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September 21, 2025Analytical Chemistry4 citations

Advanced Spectroscopic Techniques for Lactose Crystallization Analysis: Investigating Water Participation in Crystal Morphology

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FFFanghui FanYOYuwen OuHDHao Deng

Key Points

  • Water's participation in lactose crystallization significantly alters crystal morphology across various conditions.
  • Low-field NMR and MRI demonstrate water's cyclic migration through gas, liquid, and solid states during crystallization.
  • Comparison of Raman spectra shows how water facilitates isomerization from β-lactose to α-lactose, creating monohydrate forms.
  • Insights from this analysis provide essential methods for controlling lactose product formulations in various applications.

Abstract

We provide an integrated strategy for scientists seeking to comprehend the participation of water in amorphous lactose crystallization and its impact on crystal morphology across different water activity (aw) levels and temperatures. Low-field nuclear magnetic resonance (LF-NMR) and segmented magnetic resonance imaging (MRI) results unveil a cyclic migration process of water involving a gas–liquid–solid migration during sorption and crystallization stages within the analyzed samples. The corrected terahertz time-domain spectroscopy (THz-TDS) spectra indicate that water molecules have a perturbative effect and actively participate in lactose vibration formation. Comparison between theoretical and experimental Raman spectra reveals a tendency for β-lactose anhydrate to isomerize into α-lactose anhydrate upon insertion of water, leading to the formation of α-lactose monohydrate. The lactose crystal morphologies influenced by water from amorphous to crystalline state include α-/β-lactose anomers → mixed α-/β-lactose anhydrate crystals and α-lactose monohydrate → α-lactose monohydrate and β-lactose anhydrate → α-lactose monohydrate and α-lactose anhydrate unstable → recrystallized α-lactose monohydrate. These findings have broad implications for fundamental science and practice, enabling precise control over lactose-based products.

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Cite This Study

Fan et al. (2025) studied this question.

synapsesocial.com/papers/68d46fd431b076d99fa6a23dhttps://doi.org/10.1021/acs.analchem.5c00297
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