Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy.
Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, Corso Duca degli Abruzzi 24, 10129 Torino, Italy; Departamento de Ciencias Farmacéuticas, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Av. Medina Allende y Haya de la Torre, Córdoba, Argentina.
Eur J Pharm Sci. 2018 Jul 1;119:135-146. doi: 10.1016/j.ejps.2018.04.006. Epub 2018 Apr 5.
This paper is focused on the synthesis of chitosan-coated polycaprolactone nanoparticles in microreactors and on the freeze-drying of the nanosuspension, to separate the particles from the liquid phase. Nanoparticles were produced in the confined impinging jets mixer (CIJM) and in the multi-inlet vortex mixer (MIVM), using the solvent displacement method, with acetone or tert-butanol (TBA) as polymer solvent. The study was initially carried out considering a feed flow rate of 80 ml min: using acetone, the mean particle size was lower (163 ± 7 nm) and the Zeta potential was higher (31.4 ± 37 mV) with the MIVM, with respect to the CIJM (265 ± 31 nm and 9.8 ± 2.4 mV, respectively). Slightly larger particles were obtained using TBA in the MIVM (mean diameter: 221 ± 44 nm): in this case it is no longer required removing the solvent before the freeze-drying stage. The effect of the liquid flow rate was then investigated, confirming that the best results were obtained at 80 ml min. With respect to the freeze-drying process, the effect of lyoprotectants and of steric stabilizers on particle stability was investigated. Best results were obtained with 5% sucrose and 2.5% Poloxamer 388 (mean diameter: 306 ± 8 nm); in all cases Zeta potential remained positive and larger than +30 mV. Preliminary results about the encapsulation of a test drug, ciprofloxacin, are also shown and discussed.
本文专注于壳聚糖包覆聚己内酯纳米粒子在微反应器中的合成以及纳米悬浮液的冷冻干燥,以将粒子从液相中分离出来。纳米粒子是在受限撞击射流混合器(CIJM)和多入口旋流混合器(MIVM)中使用溶剂置换法,以丙酮或叔丁醇(TBA)作为聚合物溶剂制备的。该研究最初在进料流速为 80ml/min 的条件下进行:使用丙酮时,MIVM 的平均粒径较小(163±7nm),Zeta 电位较高(31.4±37mV),而 CIJM 的平均粒径较大(265±31nm),Zeta 电位较低(9.8±2.4mV)。在 MIVM 中使用 TBA 时,粒径略大(平均直径:221±44nm):在这种情况下,在冷冻干燥阶段之前不再需要除去溶剂。然后研究了液体流速的影响,证实最佳结果是在 80ml/min 时获得的。关于冷冻干燥过程,研究了冷冻保护剂和空间位阻稳定剂对颗粒稳定性的影响。结果表明,5%蔗糖和 2.5%泊洛沙姆 388(平均粒径:306±8nm)的效果最好;在所有情况下,Zeta 电位保持正值且大于+30mV。还展示和讨论了关于包裹测试药物环丙沙星的初步结果。