DSP指导剂量选择,以在共晶溶解过程中延长药物超和寿命
Lucy M Newman1, Oisín N Kavanagh1, Tatiane C Machado1
1School of Pharmacy, Newcastle University, United Kingdom.
International journal of pharmaceutics
|February 1, 2025
概括
同步共晶溶解和药物沉对于所需的行为至关重要. 非静态度的辅制剂度调节超和,使稳定的可纳 (KTZ) 释放.
科学领域:
- 制药科学 制药科学
- 材料科学 材料科学 材料科学
- 化学工程是化学工程的重要组成部分.
背景情况:
- 同晶体的发展需要同步溶解和沉,以获得最佳的溶解-超和-沉 (DSP) 行为.
- 控制药物超和对于提高生物可用性和治疗疗效至关重要.
研究的目的:
- 展示一种同步协同晶体溶解和药物沉过程的方法.
- 通过控制共晶配方中的辅助器度来调节药物超和水平.
- 建立一个图形方法来指导共晶设计和配方.
主要方法:
- 研究了基托可纳 (KTZ) -p-阿米诺酸 (PABA) 1:1的共晶系统.
- 使用非静态度的辅助器度来影响共晶超和 (SA).
- 使用SA和DSP指数指标应用概念图形方法来评估配方性能.
主要成果:
- 在药物关键超和度 (σcrit) 以下,实现了最大理论共晶超和度 (SA) 的调制.
- 证明SA < σcrit和DSPindex > 1可以实现稳定和持续的KTZ释放.
- 在24小时内,KTZ-PABA共晶体的持续超和水平达到6.
结论:
- 通过非静态度协同器度同步溶解和沉是可行的,用于共同晶体的发展.
- 开发的图形方法和指标为优化共晶剂量和共晶体度提供了直接的方法.
- 这一策略允许微调药物超和,从而改善药物输送系统.
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