AI Article Synopsis

  • - Crystalline active pharmaceutical ingredients (APIs) can show differences in their surface characteristics due to how they're processed, like crystallization or milling, which is important for predicting drug performance.
  • - The study focuses on Odanacatib samples made by different methods that all meet size requirements for similar drug performance, emphasizing the need to understand surface properties like chemistry and wettability.
  • - Researchers used various advanced techniques (like IGC, BET, contact angle measurements, and XPS) to analyze how processing affects surface properties, explaining variations in the bulk properties of the powders.

Article Abstract

Crystalline active pharmaceutical ingredients with comparable size and surface area can demonstrate surface anisotropy induced during crystallization or downstream unit operations such as milling. To the extent that varying surface properties impacts bulk powder properties, the final drug product performance such as stability, dissolution rates, flowability, and dispersibility can be predicted by understanding surface properties such as surface chemistry, energetics, and wettability. Here, we investigate the surface properties of different batches of Odanacatib prepared through either jet milling or fast precipitation from various solvent systems, all of which meet the particle size specification established to ensure equivalent biopharmaceutical performance. This work highlights the use of orthogonal surface techniques such as Inverse Gas Chromatography (IGC), Brunauer-Emmett-Teller (BET) surface area, contact angle, and X-ray Photoelectron Spectroscopy (XPS) to demonstrate the effect of processing history on particle surface properties to explain differences in bulk powder properties.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11279451PMC
http://dx.doi.org/10.3390/pharmaceutics16070883DOI Listing

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