• 제목/요약/키워드: dehydrothermal treatment

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식용 콜라겐 분말을 적용한 바이오 압전 발전기의 특성 (Characteristics of Bio-Piezoelectric Generator Using Edible Collagen Powder)

  • 손하영;박상식
    • 한국재료학회지
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    • 제34권4호
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    • pp.215-222
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    • 2024
  • Because collagen is inherently piezoelectric, research is being actively conducted to utilize it to harvest energy. In this study, a collagen solution was prepared using edible low-molecular-weight peptide collagen powder, and collagen films were fabricated using a dip coating method. The collagen films prepared by dip coating showed a smooth surface without defects such as pinholes or cracks. Dehydrothermal treatment of the collagen films was performed to induce a stable molecular structure through cross-linking. The collagen film subjected to dehydrothermal treatment at 110 ℃ for 24 h showed a thickness reduction rate of 19 %. Analysis of the collagen films showed that the crystallinity of the collagen film improved by about 7.9 % after dehydrothermal treatment. A collagen film-based piezoelectric nanogenerator showed output characteristics of approximately 13.7 V and 1.4 ㎂ in a pressure test of 120 N. The generator showed a maximum power density of about 2.91 mW/m2 and an output voltage of about 8~19 V during various human body movements such as finger tapping. The collagen film-based piezoelectric generator showed improved output performance with improved crystallinity and piezoelectricity after dehydrothermal treatment.

Dehydrothermal Treatment로 제작한 흡수성 콜라겐 골유도재생술 차단막 (Absorbable Guided Bone Regeneration Membrane Fabricated from Dehydrothermal Treated Porcine Collagen)

  • 방강미;정한울;김성포;양은경;김기호;김성민;김명진;장정원;이종호
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제33권2호
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    • pp.112-119
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    • 2011
  • Purpose: Collagen membranes are used extensively as bioabsorbable barriers in guided bone regeneration. However, collagen has different effects on tissue restoration depending on the type, structure, degree of cross-linking and chemical treatment. The purpose of this study was to evaluate the inflammatory reaction, bone formation, and degradation of dehydrothermal treated porcine type I atelocollagen (CollaGuide$^{(R)}$) compared to of the non-crosslinked porcine type I, III collagen (BioGide$^{(R)}$) and the glutaldehyde cross-linked bovine type I collagen (BioMend$^{(R)}$) in surgically created bone defects in rat mandible. Methods: Bone defect model was based upon 3 mm sized full-thickness transcortical bone defects in the mandibular ramus of Sprague-Dawley rats. The defects were covered bucolingually with CollaGuide$^{(R)}$, BioMend$^{(R)}$, or BioGide$^{(R)}$ (n=12). For control, the defects were not covered by any membrane. Lymphocyte, multinucleated giant cell infiltration, bone formation over the defect area and membrane absorption were evaluated at 4 weeks postimplantation. For comparison of the membrane effect over the bone augmentation, rats received a bone graft plus different covering of membrane. A $3{\times}4$ mm sized block graft was harvested from the mandibular angle and was laid and stabilized with a microscrew on the naturally existing curvature of mandibular inferior border. After 10 weeks postimplantation, same histologic analysis were done. Results: In the defect model at 4 weeks post-implantation, the amount of new bone formed in defects was similar for all types of membrane. Bio-Gide$^{(R)}$ membranes induced significantly greater inflammatory response and membrane resorption than other two membranes; characterized by lymphocytes and multinucleated giant cells. At 10 weeks postoperatively, all membranes were completely resorbed. Conclusion: Dehydrotheramal treated cross-linked collagen was safe and effective in guiding bone regeneration in alveolar ridge defects and bone augmentation in rats, similar to BioGide$^{(R)}$ and BioMend$^{(R)}$, thus, could be clinically useful.

콘드로이틴 환산염을 결합한 I형 콜라겐지지체와 연골세포를 이용한 연골재생 (Effect of cultured chondrocyte-seeded chondroitin-sulfate conjugated type I collagen scaffold on cartilage regeneration)

