制药纳米粒子的形成及其物理化学和生物医学特性
Tatyana I Shabatina1,2, Yana A Gromova1, Olga I Vernaya1,2
1Department of Chemistry, M.V. Lomonosov Moscow State University, Moscow 119991, Russia.
Pharmaceuticals (Basel, Switzerland)
|May 25, 2024
概括
药用纳米形式通过增加表面积和可溶性来提高药物的有效性和生物可用性. 这可以降低剂量,减少有毒副作用,改善治疗结果.
科学领域:
- 制药科学 制药科学
- 纳米技术 纳米技术
- 材料科学 材料科学 材料科学
背景情况:
- 纳米形式 (纳米形式,纳米颗粒) 的药物提供了增强的治疗效果.
- 纳米材料的高特异性表面积和表面活性中心改善了与生物系统的药物相互作用.
- 纳米配方可以克服药物开发中常见的水溶性差和低生物可用性问题.
研究的目的:
- 审查制备药物纳米形式 (纳米颗粒) 的方法.
- 突出纳米制备的现代超临界和冷技术.
- 讨论各种纳米形式制备技术的优点,缺点和性能改进.
主要方法:
- 形成纯药物纳米粒子的物理和化学方法.
- 为增强稳定性,制备带有联体或聚合物覆盖的纳米形式.
- 专注于用于纳米形式合成的超临界和冷技术.
主要成果:
- 纳米形式增加了溶解率和和溶解度,难以溶解的药物.
- 纳米配方中较低的药物度导致显著的治疗效果.
- 由于使用较低剂量的活性成分,观察到较少的有毒副作用.
- 药用纳米形式的物理化学和生物医学性能得到了改善.
结论:
- 药用纳米形式代表了制药制剂的重大进步.
- 纳米配方策略,包括超临界和冷方法,对于提高药物的有效性和安全性至关重要.
- 对纳米形式制备和表征的进一步研究将优化治疗潜力.
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