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Amorphous Solid Forms of Ranolazine and Tryptophan and Their Relaxation to Metastable Polymorphs. | LitMetric

Amorphous Solid Forms of Ranolazine and Tryptophan and Their Relaxation to Metastable Polymorphs.

Cryst Growth Des

CQC-IMS, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade de Coimbra, 3004-535 Coimbra, Portugal.

Published: September 2023

AI Article Synopsis

  • Different methods for making ranolazine, an anti-anginal drug, more soluble were explored, including mechanochemistry, quench-cooling, and solvent evaporation, leading to new amorphous forms of the drug.
  • New polymorphs of ranolazine, identified as II and III, were found to relax into a more stable polymorph I at room temperature, with its crystal structure solved for the first time.
  • A co-amorphous mixture of ranolazine and tryptophan showed benefits like a higher glass transition temperature, better stability against crystallization for at least two months, and improved solubility in water.

Article Abstract

Different methods were explored for the amorphization of ranolazine, a sparingly soluble anti-anginal drug, such as mechanochemistry, quench-cooling, and solvent evaporation from solutions. Amorphous phases, with values lower than room temperature, were obtained by cryo-milling and quench-cooling. New forms of ranolazine, named II and III, were identified from the relaxation of the ranolazine amorphous phase produced by cryo-milling, which takes place within several hours after grinding. At room temperature, these metastable polymorphs relax to the lower energy polymorph I, whose crystal structure was solved in this work for the first time. A binary co-amorphous mixture of ranolazine and tryptophan was produced, with three important advantages: higher glass transition temperature, increased kinetic stability preventing relaxation of the amorphous to crystalline phases for at least two months, and improved aqueous solubility. Concomitantly, the thermal behavior of amorphous tryptophan obtained by cryo-milling was studied by DSC. Depending on experimental conditions, it was possible to observe relaxation directly to the lower energy form or by an intermediate metastable crystalline phase and the serendipitous production of the neutral form of this amino acid in the pure solid phase.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10486308PMC
http://dx.doi.org/10.1021/acs.cgd.3c00565DOI Listing

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