The State Key Laboratory of Ultrasound in Medicine and Engineering, College of Biomedical Engineering, Chongqing Medical University, Chongqing 400016, P. R. China.
Chongqing Key Laboratory of Biomedical Engineering, Chongqing Medical University, Chongqing 400016, P. R. China.
Langmuir. 2022 Mar 15;38(10):3223-3233. doi: 10.1021/acs.langmuir.1c03304. Epub 2022 Mar 4.
This paper presents the fabrication of an alkaline-responsive drug carrier, chitosan@giant liposome (CS-GL), by using an ultrasound-integrated microfluidic approach. On the microfluidic chip, water/oil/water droplets are first prepared and then move through an area of ultrasonic radiation to improve the regional saturation of organic solvent and accelerate its removal. At the same time, phospholipid molecules in the oil phase of the droplets are efficiently self-assembled into giant liposomes (GLs). Subsequently, microfluidic channels combined with an up-down separated structure can help in the fabrication and purification of the GLs. Due to the electrostatic interaction between the amino group of chitosan and the phosphate group of phospholipids, the GLs and chitosan are assembled into CS-GLs. The change of ζ potential after this operation indicates that chitosan is coated on the surface of GLs. The formed CS-GLs are monodispersed with a 54.1 ± 0.7 μm diameter and high drug encapsulation efficiency (∼96%), and the structural integrity can be kept without leakage of contents for more than a week in an acid medium (pH = 1.2). When this structure is placed in an aqueous solution of pH = 7.8, chitosan precipitates gradually and detaches from the GL, causing its rupture. The drug encapsulated in a single CS-GL can be rapidly released within 4 s, and 99.6% of the CS-GL carriers can complete the release within 10 min.
本文采用超声集成微流控方法制备了一种碱性响应型药物载体壳聚糖@巨型脂质体(CS-GL)。在微流控芯片上,首先制备水/油/水乳液,然后通过超声辐射区域,提高有机溶剂的局部饱和度并加速其去除。同时,液滴油相中的磷脂分子高效自组装成巨型脂质体(GL)。随后,微流道与上下分离结构相结合,有助于 GL 的制备和纯化。由于壳聚糖的氨基与磷脂的磷酸基团之间的静电相互作用,GL 和壳聚糖被组装成 CS-GL。此操作后的 ζ 电位变化表明壳聚糖包覆在 GL 的表面上。形成的 CS-GL 呈单分散性,直径为 54.1 ± 0.7μm,药物包封效率高(约 96%),在酸性介质(pH = 1.2)中结构完整性可保持一周以上而内容物不会泄漏。当这种结构置于 pH = 7.8 的水溶液中时,壳聚糖逐渐沉淀并从 GL 上脱离,导致其破裂。单个 CS-GL 中封装的药物可以在 4s 内迅速释放,并且 99.6%的 CS-GL 载体可以在 10min 内完成释放。