首页> 外文会议>Chiang Mai International Conference on Biomaterials and Applications >Molecular Design of a Speciality Polyester for Potential Use as a Fast-Absorbable Monofilament Surgical Suture
【24h】

Molecular Design of a Speciality Polyester for Potential Use as a Fast-Absorbable Monofilament Surgical Suture

机译:一种特种聚酯的分子设计,潜在用作可快速吸收单丝手术缝合线

获取原文

摘要

This paper describes the molecular design of a speciality polyester for use as a fast-absorbable monofilament surgical suture. In the surgical context, "fast-absorbable" means tensile strength loss within a period of 10-14 days, the minimum period required for secure wound approximation, after which the suture gradually loses its mass integrity leading to complete mass loss within 2-3 months. In order to be fast-absorbable, it is necessary that the main monomer used in synthesizing the polymer is glycolide since the polymer repeating unit, -OCH_2CO-, is the chemical structure which hydrolyses the most rapidly in the human body. However, glycolide alone would give a monofilament suture fibre which would be too stiff and unwieldy for practical purposes and so it needs to be copolymerised with other cyclic ester monomers such as L-lactide and caprolactone to modify its mechanical properties. In this way, a monofilament fibre can be obtained which has an appropriate balance of hydrolysability and flexibility. Thus, this work enters the realm of "molecular engineering" insofar that it involves the strict control of both the chemical and physical microstructure of the polymer during the synthesis and processing steps respectively. This paper will describe how this controlled molecular architecture can be achieved and some preliminary results will be presented.
机译:本文介绍了一种用作可快速可吸收单丝手术缝合线的特种聚酯的分子设计。在手术背景下,“可快速吸收”是指在10-14天的时间内的拉伸强度损失,安全伤口近似所需的最小期间,之后缝合线逐渐失去其质量完整,导致2-3内完全质量损失。几个月。为了可快速吸收,必须在合成聚合物的主要单体是乙酰胺,因为聚合物重复单元-OOCH_2CO-是水解在人体中最迅速的化学结构。然而,单独的乙酰胺将产生单丝缝合纤维,其对于实际目的,这将过于僵硬和笨重,因此需要与其他环状酯单体如L-丙交酯和己内酯共聚,以改变其机械性能。以这种方式,可以获得单丝纤维,其具有适当的水解性和柔韧性平衡。因此,这项工作进入了“分子工程”的领域,即它涉及分别在合成和处理步骤期间严格控制聚合物的化学和物理微观结构。本文将描述如何实现这种受控分子结构,并且将出现一些初步结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号