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用于生物医学应用的新型磁共振成像可见聚(己内酯)基聚酯。

New magnetic-resonance-imaging-visible poly(ε-caprolactone)-based polyester for biomedical applications.

机构信息

Max Mousseron Institute of Biomolecules (IBMM), UMR CNRS 5247, Universities Montpellier I and II, Faculty of Pharmacy, 15 Av. C. Flahault, Montpellier F34093, France.

出版信息

Acta Biomater. 2012 Mar;8(3):1339-47. doi: 10.1016/j.actbio.2011.11.009. Epub 2011 Nov 11.

Abstract

A great deal of effort has been made since the 1990s to enlarge the field of magnetic resonance imaging. Better tissue contrast, more biocompatible contrast agents and the absence of any radiation for the patient are some of the many advantages of using magnetic resonance imaging (MRI) rather than X-ray technology. But implantable medical devices cannot be visualized by conventional MRI and a tool therefore needs to be developed to rectify this. The synthesis of a new MRI-visible degradable polymer is described by grafting an MR contrast agent (DTPA-Gd) to a non-water-soluble, biocompatible and degradable poly(ε-caprolactone) (PCL). The substitution degree, calculated by (1)H nuclear magnetic resonance and inductively coupled plasma-mass spectrometry, is close to 0.5% and proves to be sufficient to provide a strong and clear T1 contrast enhancement. This new MRI-visible polymer was coated onto a commercial mesh for tissue reinforcement using an airbrush system and enabled in vitro MR visualization of the mesh for at least 1 year. A stability study of the DTPA-Gd-PCL chelate in phosphate-buffered saline showed that a very low amount of gadolinium was released into the medium over 52 weeks, guaranteeing the safety of the device. This study shows that this new MRI-visible polymer has great potential for the MR visualization of implantable medical devices and therefore the post-operative management of patients.

摘要

自 20 世纪 90 年代以来,人们付出了大量努力来扩大磁共振成像的应用领域。与 X 射线技术相比,磁共振成像具有更好的组织对比度、更具生物相容性的对比剂以及对患者无任何辐射等诸多优势。但是,常规磁共振成像无法显示植入式医疗器械,因此需要开发一种工具来解决这个问题。本文通过将磁共振成像对比剂(DTPA-Gd)接枝到非水溶性、生物相容和可降解的聚(ε-己内酯)(PCL)上,合成了一种新的磁共振成像可见的可降解聚合物。通过 1H 核磁共振和电感耦合等离子体质谱法计算的取代度接近 0.5%,足以提供强烈而清晰的 T1 对比增强。将这种新的磁共振成像可见聚合物使用喷枪系统涂覆到商业网片上,用于组织增强,可使网片在体外进行至少 1 年的磁共振可视化。在磷酸盐缓冲盐溶液中对 DTPA-Gd-PCL 螯合物的稳定性研究表明,在 52 周内仅有极少量的钆被释放到介质中,从而保证了装置的安全性。这项研究表明,这种新的磁共振成像可见聚合物具有很大的潜力,可以用于植入式医疗器械的磁共振可视化,从而实现对患者的术后管理。

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