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Novel anti-calcification treatment of biological tissues by grafting of sulphonated poly(ethylene oxide)
- Park K.D.;
- Lee W.K.;
- Yun J.Y.;
- Han D.K.;
- Kim S.H.;
- ... Kim K.T.;
- 외 2명
SCOPUS
48초록
Biological porcine tissue was modified by the direct coupling of sulphonated poly(ethylene oxide) (PEO-SO3) containing amino end groups after glutaraldehyde fixation. The calcification of the modified tissue [bioprosthetic tissue (BT)-PEO-SO3] and control (BT control) was investigated by in vivo rate subdermal, canine aorta-illiac shunt and right ventricle-pulmonary artery shunt implantation models. Less calcium deposition of BT-PEO-SO3 than of BT control was observed in in vivo tests. Such a reduced calcification of BT-PEO-SO3 can be explained by decreases of residual glutaraldehyde groups, a space filling effect and, therefore, improved biostability and synergistic blood-compatible effects of PEO and SO3 groups after the covalent binding of PEG-SO3 to tissue. This simple method can be a useful anti-calcification treatment for implantable tissue valves.Biological porcine tissue was modified by the direct coupling of sulphonated poly(ethylene oxide) (PEO-SO3) containing amino end groups after glutaraldehyde fixation. The calcification of the modified tissue [bioprosthetic tissue (BT)-PEO-SO3] and control (BT control) was investigated by in vivo rate subdermal, canine aorta-illiac shunt and right ventricle-pulmonary artery shunt implantation models. Less calcium deposition of BT-PEO-SO3 than of BT control was observed in in vivo tests. Such a reduced calcification of BT-PEO-SO3 can be explained by decreases of residual glutaraldehyde groups, a space filling effect and, therefore, improved biostability and synergistic blood-compatible effects of PEO and SO3 groups after the covalent binding of PEO-SO3 to tissue. This simple method can be a useful anti-calcification treatment for implantable tissue valves.
키워드
- 제목
- Novel anti-calcification treatment of biological tissues by grafting of sulphonated poly(ethylene oxide)
- 저자
- Park K.D.; Lee W.K.; Yun J.Y.; Han D.K.; Kim S.H.; Kim Y.H.; Kim H.M.; Kim K.T.
- 발행일
- 1997
- 유형
- Article
- 저널명
- Biomaterials
- 권
- 18
- 호
- 1
- 페이지
- 47 ~ 51
- 언어
- ENG
- 출판사
- Elsevier Science Ltd, Oxford, United Kingdom
- 발행국가
- 영국
- 분량
- 5 페이지
- ISSN
- E 1878-5905
P 0142-9612