材料科学
壳聚糖
紫杉醇
制作
纳米技术
纳米颗粒
炸薯条
癌症
化学工程
医学
工程类
电气工程
内科学
病理
替代医学
作者
Fatemeh Sadat Majedi,Mohammad Mahdi Hasani‐Sadrabadi,Jules J. VanDersarl,Nassir Mokarram,Shahirar Hojjati‐Emami,Erfan Dashtimoghadam,Shahin Bonakdar,Mohammad Ali Shokrgozar,Arnaud Bertsch,Philippe Renaud
标识
DOI:10.1002/adfm.201301628
摘要
The use of solvent‐free microfluidics to fine‐tune the physical and chemical properties of chitosan nanoparticles for drug delivery is demonstrated. Nanoparticle self‐assembly is driven by pH changes in a water environment, which increases biocompatibility by avoiding organic solvent contamination common with traditional techniques. Controlling the time of mixing (2.5–75 ms) during nanoparticle self‐assembly enables us to adjust nanoparticle size and surface potential in order to maximize cellular uptake, which in turn dramatically increases drug effectiveness. The compact nanostructure of these nanoparticles preserves drug potency better than previous nanoparticles, and is more stable during long‐term circulation at physiological pH. However, when the nanoparticles encounter a tumor cell and the associated drop in pH, the drug contents are released. Moreover, the loading efficiency of hydrophobic drugs into the nanoparticles increases significantly from previous work to over 95%. The microfluidic techniques used here have applications not just for drug‐carrying nanoparticle fabrication, but also for the better control of virtually any self‐assembly process.
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