开发,优化和表征微生物触发的Mimosa pudica-奇托桑多电解质复合物,用于结肠向药物输送
Samridhi Kurl1, Gurpreet Kaur1
1Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala, Punjab, India.
Journal of biomaterials science. Polymer edition
|May 26, 2025
概括
这项研究开发了一种新型的聚合物复合物,使用Mimosa pudica口香糖 (MMG) 和酸盐 (CH) 进行向性结肠药物输送. 该MMG-CH复合体显示了在结肠中微生物触发的药物释放的潜力.
科学领域:
- 聚合物科学 聚合物科学
- 材料科学 材料科学 材料科学
- 制药科学 制药科学
背景情况:
- 针对性地将药物输送到结肠仍然是一个挑战.
- 需要新的聚合物系统来提高药物的疗效和减少副作用.
- 米莫萨普迪卡 (MMG) 和奇托 (CH) 是生物相容的聚合物,有可能用于药物输送应用.
研究的目的:
- 开发一种MMG和CH的新型聚合物复合物.
- 评估其作为结肠向药物输送系统的潜力.
- 为了研究由结肠微生物群引发的药物释放特征.
主要方法:
- 优化了MMG的提取和表征.
- 制备和表征MMG-CH多电解质复合物 (PECs).
- 在实验室中使用capecitabine作为模型药物的药物释放研究,在存在或缺少老鼠内含量的情况下.
主要成果:
- 优化的MMG提取产生了12.41%的产量.
- MMG-CH PEC (40:60比) 显示出高收益率 (99%),低粘度和近乎中性的泽塔潜力.
- 显著的微生物触发释放capecitabine (88.5%在24小时内) 被观察到与老鼠内含量.
结论:
- 已经成功开发了MMG-CH PEC.
- 这些PEC表现出微生物群可降解的特性.
- MMG-CH PEC显示出作为有效的结肠向药物输送工具的承诺.
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