Katas Haliza, Chen Shu, Osamuyimen Adebayo Adetayo, Cevher Erdal, Oya Alpar H
Centre for Drug Delivery Research, School of Pharmacy, University of London, London, UK.
J Microencapsul. 2008 Dec;25(8):541-8. doi: 10.1080/02652040802075567.
In this study, poly(D,L-lactide-co-glycolide) (PLGA)-chitosan particles were investigated as an effective delivery system for small interfering RNA (siRNA) by emulsification diffusion method. The type, molecular weight and concentration of chitosan, PLGA type as well as centrifugation and freeze-drying process were amongst the investigated variables. PLGA-chitosan particles obtained were positively charged with particle size between approximately 0.4-1 microm depending on type, molecular weight and concentration of chitosan as well as type of PLGA. A better siRNA loading capacity was observed when a higher degree of 'uncapped end groups' were used. The addition of trehalose has also been shown to stabilize these particles from severe aggregation induced by freeze-drying. It was found that physical properties of PLGA-chitosan particles and their siRNA binding capacity were highly influenced by certain preparation parameters. The desired positive charge of submicron size range PLGA-chitosan particles could therefore be obtained by adjusting and optimizing these preparative and formulation parameters.
在本研究中,通过乳化扩散法研究了聚(D,L-丙交酯-共-乙交酯)(PLGA)-壳聚糖颗粒作为小干扰RNA(siRNA)的有效递送系统。壳聚糖的类型、分子量和浓度、PLGA类型以及离心和冷冻干燥过程是研究的变量。根据壳聚糖的类型、分子量和浓度以及PLGA的类型,获得的PLGA-壳聚糖颗粒带正电,粒径约为0.4-1微米。当使用更高程度的“未封端基团”时,观察到更好的siRNA负载能力。还表明添加海藻糖可使这些颗粒稳定,防止因冷冻干燥引起的严重聚集。发现PLGA-壳聚糖颗粒的物理性质及其与siRNA的结合能力受到某些制备参数的高度影响。因此,通过调整和优化这些制备和配方参数,可以获得所需的亚微米尺寸范围的PLGA-壳聚糖颗粒的正电荷。