of stenting require the development of stent manufacture, drug pharmacology and coating technology. We have worked on a system that integrates electrophoretic deposition (EPD) technology with the polymeric nanoparticles in DES for local drug delivery and a controlled release system. The surface morphology and drug loading amount of DES by EPD have been investigated under different operational conditions, such as operation time, voltage and the composition of media. We prepared poly-D,L-lactide-co-glycolic acid (PLGA) nanoparticles embedded with curcumin, which was done by a modified spontaneous emulsification method and used polyacrylic acid (PAA) as a surfactant because its carboxylic group contribute negative charge to the surface of CPNPs (?53.5 ± 5.8 mV). In the process of ‘trial and error' endeavors, we found that it is easy to control the drug loading amount deposited onto the stent while keeping uniform surface morphology. Accordingly, stent coating by EPD has a wide application to the modification of DES using various kinds of nanoparticles and drugs.

Photocatalytic performance of graphene/Ag/TiO2 hybrid nanocomposites

  • Lee, Jong-Ho;Kim, In-Ki;Cho, Donghwan;Youn, Jeong-Il;Kim, Young-Jig;Oh, Han-Jun
    • Carbon letters
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    • 제16권4호
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    • pp.247-254
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    • 2015
  • To improve photocatalytic efficiency, graphene/Ag/TiO2 nanotube catalyst was synthesized, and its surface characteristics and photocatalytic activity investigated. For deposition of Ag nanoparticles on the TiO2 nanotubes, a polymer compound containing CH3COOAg/poly(L-lactide) was utilized, and the silver particles were precipitated by reducing the silver ions during the annealing process. Graphene deposition on the Ag/TiO2 nanotubes was achieved using an electrophoretic deposition process. Based on the dye degradation results, it was determined that the photocatalytic efficiency was significantly affected by deposition of silver particles and graphene on the TiO2 catalyst. Highly efficient destruction of the dye was obtained with the new graphene/Ag/TiO2 nanotube photocatalyst. This may be attributed to a synergistic effect of the graphene and Ag nanoparticles on the TiO2 nanotubes.