  • 임중재;손대구;손경희;양은경;한기환
    • Archives of Plastic Surgery
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    • 제34권4호
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    • pp.413-419
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    • 2007
  • Purpose: In this study, porous type I collagen scaffolds were cross-linked using dehydrothermal(DHT) treatment and/or 1-ethyl-3-(3-dimethyl aminopropyl) carbodiimide(EDC), in the presence and absence of chondroitin-6-sulfate(CS) and cultured autologous chondrocytes(Chondro) for cartilage regeneration. Methods: Cartilage defects were created in the proximal part of the ear of New Zealand rabbits. Four prepared types of scaffolds(n=4) were inserted. The groups included Chondro-Collagen-DHT(Group 1), Chondro- Collagen-DHT-EDC(Group 2), Chondro-CS-Collagen- DHT(Group 3), and Chondro-CS-Collagen-DHT-EDC (Group 4). Histomorphometric analysis and cartilage-specific gene expression of the reconstructed tissues were evaluated 4, 8, and 12 weeks after implantation. Results: EDC cross-linked groups 2 and 4 regenerated more cartilage than other groups. However, calcification was observed in the 4th week after implantation. CS did not increase chondrogenesis in all groups. Cartilage-specific type II collagen mRNA expression increased in the course of time in all groups.Conclusion: EDC cross-linking methods maintain the scaffold and promote extracellular matrix production of chondrocytes.

I형 콜라겐지지체의 다양한 가교처리 방법이 연골막성 연골재생에 미치는 영향 (The Effect of Various Methods of Cross-linking in Type I Collagen Scaffold on Cartilage Regeneration)

  • 손대구;임중재;손경희;양은경
    • Archives of Plastic Surgery
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    • 제33권6호
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    • pp.723-731
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    • 2006
  • Purpose: Collagen is the principal structural biomolecule in cartilage extracellular matrix, which makes it a logical target for cartilage engineering. In this study, porous type I collagen scaffolds were cross-linked using dehydrothermal(DHT) treatment and/or 1-ethyl-3-(3-dimethyl aminopropyl) carbodiimide(EDC), in the presence and absence of chondroitin-6-sulfate(CS) for cartilage regeneration. Methods: Cartilage defects were created in the proximal part of the ear of New Zealand rabbits. Four types of scaffolds(n=4) were inserted. The types included DHT cross-linked(Group 1), DHT and EDC cross- linked(Group 2), CS added DHT cross-linked(Group 3), and CS added DHT and EDC cross-linked(Group 4). Histomorphometric analysis and cartilage-specific gene expression of the reconstructed tissues were evaluated respectively 4, 8, and 12 weeks after implantation. Results: The largest quantity of regenerated cartilage was found in DHT cross-linked groups 1 and 3 in the 8th week and then decreased in the 12th week, while calcification increased. Calcification was observed from the 8th week and the area increased in the 12th week. Group 4 was treated with EDC cross-linking and CS, and the matrix did not degrade in the 12th week. Cartilage-specific type II collagen mRNA expression increased with time in all groups. Conclusion: CS did not increase chondrogenesis in all groups. EDC cross-linking may prevent chondrocyte infiltration from the perichondrium into the collagen scaffold.

각막 간질 대체물로 콘드로이틴 설페이트가 결합된 콜라젠 스폰지의 생체 적합성 평가 (The Evaluation of Biocompatigbility of Collagen/Chondroitin Sulfate Sponge as a Scaffold for Corneal Stromal Layer)

  • 장인근;안재일;서영권;김재찬;송계용;박정극
    • KSBB Journal
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    • 제21권6호
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    • pp.439-443
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    • 2006
  • 조직공학에서 생체재료의 생체적합성과 조직재생능력은 생체재료가 생체에 적합한지를 판단하는 가장 중요한 요소이다. 콜라젠은 인체조직을 이루는 주된 단백질이고, GAGs은 조직의 미세환경을 결정짓는 주요한 요소로 알려져 있다. 본 연구에서는 1형 콜라젠 스폰지를 탈수 열처리 (A군)하고 EDC로 가교결합한 것 (B군)과 CS를 첨가하여 EDC로 가교결합한 군 (C군)의 스폰지 형태의 콜라젠 지지체을 제조하였다. 제작된 콜라젠 스폰지를 3 mm의 디스크 형태로 토끼 각막의 실질부위에 주머니형태로 이식하였다. 8주 동안 각막의 신생혈관 생성, 혼탁, 지지체의 투명도 정도를 확인하고, 2주, 4주, 8주 후에 적출하여 염증과 각막 섬유모세포의 이동을 확인하였다. 모든 군에서 염증, 신생혈관 생성, 혼탁은 일어나지 않았다. 그러나 CS가 첨가된 콜라젠 스폰지에 섬유모세포의 이동이 많았고, 이식물의 투명도가 증가하였다. 1형 콜라젠 스폰지는 각막 간질에의 생체적합성이 뛰어나 각막 간질로의 대체 가능성이 크고, CS가 첨가된 1형 콜라젠 스폰지는 조직공학적 생인공각막의 재구성에 큰 도움을 줄 것으로 기대된다.