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硅基乳房植入物的化学指纹图谱分析

Chemical fingerprinting of silicone-based breast implants.

作者信息

Keizers Peter H J, Vredenbregt Marjo J, Bakker Frank, de Kaste Dries, Venhuis Bastiaan J

机构信息

National Institute for Public Health and the Environment, PO Box 1, 3721 MA, Bilthoven, The Netherlands.

National Institute for Public Health and the Environment, PO Box 1, 3721 MA, Bilthoven, The Netherlands.

出版信息

J Pharm Biomed Anal. 2015 Jan;102:340-5. doi: 10.1016/j.jpba.2014.09.008. Epub 2014 Sep 16.

Abstract

With millions of women worldwide carrying them, silicone-based breast implants represent a large market. Even though silicone breast implants already have a history of use of more than 50 years, the discussion on their safety has not yet come to an end. To improve safety assessment, regulatory authorities should have the availability of a set of tests to be able to determine parameters of implant identity and quality. Therefore, the gels and envelopes of various brands and types of silicone-based breast implants have been subjected to infrared, Raman and NMR spectroscopy. We show that by using a combination of complementary spectroscopic techniques breast implants of various origins can be distinguished on typical chemical hallmarks. It was found that typical silicone-based implants display a surplus of vinyl signals in the gel, cyclosiloxane impurities are tolerable at low levels only and a barrier layer is present in the implant envelope. The techniques presented here and the results obtained offer a good starting point for market surveillance studies.

摘要

全球有数百万女性使用硅胶乳房植入物,这代表着一个庞大的市场。尽管硅胶乳房植入物已有50多年的使用历史,但关于其安全性的讨论仍未结束。为了改进安全性评估,监管机构应具备一套测试方法,以便能够确定植入物的身份和质量参数。因此,各种品牌和类型的硅胶乳房植入物的凝胶和包膜都接受了红外光谱、拉曼光谱和核磁共振光谱分析。我们表明,通过结合使用互补的光谱技术,可以根据典型的化学特征区分不同来源的乳房植入物。研究发现,典型的硅胶基植入物在凝胶中显示出过量的乙烯基信号,环硅氧烷杂质仅在低水平时才可耐受,并且植入物包膜中存在一个阻挡层。本文介绍的技术和获得的结果为市场监督研究提供了一个良好的起点。

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