Silk Nanoparticle Manufacture in Semi-Batch Format

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Date
2020
Volume
6
Issue
12
Journal
ACS Biomaterials Science and Engineering
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Publisher
Washington, DC : ACS Publications
Abstract

Silk nanoparticles have demonstrated utility across a range of biomedical applications, especially as drug delivery vehicles. Their fabrication by bottom-up methods such as nanoprecipitation, rather than top-down manufacture, can improve critical nanoparticle quality attributes. Here, we establish a simple semi-batch method using drop-by-drop nanoprecipitation at the lab scale that reduces special-cause variation and improves mixing efficiency. The stirring rate was an important parameter affecting nanoparticle size and yield (400 < 200 < 0 rpm), while the initial dropping height (5.5 vs 7.5 cm) directly affected nanoparticle yield. Varying the nanoparticle standing time in the mother liquor between 0 and 24 h did not significantly affect nanoparticle physicochemical properties, indicating that steric and charge stabilizations result in high-energy barriers for nanoparticle growth. Manufacture across all tested formulations achieved nanoparticles between 104 and 134 nm in size with high β-sheet content, spherical morphology, and stability in aqueous media for over 1 month at 4 °C. This semi-automated drop-by-drop, semi-batch silk desolvation offers an accessible, higher-throughput platform for standardization of parameters that are difficult to control using manual methodologies. © 2020 American Chemical Society.

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Matthew, S. A. L., Totten, J. D., Phuagkhaopong, S., Egan, G., Witte, K., Perrie, Y., & Seib, F. P. (2020). Silk Nanoparticle Manufacture in Semi-Batch Format (Washington, DC : ACS Publications). Washington, DC : ACS Publications. https://doi.org//10.1021/acsbiomaterials.0c01028
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CC BY 4.0 Unported