稳定聚合物的战略组合,以控制粒子表面电荷,增强粘液传输和细胞结合
Corey A Stevens1,2, Boris Sevarika1,3, Brian K Wilson4
1Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139.
bioRxiv : the preprint server for biology
|September 30, 2024
概括
带正电荷的纳米粒子由于蛋白质吸附而面临着粘液输送方面的挑战. 研究人员开发出粘液逃避,细胞粘附的纳米颗粒,可以成功透粘液和向细胞,以改善粘膜药物递送.
科学领域:
- 生物材料科学 生物材料科学
- 纳米技术纳米技术
- 药物运输 药物运输 药物运输
背景情况:
- 粘液层,富含阳离子粘液糖蛋白,作为一个障碍,通过粘膜表面的治疗输送.
- 带正电荷的纳米粒子 (NP) 很容易在粘液中形成粘素蛋白冠状体,阻碍细胞相互作用和吸收.
研究的目的:
- 设计可以逃避粘液屏障的纳米颗粒,并有效地向上皮细胞,以增强粘膜药物递送.
- 为了克服传统纳米颗粒在透粘液层中的局限性.
主要方法:
- 使用闪光纳米沉 (Flash NanoPrecipitation) 开发了避开粘液的细胞粘合性纳米颗粒 (MECS).
- 混合中性聚乙烯甘醇 (PEG) 冠状体用于粘液输送,并将5%重量的聚化二甲基胺乙基甲酸盐 (PDMAEMA) 混合用于细胞向.
主要成果:
- 在实验室中,MECS NPs通过粘液层迅速透.
- MECS NPs表现出有效地与上皮细胞结合,表明细胞向成功.
- 混合表面充电策略有效地平衡了粘液逃逸和细胞粘附.
结论:
- MECS NPs代表了克服粘膜药物输送中的粘液障碍的有希望的战略.
- 开发的纳米颗粒为通过粘膜路径管理的治疗药物的疗效提高提供了潜在的突破.
- 定制纳米粒子表面电荷对于优化粘膜药物递送系统至关重要.
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