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聚乙二醇/微纤维胶原复合材料作为一种新型可吸收止血骨蜡。

Polyethylene glycol/microfibrillar collagen composite as a new resorbable hemostatic bone wax.

作者信息

Orgill D P, Ehret F W, Regan J F, Glowacki J, Mulliken J B

机构信息

Division of Plastic Surgery, Brigham and Women's Hospital, Boston, Massachusetts 02115, USA.

出版信息

J Biomed Mater Res. 1998 Mar 5;39(3):358-63. doi: 10.1002/(sici)1097-4636(19980305)39:3<358::aid-jbm3>3.0.co;2-i.

Abstract

Although bone wax is effective at achieving hemostasis, it is nonresorbable, causes a foreign body reaction, and inhibits osteogenesis. We report development of a polyethylene glycol/microfibrillar collagen composite (PEG/MFC) that has inherent hemostatic qualities, is biodegradable, and is compatible with bone repair. PEG/MFC composite (n = 42) was placed in 5 mm cranial defects in New Zealand white rabbits. Hemostasis and healing were compared to unfilled defects (n = 32) and defects filled with standard bone wax (n = 10). Both PEG/MFC and bone wax handled well and stopped bleeding. The polyethylene glycol component was resorbed by 8 h, and the microfibrillar collagen was resorbed over 2 months, eliciting only a minor inflammatory response during the first month. Defects filled with the PEG/MFC composite showed similar amounts of bony regeneration as did unfilled control defects. At 4 weeks, healing bone accounted for 43 +/- 13% in those treated with PEG/MFC and 47 +/- 19% defect area in untreated holes. In contrast, less than 1% of the area was bone in defects filled with bone wax (p < 0.05). PEG/MFC composite provided excellent bony hemostasis and did not inhibit bone growth.

摘要

尽管骨蜡在实现止血方面有效,但它不可吸收,会引起异物反应,并抑制骨生成。我们报告了一种聚乙二醇/微纤维胶原复合材料(PEG/MFC)的研发情况,该材料具有固有的止血特性,可生物降解,且与骨修复兼容。将PEG/MFC复合材料(n = 42)植入新西兰白兔5毫米的颅骨缺损处。将止血和愈合情况与未填充缺损(n = 32)以及填充标准骨蜡的缺损(n = 10)进行比较。PEG/MFC和骨蜡都易于操作且能止血。聚乙二醇成分在8小时内被吸收,微纤维胶原在2个月内被吸收,在第一个月仅引发轻微的炎症反应。填充PEG/MFC复合材料的缺损显示出与未填充对照缺损相似的骨再生量。在4周时,用PEG/MFC治疗的缺损处愈合骨占43±13%,未治疗的缺损处为47±19%。相比之下,填充骨蜡的缺损处骨面积不到1%(p < 0.05)。PEG/MFC复合材料提供了出色的骨止血效果,且不抑制骨生长。

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