• Title/Summary/Keyword: 생체적합도

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Fabrication of Glass Ceramics for Dental Artificial Tooth(II) -Biocompatibility- (인공 치아용 결정화 유리의 제조(II) - 생체적합성)

  • 유기수;한복섭
    • Journal of Biomedical Engineering Research
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    • v.14 no.3
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    • pp.257-264
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    • 1993
  • A study on the biocompatibility of two types of new glass-ceramics materials, metal disc and dental porcelain that were already made for dental artificial tooth in the previous study, have been attempted. The chemical behavior and the Victor's hardness change in she artificial saliva and Ringer's solution have been also investigated. From the experiment of Implantation of glass-ceramics Into dorsal subcutaneous tissue of Sprague-Dawley rats, glass-cerarmics did not show any particular system of rejection for histrocompatibility.

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Study on blood compatibility of diamond-like carbon and titanium nitride films (Diamond-like carbon 및 titanium nitride 박막의 혈액적합성 연구)

  • Yun Ju-Young;Bae Jin-Woo;Park Ki-Dong;Goo Hyun-Chul;Park Hyung-Dal;Chung Kwang-Wha
    • Journal of the Korean Vacuum Society
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    • v.14 no.3
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    • pp.165-170
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    • 2005
  • There is an increasing interest in developing novel coating to improve the blood compatibility of medical implants. Diamond-like carbon(DLC) and titanium nitride(TiN) films have been proposed as potential biomedical coatings due to their chemical k physical properties and moderate biocompatibility. To study the correlation between blood compatibility and physical properties of the films, the fibrinogen adsorption on the surface as well as morphology & wettability were investigated. The quantity of fibrinogen adsorption are Tower for TiN than DLC, which correlates with a higher hydrophilicity of TiN film. To reduce the quantity of fibrinogen adsorption on the film, plasma treatment and furnace annealing were performed, respectively. With the use of oxygen plasma and furnace annealing, the amount of fibrinogen adsorption on TiN film was remarkably reduced, while there was no decrease of the quantity with DLC.

A Study on Conformance Testing Method to Verify the BioAPI Based System Module (BioAPl기반 시스템 모듈을 검증하기 위한 적합성시험 방법 연구)

  • Lee Yoo-Young;Kwon Young-Bin
    • The KIPS Transactions:PartB
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    • v.11B no.7 s.96
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    • pp.759-768
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    • 2004
  • Recently the biometric recognition technology is intensively studied and the standardization of the technology has been highly demanded for its commercialization. Currently many blometric recognition products are being developed based on the BioAPl(Biometric Application Program-ming Interface) specification. However, the reliable testing tools (or scenarios) to evaluate performance and conformance of the products are not shown yet. In this paper, a conformance testing method is presented, which verifies a biometric recognition system to meet the requirements of the BioAPl standard. Two different testing procedures are used in the proposed method. The first procedure evaluates that each functions offered in the BioAPl specification are correctly implemented and that the functions are actually used in the system. Through the Procedure, a BSP(Biometric Service Provider) system is executed on the framework of the BioAPl functions. It requires selection of parameters and prece-dent functions that should be executed first. The second procedure evaluates the abilities of module management, handling operations and ver-ification process by the analysis of the test cases. It tests the correctness of the system operation when a testing scenario is given. The proposed testing method is applied on a fingerprint verification BSP using the sample BSP provided by the BioAPl consortium. The experimental results shows the benefits of the proposed testing method.

Properties of Photo-Reactive Natural Polymer Derivatives and Its Applications (광반응성 천연 고분자의 특성 및 생체재료로의 활용 방안)

  • Kim, Eun-Hye;Jeong, Jin-Hong;Han, Ga-Dug;Son, Tae-Il
    • Prospectives of Industrial Chemistry
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    • v.18 no.4
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    • pp.1-9
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    • 2015
  • 최근 신체의 손상된 조직 및 세포를 재생하기 위해 약물 전달이 가능한 생체재료에 관한 연구가 활발히 이루어지고 있다. 이러한 생체재료 개발을 위해 생체적합하며 생분해성이 뛰어난 천연고분자가 큰 각광을 받고 있다. 기존의 약물 전달을 위한 고정화 방법은 화학적 가교가 널리 이용되어 왔으나, 이 방법의 여러 단점들이 보고된 바 있다. 이러한 단점을 극복하기 위해 광반응성 천연고분자를 이용한 약물광고정화 방법이 연구되어 왔다. 본 글에서는 광고정화를 위해 합성되는 여러 광반응성 천연고분자의 종류 및 특성과 생체재료로써의 활용 방안을 소개하고자 한다.

