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用于人工胰腺中胰岛素储存库的环烯烃共聚物的表征

Characterization of Cyclic Olefin Copolymers for Insulin Reservoir in an Artificial Pancreas.

作者信息

Mallegni Norma, Milazzo Mario, Cristallini Caterina, Barbani Niccoletta, Fredi Giulia, Dorigato Andrea, Cinelli Patrizia, Danti Serena

机构信息

Department of Civil and Industrial Engineering, University of Pisa, Largo Lucio Lazzarino, 56126 Pisa, Italy.

National Interuniversity Consortium for Materials Science and Technology (INSTM), Via Giuseppe Giusti 9, 50121 Florence, Italy.

出版信息

J Funct Biomater. 2023 Mar 4;14(3):145. doi: 10.3390/jfb14030145.

Abstract

Type-1 diabetes is one of the most prevalent metabolic disorders worldwide. It results in a significant lack of insulin production by the pancreas and the ensuing hyperglycemia, which needs to be regulated through a tailored administration of insulin throughout the day. Recent studies have shown great advancements in developing an implantable artificial pancreas. However, some improvements are still required, including the optimal biomaterials and technologies to produce the implantable insulin reservoir. Here, we discuss the employment of two types of cyclic olefin copolymers (Topas 5013L-10 and Topas 8007S-04) for an insulin reservoir fabrication. After a preliminary thermomechanical analysis, Topas 8007S-04 was selected as the best material to fabricate a 3D-printed insulin reservoir due to its higher strength and lower glass transition temperature (T). Fiber deposition modeling was used to manufacture a reservoir-like structure, which was employed to assess the ability of the material to prevent insulin aggregation. Although the surface texture presents a localized roughness, the ultraviolet analysis did not detect any significant insulin aggregation over a timeframe of 14 days. These interesting results make Topas 8007S-04 cyclic olefin copolymer a potential candidate biomaterial for fabricating structural components in an implantable artificial pancreas.

摘要

1型糖尿病是全球最常见的代谢紊乱疾病之一。它导致胰腺胰岛素分泌显著不足,进而引发高血糖,这需要通过全天定制的胰岛素给药来调节。最近的研究表明,在开发可植入人工胰腺方面取得了巨大进展。然而,仍需要一些改进,包括用于生产可植入胰岛素储库的最佳生物材料和技术。在这里,我们讨论了两种环烯烃共聚物(Topas 5013L-10和Topas 8007S-04)在胰岛素储库制造中的应用。经过初步热机械分析,由于Topas 8007S-04具有更高的强度和更低的玻璃化转变温度(T),被选为制造3D打印胰岛素储库的最佳材料。采用纤维沉积建模制造了类似储库的结构,用于评估该材料防止胰岛素聚集的能力。尽管表面纹理存在局部粗糙度,但紫外线分析在14天的时间范围内未检测到任何明显的胰岛素聚集。这些有趣的结果使Topas 8007S-04环烯烃共聚物成为制造可植入人工胰腺结构部件的潜在候选生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fc1/10053537/e082b6b15afd/jfb-14-00145-g001.jpg

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