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喷雾冷冻干燥最新趋势综合评述及与传统技术的对比见解

A Comprehensive Review of the Latest Trends in Spray Freeze Drying and Comparative Insights with Conventional Technologies.

作者信息

Ioannou Sartzi Maria, Drettas Dimitrios, Stramarkou Marina, Krokida Magdalini

机构信息

Laboratory of Process Analysis and Design, School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechneiou St. Zografou Campus, 15780 Athens, Greece.

出版信息

Pharmaceutics. 2024 Nov 29;16(12):1533. doi: 10.3390/pharmaceutics16121533.

Abstract

Spray freeze drying (SFD) represents an emerging drying technique designed to produce a wide range of pharmaceuticals, foods, and active components with high quality and enhanced stability due to their unique structural characteristics. This method combines the advantages of the well-established techniques of freeze drying (FD) and spray drying (SD) while overcoming their challenges related to high process temperatures and durations. This is why SFD has experienced steady growth in recent years regarding not only the research interest, which is reflected by the increasing number of literature articles, but most importantly, the expanded market adoption, particularly in the pharmaceutical sector. Despite its potential, the high initial investment costs and complex operational requirements may hinder its growth. This paper provides a comprehensive review of the SFD technology, highlighting its advantages over conventional drying techniques and presenting its latest applications focused on pharmaceuticals. It also offers a thorough examination of the principles and the various parameters influencing the process for a better understanding and optimization of the process according to the needs of the final product. Finally, the current limitations of SFD are discussed, and future directions for addressing the economic and technical barriers are provided so that SFD can be widely industrialized, unlocking its full potential for diverse applications.

摘要

喷雾冷冻干燥(SFD)是一种新兴的干燥技术,旨在生产各种高质量且稳定性增强的药品、食品和活性成分,这得益于其独特的结构特征。该方法结合了成熟的冷冻干燥(FD)和喷雾干燥(SD)技术的优点,同时克服了它们在高加工温度和时长方面的挑战。这就是为什么近年来SFD不仅在研究兴趣方面稳步增长(这体现在文献数量的增加上),而且更重要的是,在市场应用方面得到了扩展,尤其是在制药领域。尽管具有潜力,但高昂的初始投资成本和复杂的操作要求可能会阻碍其发展。本文对SFD技术进行了全面综述,强调了其相对于传统干燥技术的优势,并介绍了其专注于制药领域的最新应用。它还对该工艺的原理和影响工艺的各种参数进行了深入研究,以便根据最终产品的需求更好地理解和优化该工艺。最后,讨论了SFD目前的局限性,并提供了解决经济和技术障碍的未来方向,以便SFD能够广泛实现工业化,释放其在各种应用中的全部潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b649/11679755/373bdcbe0abe/pharmaceutics-16-01533-g001.jpg

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