Evaluation on the biocompatibility, bone cell activity and bone regenerative capacity of chitosan-PLLA bilayer porous membrane (Chitosan-PLLA 다층 다공성 차폐막의 생체적합성, 골세포활성도 및 골재생 능력에 관한 연구)

  • Park, Jun-Beom;Nam, Sung-Heon;Kim, Kyoung-Hwa;Lee, Sang-Chul;Lee, Seung-Jin;Kim, Tae-II;Seol, Yang-Jo;Lee, Yong-Moo;Ku, Young;Rhyu, In-Chul;Han, Soo-Boo;Chung, Chong-Pyoung
    • Journal of Periodontal and Implant Science
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    • v.35 no.3
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    • pp.549-561
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    • 2005
  • 이 연구의 목적은 새로이 제작된 chitosan-poly(L-lactic acid)(PLLA) 다층 다공성 차폐막의 생체적합성 및 골세포활성도 및 골재생능을 평가하는 것이다. 제작된 차폐막을 24 well에 넣고 clonal osteoblast-like cell line(MC3T3-E1)을 접종한 군을 실험군으로, 차폐막을 사용하지 않은 대조군으로 하였다. 배양 1일, 7일 및 14일째에 각 well에서 세포수를 측정하였다. 주사전자현미경을 이용하여 차폐막에 부착된 세포의 형태관찰을 시행하였다. RNA 추출 및 RT-PCR을 실시한 후, agarose gel상에서 전기영동하여 조골세포 표식자인 collagen type I(COL), osteopontin(OP) 및 osteocalcin(OC) mRNA의 발현을 관찰하였다. 제작된 매트릭스의 생체적합성 및 골재생능을 관찰하기 위하여 백서의 두개골에 직경 8mm의 원형 결손부를 형성한 후 차폐막을 이식한 군을 실험군으로, 아무 것도 넣지 않은 군을 대조군으로 하여 4주 경과 후 실험동물을 희생시킨 후 조직학적관찰을 시행하였다. 시간경과에 따른 부착세포수 관찰결과, 배양 14일까지 조골세포의 수가 지속적으로 증가하였고, 주사전자현미경으로 세포의 형태 관찰결과, 배양된 세포들은 중층의 형태로 성장하면서 시간경과에 따라 세포가 응집되는 양상을 나타내었다. 관찰 기간동안 COL, OP, 및 OC mRNA의 발현이 관찰되어 배양 전 기간동안 조골세포의 형질이 잘 유지되고 있음을 알 수 있었다. 백서 두개골 결손부에 이식된 차폐막은 염증반응 없이 주위 조직과 우수한 생체적합성을 나타내었으며, 차폐막을 이식하지 하지 않은 대조군에 비해 높은 신생골 형성을 나타내었다. 이상의 관찰결과로 새로이 제작된 chitosan-PLLA 차폐막은 우수한 생체적합성 및 골재생능을 나타냄을 알 수 있었으며, 향후 이를 골조직 재생 및 치주조직유도재생 분야에 응용될 수 있을 것으로 생각된다.

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

  • Jang, In-Keun;Ahn, Jae-Il;Seo, Yeong-Gwon;Kim, Jae-Chan;Song, Kye-Yong;Park, Jung-Keug
    • KSBB Journal
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    • v.21 no.6 s.101
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    • pp.439-443
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    • 2006
  • Biocompatibility and tissue regenerating capacity are essential characteristics in the design of collagenous biomaterials for tissue engineering. Attachment of glycosaminoglycans to collagen may add to these characteristics by creating an appropriate micro-environment. In this study, porous type I collagen matrices were crosslinked using dehydrothermal treatment and 1-ethyl-3-(3-dimethyl aminopropyl) carbodiimide, in the presence and absence of chondroitin sulfate (CS). The scaffold like discs in 3 mm diameter were inserted into the intralamellar stromal pockets of rabbit cornea. In 8 weeks of follow up, clinical evaluation including corneal neovascularization, opacity and transparency of the graft scaffold was performed, and the inflammatory reaction and migration of corneal fibroblast were evaluated histologically. No inflammation, neovascularization and opacity in any of the implant were observed. CS increased the corneal fibroblast invasion and the transparency. It is concluded that the type I collagen sponge showed a biocompatibility in corneal stromal layer and addition of CS slightly improved the quality of the bioartificial corneal stromal layer. These results could be useful for the development of corneal substitutes.

