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三维到四维结构:在生物医学应用中的探索。

3D-to-4D Structures: an Exploration in Biomedical Applications.

机构信息

Shobhaben Pratapbhai Patel School of Pharmacy and Technology Management, SVKM'S NMIMS, V. L. Mehta Road, Vile Parle (W), Mumbai, India.

出版信息

AAPS PharmSciTech. 2023 Aug 3;24(6):163. doi: 10.1208/s12249-023-02626-4.

Abstract

3D printing is a cutting-edge technique for manufacturing pharmaceutical drugs (Spritam), polypills (guaifenesin), nanosuspension (folic acid), and hydrogels (ibuprofen) with limitations like the choice of materials, restricted size of manufacturing, and design errors at lower and higher dimensions. In contrast, 4D printing represents an advancement on 3D printing, incorporating active materials like shape memory polymers and liquid crystal elastomers enabling printed objects to change shape in response to stimuli. 4D printing offers numerous benefits, including greater printing capacity, higher manufacturing efficiency, improved quality, lower production costs, reduced carbon footprint, and the ability to produce a wider range of products with greater potential. Recent examples of 4D printing advancements in the clinical setting include the development of artificial intravesicular implants for bladder disorders, 4D-printed hearts for transplant, splints for tracheobronchomalacia, microneedles for tissue wound healing, hydrogel capsules for ulcers, and theragrippers for anticancer drug delivery. This review highlights the advantages of 4D printing over 3D printing, recent applications in manufacturing smart pharmaceutical drug delivery systems with localized action, lower incidence of drug administration, and better patient compliance. It is recommended to conduct substantial research to further investigate the development and applicability of 4D printing in the future.

摘要

3D 打印是一种制造药物(Spritam)、复方药丸(愈创甘油醚)、纳米混悬剂(叶酸)和水凝胶(布洛芬)的前沿技术,其局限性包括材料选择、制造尺寸受限以及在较低和较高维度上的设计错误。相比之下,4D 打印是 3D 打印的一种进步,它结合了形状记忆聚合物和液晶弹性体等活性材料,使打印物体能够响应刺激而改变形状。4D 打印具有许多优势,包括更大的打印能力、更高的制造效率、更高的质量、更低的生产成本、更小的碳足迹以及生产更广泛、潜在更大的产品的能力。最近在临床环境中 4D 打印的进展包括开发用于治疗膀胱疾病的人工腔内植入物、用于移植的 4D 打印心脏、治疗气管支气管软化的夹板、用于组织伤口愈合的微针、用于溃疡的水凝胶胶囊和用于抗癌药物输送的 theragrippers。本文综述了 4D 打印相对于 3D 打印的优势、最近在制造具有局部作用、降低药物管理不良事件发生率和提高患者顺应性的智能药物输送系统方面的应用。建议进行大量研究,以进一步探讨 4D 打印在未来的发展和适用性。

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