• 제목/요약/키워드: polymer scaffold

검색결과 134건 처리시간 0.034초

폴리머 발포법을 이용한 다공성 HAp 지지체의 제조 및 특성 평가 (In-Situ Formation of Porous HAp Using Polymer Foam Process)

  • 김진국;지상용;지형빈;박홍채;윤석영
    • 한국재료학회지
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    • 제18권6호
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    • pp.289-293
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    • 2008
  • Porous HAp with three-dimensional network channels was prepared in a polymer foam process using a in-situ formation. HAp/polyol with various HAp solid contents was formed with an addition of isocyanate. Under all conditions, the obtained porous HAp had pore sizes ranging $50\;{\mu}m$ to $250\;{\mu}m$. The influence of the HAp content on the physical and mechanical properties of porous HAp scaffolds was investigated. As the solid content increased, the porosity of the porous HAp decreased from 79.3% to 77.9%. On the other hand, the compressive strength of the porous HAp increased from 0.7 MPa to 3.7 MPa. With a HAp solid content of 15 g, the obtained porous HAp had physical properties that were more suitable for scaffolds compared to other conditions.

In vitro and in vivo Application of PLGA Nanofiber for Artificial Blood Vessel

  • Kim, Mi-Jin;Kim, Ji-Heung;Yi, Gi-Jong;Lim, Sang-Hyun;Hong, You-Sun;Chung, Dong-June
    • Macromolecular Research
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    • 제16권4호
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    • pp.345-352
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    • 2008
  • Poly(lactic-co-glycolic acid) (PLGA) tubes (5 mm in diameter) were fabricated using an electro spinning method and used as a scaffold for artificial blood vessels through the hybridization of smooth muscle cells (SMCs) and endothelial cells (ECs) differentiated from canine bone marrow under previously reported conditions. The potential clinical applications of these artificial blood vessels were investigated using a canine model. From the results, the tubular-type PLGA scaffolds for artificial blood vessels showed good mechanical strength, and the dual-layered blood vessels showed acceptable hybridization behavior with ECs and SMCs. The artificial blood vessels were implanted and substituted for an artery in an adult dog over a 3-week period. The hybridized blood vessels showed neointimal formation with good patency. However, the control vessel (unhybridized vessel) was occluded during the early stages of implantation. These results suggest a shortcut for the development of small diameter, tubular-type, nanofiber blood vessels using a biodegradable material (PLGA).

3D프린팅 공정 중 공기 습도에 따른 출력물의 인장 강도에 관한 연구 (A Study on Tensile Strength of the Product According to Humidity During 3D Printing Process)

  • 이송연;허용정
    • 반도체디스플레이기술학회지
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    • 제20권4호
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    • pp.177-181
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    • 2021
  • Scaffolds protect the sensor in the body. Scaffolds are made of a bioabsorbable polymer. The polymer process is sensitive to humidity. Inside of the 3D printer has been improved to control the humidity. Specimens were produced by injection molding and 3D printer. 3D printed specimens were printed under various humidity conditions. We measured tensile strength of the injection-molded specimen and tensile strength of the 3d printing specimen. We compared tensile strength of the injection-molded specimen and tensile strength of the 3d printing specimen. Tensile strength of the injection-molded specimen is 557 kgf/cm2. We confirmed tensile strength of the specimen was highest at 741 kgf/cm2 when the humidity was 10 %. We confirmed lower the humidity, higher tensile strength of the polymer product.

Chondrogenic Differentiation of Bone Marrow Stromal Cells in Transforming Growth $Factor-{\beta}_{1}$ Loaded Alginate Bead

