• 제목/요약/키워드: chloric acid mixture solution

검색결과 2건 처리시간 0.019초

염소산 처리된 Poly($\alpha$-hydroxy acid)계 고분자 표면과 섬유아세포의 상호작용 (Interaction of Fibroblast Cells onto Chloric Acid-treated Poly($\alpha$-hydroxy acid) Polymer Surfaces)

  • 이상진;강길선;이진호;이영무;이해방
    • 폴리머
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    • 제24권6호
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    • pp.877-885
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    • 2000
  • 본 연구에서는 폴리락타이드 (PLA), 폴리글리콜라이드 (PGA) 그리고 이들의 공중합체인 PLGA 필름을 염소산 혼합용액 [70% 과염소산 (HClO$_4$)/포타슘 클로레이트 (KClO$_3$) 포화 수용액, 3 : 2]으로 처리하여 표면의 젖음성과 세포적합성을 증가시켰다. 표면 처리된 고분자의 표면을 물접촉각 측정과 ESCA, SEM으로 특성결정하였다. 염소산 처리된 PLA, PGA, 및 PLGA의 표면 젖음성은 처리시간이 증가함에 따라 증가되었고 이들 고분자 필름은 기존의 에탄을 전처리와 달리 건조 후에도 친수성 표면을 유지하였다. 세포 점착실험은 섬유아세포를 염소산 처리된 필름의 표면에서 1일 및 2일 배양하였고 표면의 젖음성이 증가함에 따라 세포의 점착도 우세하였다. 결론적으로 본 연구에서는 표면의 젖음성은 세포의 점착과 증식 거동에 중요한 역할을 한다는 것을 증명하였다.

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Effect of Poly(3-hydroxibutyrate-co-3-hydroxivalerate) Surface with Different Wettability on Fibroblast Behavior

  • Lee, Sang-Jin;Lee, Young-Moo;Khang, Gilson;Kim, Un-Young;Lee, Bong;Lee, Hai-Bang
    • Macromolecular Research
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    • 제10권3호
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    • pp.150-157
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    • 2002
  • Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) is a microbial storage polymer with biodegradable properties. In order to improve the cell compatibility of PHBV surfaces, the physicochemical treatments have been demonstrated. In this study, physical method was corona discharge treatment and chemical method was chloric acid mixture solution treatment. The physicochemically treated PHBV film surfaces were characterized by the measurement of water contact angle, electron spectroscopy for chemical analysis, and scanning electron microscopy (SEM). The water contact angle of the physicochemically treated PHBV surfaces decreased from 75 to 30~40 degree, increased hydrophilicity. due to the introduction of oxygen-based functional group onto the PHBV backbone chain. The mouse NIH/3T3 fibroblasts cultured onto the physicochemically treated PHBV film surfaces with different wettability. The effect of the PHBV surface with different wettability was determined by SEM as counts of cell number and [$^3$H]thymidine incorporation as measures of cell proliferation. As the surface wettability increased, the number of the cell adhered and proliferated on the surface was increased. The result seems closely related with the serum protein adsorption on the physicochemically treated PHBV surface. In conclusion, this study demonstrated that the surface wettabilily of biodegradable polymer as the PHBV plays an important role for cell adhesion and proliferation behavior for biomedical application.