Surface Modification of Biomaterials for Hard Tissue Substitutes to Improve Biocompatibility and Osteoconductivity (생체적합성 및 골전도성 향상을 위한 경조직 대체용 생체재료의 표면개질)

  • Kim, Sung-Wook;Lee, Woo-Kul
    • Applied Chemistry for Engineering
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    • v.16 no.6
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    • pp.725-730
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    • 2005
  • In the development of biomaterials as a substitute of hard tissues, the biocompatibility and osteoconductivity of the biomaterial are considered to be one of the most significant considerations. These biological properties of a material can be greatly improved by the modification of the surface properties by the depositing calcium phosphate thin films on the material since calcium phosphate films possess similar chemical compositions to hard tissues. The success of a material as a biomaterial will be determined by the interaction of the surface of the material with the adhesion molecules which induce cellular adhesion and biological responses of the adherent cells. Depending on the adsorption mechanisms and adsorbed conformation of the adhesion molecules on the surface of the biomaterial, cellular responses, such as adhesion, proliferation and differentiation of osteoblast cells, can be promoted or restricted. It has been reported that materials of which surfaces were modified with thin films of calcium phosphate appeared to be more osteoconductive. Rapid formations of bone nodule in addition to higher differentiations of osteoblast have been observed on the calcium phosphate thin films.

Preparation of Silica/collagen Microsphere Composit Doped with Silver Nanoparticles (은 나노입자를 담지한 collagen/silica microsphere 복합체의 제조)

  • Jung, Hyo Jung;Kim, Yeon Bum;Chang, Yoon Ho
    • Korean Chemical Engineering Research
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    • v.46 no.4
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    • pp.722-726
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    • 2008
  • Silica microsphere is a world leading innovative material used in adsorbent packing materials in HPLC technology. The application of microsphere lies in the ability to the surface modification of silica with the special materials such as polymers, metals and bio-active materials. Collagen is a major structural protein of connective tissues and has a good biocompatibility. In this study, we prepared the purified silica porous microsphere, having micro diameters in the range of a pore volume at least 50% by the aggregation procedure of colloidal silica with the polymerization method (PICA). The microspheres were modified by collagen hydrogel to improve the biocompatible properties for biomedical product. The silica/collagen microsphere composite doped with silver nanoparticles was prepared and investigated the capabilities of biomaterial application through the evaluation of the structure characteristics of the microsphere composit.

특집:자연모사 그린테크놀로지 - 생체모방 경량 소재 기술

  • Kim, Hyeong-Sun;Kim, Yeong-Hui;Kim, Do-Gyeong
    • 기계와재료
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    • v.23 no.4
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    • pp.36-44
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    • 2011
  • 생체모방 경량 나노복합 에코소재기술은 자연계에 존재하는 물질의 구조를 모방하여 저온 저에너지 소모공정을 통하여 고경량 및 고강도를 갖는 나노복합체를 제조하는 친환경 신소재 기술이다. 고효율 저공해 성능에 초점을 맞추어 $CO_2$ 배출 및 지구온난화를 억제하고 웰빙사회에 적합한 차량을 개발하는 것이 현재 전세계 자동차회사들의 주된 관심사이다. 이러한 상황에 생체모방기술은 에너지 환경산업분야의 소재로 응용하는 원천기술로 기대된다. 이 생체모방기술은 자연 친화적 재료를 개발하여 하이브리드/전기 자동차의 내/외장재, 고효율 건축자재, 첨단 항공우주 신소재에도 응용이 가능하다. 최근에 보고된 생체모방 경량 나노 복합 에코소재 기술을 조사하였다.

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