  • Park, Ki-Suk;Jin Chae-Moon;Kim, Soon-Hee;Rhee John M.;Khang Gil-Son;Han, Chang-Whan;Yang, Yoon-Sun;Kim, Moon-Suk;Lee, Hai-Bang
    • Macromolecular Research
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    • 제13권4호
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    • pp.285-292
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    • 2005
  • We developed alginate beads loaded with transforming growth $factor-{\beta}_{1}(TGF-{\beta}_{1})$ to examine the possible application of the scaffold and cytokine carrier in tissue engineering. In this study, bone marrow stromal cells (BMSCs) and $TGF{\beta}_{1}$ were uniformly encapsulated in the alginate beads and then cultured in vitro. The cell morphology and shape of the alginate beads were observed using inverted microscope, scanning electron microscope (SEM), histological staining and RT-PCR to confirm chondrogenic differentiation. The amount of the $TGF{\beta}_{1}$ released from the $TGF-{\beta}_{1}$ loaded alginate beads was analyzed for 28 days in vitro in a phosphate buffered saline (pH 7.4) at $37^{\circ}C$. We observed the release profile of $TGF-{\beta}_{1}$ from $TGF-{\beta}_{1}$ loaded alginate beads with a sustained release pattern for 35 days. Microscopic observation showed the open cell pore structure and abundant cells with a round morphology in the alginate beads. In addition, histology and RT-PCR results revealed the evidence of chondrogenic differentiation in the beads. In conclusion, these results confirmed that $TGF-{\beta}_{1}$ loaded alginate beads provide excellent conditions for chondrogenic differentiation.

고체 슈퍼캐퍼시터를 위한 폴리비닐알콜 고분자 전해질막 (Poly(vinyl alcohol)-based Polymer Electrolyte Membrane for Solid-state Supercapacitor)

  • 이재훈;박철훈;박민수;김종학
    • 멤브레인
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    • 제29권1호
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    • pp.30-36
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    • 2019
  • 본 연구에서는 titanium nitride (TiN) 나노 섬유와 poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT-PSS) 전도성 고분자로 이루어진 전극과 poly(vinyl alcohol) (PVA) 기반 고분자 전해질 분리막을 이용하여 슈퍼 캐퍼시터를 제조하였다. TiN 나노 섬유의 경우 높은 전기 전도도와 이차원적 구조로 인한 스케폴드 효과를 기대할 수 있다는 점에서 전극 물질로 사용되었다. PEDOT-PSS 전도성 고분자는 수소 이온과 산화-환원 반응을 통해 보다 높은 정전용량을 나타낼 수 있으며 용액상에 분산이 용이해 유무기 복합제를 형성하기에 적합하였다. PVA 기반의 고분자 전해질 분리막은 기존의 액상의 전해질의 문제인 외부 충격에 대한 안정성을 확보할 수 있으며 염으로 사용된 $H_3PO_4$의 경우 수소 이온은 빠른 확산으로 인해 캐퍼시터의 충방전 효율에 이점이 있다. 본 연구에서 보고된 PEDOT-PSS/TiN 슈퍼캐퍼시터의 정전용량은 약 75 F/g으로 기존의 탄소기반 캐퍼시터에 비해 큰 폭으로 증가한 값이다.

Controlled Release Behavior of Bioactive Molecules from Photo-Reactive Hyaluronic Acid-Alginate Scaffolds

  • Nam, Hye-Sung;An, Jeong-Ho;Chung, Dong-June;Kim, Ji-Heung;Chung, Chong-Pyoung
    • Macromolecular Research
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    • 제14권5호
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    • pp.530-538
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    • 2006
  • There are three important components in tissue engineering: the cells, signaling factors (cytokines and growth factors), and scaffolds. To obtain finely engineered tissue, all three components should perform their individual functions and be fully integrated with each other. For the past few years, we have studied the characteristics of photodimerizable HA (CHA)/alginate (CA) composite materials. CHA/CA complex hydrogels, which were irradiated under UV light and, then treated with calcium ions, were found to have good biocompatibility, mechanical properties and water resistance for implantable tissue scaffolds. In this study, we introduced a cell growth factor (basic fibroblast growth factor; bFGF) into the CHA/CA scaffolds and studied its release behavior. We also introduced tetracycline hydrochloride and flurbiprofen into the same scaffolds as model activation factors and evaluated their release behaviors from the scaffolds. The drug release rate from the materials was influenced by various parameters, such as the degree of crosslinking, the cross linker type, the physico-chemical properties of the drug, and the amount of the drug in the polymer. The results indicated that the negatively charged CHA/CA composite materials showed sustained release behavior and that HA has a particularly strong negative charge, making it attractive toward tetracycline hydrochloride and bFGF, but repulsive toward flurbiprofen.

