ZERO WORLD RESEARCHアミノ酸・有機酸の学術文献データベース

Evaluation of aspartame as a co-former in the preparation of co-amorphous formulations of dipyridamole using spray drying.

噴霧乾燥を用いたジピリダモールの共アモルファス製剤調製における共形成剤としてのアスパルテームの評価 (機械翻訳の邦題)

International journal of pharmaceutics2024Kamruzzaman M, Cathcart H, McLoughlin P, et al.
研究デザインその他の原著論文
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記録の確認項目

研究デザイン
その他の原著論文
対象
未確定
出版年
2024
出典
doi.org
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表示あり
出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
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確認期限内
確認段階
自動処理
記録状態
公開

日本語要約(機械生成)

本研究では、難水溶性薬物ジピリダモールとジペプチドであるアスパルテームを用い、噴霧乾燥により共アモルファス系を調製した。アスパルテームを共形成剤とした系は、個々のアミノ酸やその混合物を用いた場合と比較して、高いガラス転移温度を示し、25℃・60%RH条件下での物理的安定性が向上した。Hirshfeld表面解析とFT-IR分析により、分子間相互作用が安定性向上に寄与することが示された。非雰囲気X線回折により、温度と湿度が結晶化に影響し、高温高湿で結晶化速度が増大した。結晶化速度を修正アレニウス式に当てはめたが、予測精度は限定的であった。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Co-amorphous systems (CAMs) have shown promise in addressing the challenges associated with poorly water-soluble drugs. However, the limited selection of co-formers and the use of lab-scale techniques for their preparation present challenges in fully utilizing the advantages of CAMs. In this study, we used aspartame (a methyl ester of the aspartic acid/phenylalanine) as a model dipeptide with the BCS class II drug dipyridamole, to prepare co-amorphous systems using spray drying. The feed solutions were prepared by dissolving the drug and co-former into methanol-water mixtures. The spray drying process was evaluated and solid-state properties were compared with those of the individual amino acids, amino acid mixtures and aspartame as co-formers. Co-amorphous systems prepared with aspartame (AspPhe) exhibited better solid-state properties, including a higher glass transition temperature (Tg), compared to the individual amino acids and the mixture of amino acids. Additionally, this formulation showed improved physical stability when stored at 25 °C/60 % RH conditions. Hirshfeld Surface (HS) analysis was employed to visualize and analyse the molecular interaction sites within the crystal structures of dipyridamole and aspartame. The observed interactions were then correlated with the molecular interactions identified through FT-IR spectroscopic analysis within the CAMs. The spectroscopic analysis revealed molecular interactions between the sites found at the shortest distances in the HS analysis. The dominant hydrogen bond interactions identified in the co-amorphous DPM-AspPhe system was found to contribute significantly to its improve stability. X-ray powder diffraction in non-ambient mode reveals that both temperature and humidity play a role in the crystallization of the co-amorphous DPM-AspPhe. Crystallization rates increased notably at high temperature and humidity. To predict stability under accelerated conditions, the crystallization rates from DPM-AspPhe were fitted to a modified Arrhenius equation. However, the predictive accuracy of the resulting model was limited to a specific range of conditions.

MeSH

AspartameChemistry, PharmaceuticalDipyridamoleDrug CompoundingDrug StabilityHydrogen BondingSolubilitySpray DryingTransition TemperatureX-Ray Diffraction

DOI 10.1016/j.ijpharm.2024.124913

PMID 39510145

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