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介孔硅的潜在应用和基于增材制造技术的考虑因素:综述

Potential Applications and Additive Manufacturing Technology-Based Considerations of Mesoporous Silica: A Review.

机构信息

Sigma Institute of Pharmacy, Vadodara, Gujarat, 390019, India.

Department of Pharmaceutical Sciences, Faculty of Pharmacy, Chiang Mai University, Chiang Mai, 50200, Thailand.

出版信息

AAPS PharmSciTech. 2023 Dec 21;25(1):6. doi: 10.1208/s12249-023-02720-7.

Abstract

Nanoporous materials are categorized as microporous (pore sizes 0.2-2 nm), mesoporous (pore sizes 2-50 nm), and macroporous (pore sizes 50-1000 nm). Mesoporous silica (MS) has gained a significant interest due to its notable characteristics, including organized pore networks, specific surface areas, and the ability to be integrated in a variety of morphologies. Recently, MS has been widely accepted by range of manufacturer and as drug carrier. Moreover, silica nanoparticles containing mesopores, also known as mesoporous silica nanoparticles (MSNs), have attracted widespread attention in additive manufacturing (AM). AM commonly known as three-dimensional printing is the formalized rapid prototyping (RP) technology. AM techniques, in comparison to conventional methods, aid in reducing the necessity for tooling and allow versatility in product and design customization. There are generally several types of AM processes reported including VAT polymerization (VP), powder bed fusion (PBF), sheet lamination (SL), material extrusion (ME), binder jetting (BJ), direct energy deposition (DED), and material jetting (MJ). Furthermore, AM techniques are utilized in fabrication of various classified fields such as architectural modeling, fuel cell manufacturing, lightweight machines, medical, and fabrication of drug delivery systems. The review concisely elaborates on applications of mesoporous silica as versatile material in fabrication of various AM-based pharmaceutical products with an elaboration on various AM techniques to reduce the knowledge gap.

摘要

纳米多孔材料可分为微孔(孔径为 0.2-2nm)、介孔(孔径为 2-50nm)和大孔(孔径为 50-1000nm)。介孔硅(MS)由于其显著的特性,包括有组织的孔网络、比表面积和能够集成多种形态,因此引起了极大的关注。最近,MS 已被广泛接受,被众多制造商用作药物载体。此外,含有介孔的硅纳米粒子,也称为介孔硅纳米粒子(MSNs),在增材制造(AM)中引起了广泛关注。AM 通常称为三维打印,是正式的快速原型(RP)技术。与传统方法相比,AM 技术有助于减少对工具的需求,并允许产品和设计定制的多功能性。一般来说,有几种类型的 AM 工艺被报道,包括 vat 聚合(VP)、粉末床融合(PBF)、片层融合(SL)、材料挤出(ME)、粘结剂喷射(BJ)、直接能量沉积(DED)和材料喷射(MJ)。此外,AM 技术还用于制造各种分类领域,如建筑模型、燃料电池制造、轻型机器、医疗和药物输送系统的制造。本综述简要阐述了介孔硅作为多功能材料在各种基于 AM 的制药产品制造中的应用,并详细介绍了各种 AM 技术,以缩小知识差距。

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