하이드록시아파타이트/락타이드 글리콜라이드 공중합체 지지체 조성에 따른 염증 완화 효과 (Inflammatory Responses to Hydroxyapatite/Poly(lactic-co-glycolic acid) Scaffolds with Variation of Compositions)

  • 장지은;김혜민;김형석;전대연;박찬흠;권순용;정진화;강길선
    • 폴리머
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    • 제38권2호
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    • pp.156-163
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    • 2014
  • 하이드록시아파타이트는 골 전도가 우수하고 생체 적합성이 우수하며 염증 반응을 일으키지 않아 임상에서 골이식재로 널리 사용되고 있다. 본 연구에서는 하이드록시아파타이트를 함유한 poly(lactic-co-glycolic acid) (PLGA) 지지체를 제조하였으며 생체 내/외의 실험을 통하여 골 이식재로서의 응용가능성을 평가하였다. 하이드록시아파타이트/PLGA 지지체는 0, 10, 20, 40 및 60 wt%의 함량으로 제조하였다. 기계적 특성을 알아보기 위하여 압축강도, SEM, FTIR을 측정하였으며 MTT, RT-PCR, FACS, 조직학적 염색(H&E, ED-1)을 실시하였다. 그 결과 하이드록시아파타이트를 함유한 PLGA 지지체에서 염증 반응이 감소하는 것을 확인할 수 있었으며 골 이식재로서의 가능성을 보여주었다.

용융 압출 발포에 의한 폴리락틱산 지지체 가공 (Preparation of Poly(L-lactic acid) Scaffolds by Melt Extrusion Foaming)

  • 이종록;강호종
    • 폴리머
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    • 제29권2호
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    • pp.198-203
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    • 2005
  • 용융 압출 발포에 의하여 폴리락틱산(PLLA) 지지체를 제조하고 발포 조건이 지지체의 구조와 기계적 특성에 미치는 영향을 살펴보고 이를 염 추출법에 의하여 제조된 지지체와 비교하였다. 발포제를 함유한 PLLA 용융체가 압출기 및 다이에서 체류하는 시간이 발포제의 무게를 최대로 감소시키는 시간과 일치하여야 최적의 PLLA 지지체의 구조를 얻을 수 있음을 확인하였다. PLLA지지체의 구조를 유지하기 위해서는 발포제의 함량을 $10\;wt\%$ 이하로 조절해야 하며 PLLA 지지체의 다공도는 PLLA의 압출기에서의 체류시간에 가장 큰 영향을 받음을 알 수 있었다. 용융 압출 발포에 의하여 얻어진 지지체는 일반적으로 염 추출법에 의하여 제조된 지지체보다 다소 낮은 다공도를 갖지만 발포 조건의 조절에 의하여 적절한 다공 크기와 다공의 연결성을 가지며 동시에 우수한 기계적 특성을 가져 경조직 재생(hard tissue regeneration)용으로 사용이 가능할 것으로 사료된다.

Renal Precursor Cell Transplantation Using Biodegradable Polymer Scaffolds

  • KIM , SANG-SOO;PARK, HEUNG-JAE;HAN, JOUNG-HO;PARK, MIN-SUN;PARK, MOON-HYANG;SONG, KANG-WON;JOO, KWAN-JOONG;CHOI, CHA-YONG;KIM, BYUNG-SOO
    • Journal of Microbiology and Biotechnology
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    • 제15권1호
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    • pp.105-111
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    • 2005
  • End-stage renal disease is a fatal and devastating disease that is caused by progressive and irreversible loss of functioning nephrons in the kidney. Dialysis and renal transplantation are the common treatments at present, but these treatments have severe limitations. The present study investigated the possibility of reconstructing renal tissues by transplantation of renal precursor cells to replace the current treatments for end-stage renal disease. Embryonic renal precursor cells, freshly isolated from metanephroi of rat fetus at day 15 post-gestation, were seeded on biodegradable polymer scaffolds and transplanted into peritoneal cavities of athymic mice for three weeks. Histologic sections stained with hematoxylin & eosin and periodic acid-Schiff revealed the formation of primitive glomeruli, tubules, and blood vessels, suggesting the potential of embryonic renal precursor cells to reconstitute renal tissues. Immunohistochemical staining for proliferating cell nuclear antigen, a marker of proliferating cells, showed intensive nuclear expression in the regenerated renal structures, suggesting renal tissue reconstitution by transplanted embryonic renal precursor cells. This study demonstrates the reconstitution of renal tissue in vivo by transplanting renal precursor cells with biodegradable polymer scaffolds, which could be utilized as a new method for partial or full restoration of renal structure and function in the treatment of end-stage renal disease.

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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