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药物递送系统制造的一个新兴时代:纳米制造技术。

An emerging era in manufacturing of drug delivery systems: Nanofabrication techniques.

作者信息

Pingale Prashant, Kendre Prakash, Pardeshi Krutika, Rajput Amarjitsing

机构信息

Department of Pharmaceutics, GES's Sir Dr. M. S. Gosavi College of Pharmaceutical Education and Research, Nashik 422005, Maharashtra, India.

Department of Pharmaceutics, Rajarshi Shahu College of Pharmacy, At Post-Malvihir, Botha Road, Tal. Buldana, Dist. Buldana, 422005, Maharashtra, India.

出版信息

Heliyon. 2023 Mar 4;9(3):e14247. doi: 10.1016/j.heliyon.2023.e14247. eCollection 2023 Mar.

Abstract

Nanotechnology has the capability of making significant contributions to healthcare. Nanofabrication of multifunctional nano- or micro-character systems is becoming incredibly influential in various sectors like electronics, photonics, energy, and biomedical gadgets worldwide. The invention of such items led to the merger of moderate cost and excellent quality nano or micro-characters into 3D structures. Nanofabrication techniques have many benefits as the primary technology for manipulating cellular surroundings to research signaling processes. The inherent nanoscale mechanisms of cyto-reactions include the existence and death of cells, stem cell segmentation, multiplication, cellular relocation, etc. Nanofabrication is essential in developing various nano-formulations like solid lipid nanoparticles, nanostructured lipid carriers, liposomes, niosomes, nanoemulsions, microemulsions etc. Despite the initial development cost in designing the nanofabrication-based products, it has also reduced the total cost of the healthcare system by considering the added benefits compared to the other standard formulations. Thus, the current review mainly focuses on nanofabrication techniques, advantages, disadvantages, applications in developing various nanocarrier systems, challenges and future perspectives.

摘要

纳米技术有能力为医疗保健做出重大贡献。多功能纳米或微特征系统的纳米制造在全球电子、光子学、能源和生物医学设备等各个领域正变得极具影响力。此类物品的发明导致了中等成本和卓越质量的纳米或微特征合并到三维结构中。纳米制造技术作为操纵细胞环境以研究信号传导过程的主要技术有诸多益处。细胞反应的固有纳米级机制包括细胞的存活与死亡、干细胞分裂、增殖、细胞迁移等。纳米制造在开发各种纳米制剂如固体脂质纳米粒、纳米结构脂质载体、脂质体、非离子表面活性剂泡囊、纳米乳剂、微乳剂等方面至关重要。尽管设计基于纳米制造的产品初期开发成本较高,但与其他标准制剂相比,考虑到其附加益处,它也降低了医疗保健系统的总成本。因此,本综述主要关注纳米制造技术、优点、缺点、在开发各种纳米载体系统中的应用、挑战和未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28ab/10018573/36dd28577ab7/ga1.jpg

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