4.6 Review

Freeze-drying revolution: unleashing the potential of lyophilization in advancing drug delivery systems

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SPRINGER HEIDELBERG
DOI: 10.1007/s13346-023-01477-7

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Lyophilization; Freeze-drying; Nanoparticles; Drug delivery; Cryoprotectant

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Lyophilization, also known as freeze-drying, is a technique utilized to enhance the long-term durability of nanoparticles for drug delivery applications. The process can cause stress to the nanoparticles, which can be alleviated by incorporating excipients, but it is important to optimize formulations and drying cycles to maintain stability. Proper characterization of the lyophilizate and nanoparticles is crucial for achieving these goals. This review discusses recent advancements in the field, addresses limitations, and suggests potential future directions for research.
Lyophilization also known as freeze-drying is a technique that has been employed to enhance the long-term durability of nanoparticles (NPs) that are utilized for drug delivery applications. This method is used to prevent their instability in suspension. However, this dehydration process can cause stress to the NPs, which can be alleviated by the incorporation of excipients like cryoprotectants and lyoprotectants. Nevertheless, the freeze-drying of NPs is often based on empirical principles without considering the physical-chemical properties of the formulations and the engineering principles of freeze-drying. For this reason, it is crucial to optimize the formulations and the freeze-drying cycle to obtain a good lyophilizate and ensure the preservation of NPs stability. Moreover, proper characterization of the lyophilizate and NPs is of utmost importance in achieving these goals. This review aims to update the recent advancements, including innovative formulations and novel approaches, contributing to the progress in this field, to obtain the maximum stability of formulations. Additionally, we critically analyze the limitations of lyophilization and discuss potential future directions. It addresses the challenges faced by researchers and suggests avenues for further research to overcome these limitations. In conclusion, this review is a valuable contribution to the understanding of the parameters involved in the freeze-drying of NPs. It will definitely aid future studies in obtaining lyophilized NPs with good quality and enhanced drug delivery and therapeutic benefits.

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