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一种生物相容的 4D 打印形状记忆聚合物,作为可展开医疗设备制造的新兴策略。

A Biocompatible 4D Printing Shape Memory Polymer as Emerging Strategy for Fabrication of Deployable Medical Devices.

机构信息

Lanzhou University Second Hospital, Lanzhou, 730000, P. R. China.

Key Laboratory of Science and Technology on Wear and protection of Materials, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, P. R. China.

出版信息

Macromol Rapid Commun. 2023 Jan;44(2):e2200553. doi: 10.1002/marc.202200553. Epub 2022 Sep 3.

DOI:10.1002/marc.202200553
PMID:36029168
Abstract

The rapid development of 4D printing provides a potential strategy for the fabrication of deployable medical devices (DMD). The minimally invasive surgery to implant the DMD into the body is critical, 4D printing DMD allows the well-defined device to be implanted with a high-compacted shape and transformed into their designed shape to meet the requirement. Herein, a 4D printing tissue engineering material is developed with excellent biocompatibility and shape memory effect based on the photocrosslinked polycaprolactone (PCL). The fast thiol-acrylate click reaction is applied for photocrosslinking of the acrylates capped star polymer (s-PCL-MA) with poly-thiols, that enable the 3D printing for the DMD fabrication. The cell viability, erythrocyte hemolysis, and platelet adhesion results indicate the excellent biocompatibility of the 4D printing polymer, especially the biological subcutaneous implantation results confirm the promote tissue growth and good histocompatibility. A 4D printing stent with deformable shape and recovery at a temperature close to human body temperature demonstrated the potential application as DMD. In addition, the everolimus is loaded to the polymer (ps1-PCL) through host-guest coordination with β-cyclodextrin as the core of the star polymer, which shows sustained drug release and improved body's inflammatory response.

摘要

4D 打印的快速发展为可展开医疗设备(DMD)的制造提供了一种潜在的策略。将 DMD 微创植入体内是至关重要的,4D 打印 DMD 允许将定义明确的设备以高紧凑形状植入,并转化为其设计形状以满足要求。在此,开发了一种基于光交联聚己内酯(PCL)的具有优异生物相容性和形状记忆效应的 4D 打印组织工程材料。快速巯基-丙烯酸点击反应被应用于带有聚硫醇的丙烯酸封端星型聚合物(s-PCL-MA)的光交联,这使得能够用于 DMD 制造的 3D 打印。细胞活力、红细胞溶血和血小板黏附结果表明 4D 打印聚合物具有优异的生物相容性,特别是生物皮下植入结果证实了其促进组织生长和良好的组织相容性。具有可变形形状和在接近人体温度下恢复的 4D 打印支架展示了作为 DMD 的潜在应用。此外,通过主客体配位将埃罗莫司载入聚合物(ps1-PCL),β-环糊精作为星型聚合物的核心,其表现出持续的药物释放和改善了机体的炎症反应。

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