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通过基于材料挤出的增材制造制备的个性化尿道子宫托。

Personalised urethra pessaries prepared by material extrusion-based additive manufacturing.

作者信息

Spoerk Martin, Arbeiter Florian, Koutsamanis Ioannis, Cajner Hrvoje, Katschnig Matthias, Eder Simone

机构信息

Research Center Pharmaceutical Engineering GmbH, Inffeldgasse 13, 8010 Graz, Austria.

Materials Science and Testing of Polymers, Montanuniversitaet Leoben, Otto Gloeckel-Straße 2, 8700 Leoben, Austria.

出版信息

Int J Pharm. 2021 Oct 25;608:121112. doi: 10.1016/j.ijpharm.2021.121112. Epub 2021 Sep 20.

Abstract

Material extrusion-based additive manufacturing, commonly referred to as 3D-printing, is regarded as the key technology to pave the way for personalised medical treatment. This study explores the technique's potential in customising vaginal inserts with complex structures, so-called urethra pessaries. A novel, flawlessly 3D-printable and biocompatible polyester-based thermoplastic elastomer serves as the feedstock. Next to the smart selection of the 3D-printing parameters cross-sectional diameter and infill to tailor the pessary's mechanical properties, we elaborate test methods accounting for its application-specific requirements for the first time. The key property, i.e. the force the pessary exerts on the urethra to relief symptoms of urinary incontinence, is reliably adjusted within a broad range, including that of the commercial injection-moulded silicone product. The pessaries do not change upon long-term exposure to vaginal fluid simulant and compression (in-vivo conditions), satisfying the needs of repeated pessary use. Importantly, the vast majority of the 3D-printed pessaries allows for self-insertion and self-removal without any induced pessary rupture. Summarising, 3D-printed pessaries are not only a reasonable alternative to the commercial products, but build the basis to effectively treat inhomogeneous patient groups. They make the simple but very effective pessary therapy finally accessible to every woman.

摘要

基于材料挤出的增材制造,通常称为3D打印,被视为为个性化医疗铺平道路的关键技术。本研究探讨了该技术在定制具有复杂结构的阴道插入物(即所谓的尿道子宫托)方面的潜力。一种新型的、可完美3D打印且具有生物相容性的聚酯基热塑性弹性体用作原料。除了巧妙选择3D打印参数(横截面直径和填充率)以调整子宫托的机械性能外,我们还首次详细阐述了考虑其特定应用要求的测试方法。关键特性,即子宫托对尿道施加的缓解尿失禁症状的力,可在很宽的范围内可靠地调整,包括商业注塑硅胶产品的范围。子宫托在长期暴露于阴道液模拟物和压缩(体内条件)下不会发生变化,满足了子宫托重复使用的需求。重要的是,绝大多数3D打印的子宫托允许自行插入和自行取出,而不会导致子宫托破裂。总之,3D打印的子宫托不仅是商业产品的合理替代品,而且为有效治疗异质患者群体奠定了基础。它们使简单但非常有效的子宫托疗法最终可供每位女性使用。

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