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基于体的抗瘤剂的纳米载体对pH值有反应
Viliana Gugleva1, Rositsa Mihaylova2, Georgi Momekov2
1Department of Pharmaceutical Technologies, Faculty of Pharmacy, Medical University of Varna "Prof. Dr Paraskev Stoyanov" 84 Tsar Osvoboditel Str. 9000 Varna Bulgaria.
RSC advances
|April 12, 2024
概括
新的pH响应纳米载体是使用修饰的体进行开发的. 这些纳米载体显示了瘤中药物释放的增强和改善的抗癌活性,为向癌症治疗提供了有前途的方法.
科学领域:
- 纳米技术纳米技术
- 材料科学 材料科学 材料科学
- 药理学 药理学是指药理学的学科.
背景情况:
- 与健康组织相比,瘤微环境表现出明显的pH差异.
- 响应pH的药物输送系统可以利用这些差异进行向治疗.
- 体是多功能纳米载体,有可能用于药物封装和输送.
研究的目的:
- 通过修改传统的体,开发新的pH响应纳米载体.
- 研究这些纳米载体的物理化学特性和药物释放特征.
- 为了评估皮素载荷纳米载体对癌症细胞系的体外细胞毒性和益质效应.
主要方法:
- 使用Span 60,Span 60/Tween 60和胆固醇的薄膜水化方法准备了尼奥索姆囊泡.
- 六甲基多聚烯酸共聚合物 (HD-PAA) 用于在不同度下修改体.
- 评估了物理化学性质 (水力动力直径,泽塔潜力,形态) 和pH响应.
- 库尔库和素被装载为模型药物,以评估封装和释放.
- 对人类恶性细胞系进行了细胞毒性测试 (MJ,T-24,HUT-78).
主要成果:
- 使用Span 60/Tween 60/胆固醇/2.5%的HD-PAA的配方表现出最佳的物理化学特性.
- 最佳配方显示水力动力直径为302nm,泽塔电位为-22.1mV.
- 实现了高黄素捕获效率的83%.
- 观察到pH取决于药物的释放,在较低的pH值时释放的增强.
- 与自由黄素相比,尼奥索姆黄素显示出更好的细胞毒性和益性活性.
结论:
- 用HD-PAA共聚合物修饰的体构成有效的pH响应纳米载体.
- 这些纳米载体在酸性瘤环境中促进向药物释放.
- 尼奥索姆黄素表现出增强的抗癌疗效,这表明改善癌症治疗的潜力.
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