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将地塞米松包裹于可生物降解的聚合物纳米颗粒中。

Encapsulation of dexamethasone into biodegradable polymeric nanoparticles.

作者信息

Gómez-Gaete Carolina, Tsapis Nicolas, Besnard Madeleine, Bochot Amélie, Fattal Elias

机构信息

Univ Paris Sud, CNRS UMR 8612, School of Pharmacy, 5 Rue Jean-Baptiste Clément, 92296 Châtenay-Malabry, France.

出版信息

Int J Pharm. 2007 Mar 1;331(2):153-9. doi: 10.1016/j.ijpharm.2006.11.028. Epub 2006 Nov 12.

DOI:10.1016/j.ijpharm.2006.11.028
PMID:17157461
Abstract

The present paper concerns both the optimization of dexamethasone (DXM) entrapment and its release from biodegradable poly(D,L-lactide-co-glycolide) (PLGA) nanoparticles prepared by the solvent evaporation process. Since the addition of DXM induced the formation of drug crystals beside the nanoparticle suspension, the influence of several parameters on DXM encapsulation was investigated such as the type of organic solvent and polymer, the DXM initial mass, the evaporation rate of the solvent, the continuous phase saturation and the incorporation of a lipid in the polymer. Nanoparticle size and zeta potential were not modified in the presence of DXM and were respectively around 230 nm and -4 mV. The highest drug loading was obtained using 100 mg PLGA 75:25 in a mixture of acetone-dichloromethane 1:1 (v:v) and 10 mg of DXM. The drug was completely released from this optimized formulation after 4 h of incubation at 37 degrees C. Neither the evaporation rate of the organic solvent, nor the aqueous phase saturation with salt or the incorporation of 1mg 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) within the nanoparticles modified the encapsulation efficiency. Differential scanning calorimetry (DSC) and X-ray diffraction (XRD) demonstrated that the drug was molecularly dispersed within the nanoparticles whereas the non-encapsulated DXM crystallized. These results demonstrate the feasibility of encapsulating dexamethasone and its subsequent delivery.

摘要

本文涉及地塞米松(DXM)包封的优化及其从通过溶剂蒸发法制备的可生物降解聚(D,L-丙交酯-共-乙交酯)(PLGA)纳米颗粒中的释放。由于添加DXM会在纳米颗粒悬浮液旁边诱导药物晶体的形成,因此研究了几个参数对DXM包封的影响,如有机溶剂和聚合物的类型、DXM初始质量、溶剂蒸发速率、连续相饱和度以及脂质在聚合物中的掺入。在存在DXM的情况下,纳米颗粒的尺寸和zeta电位未发生改变,分别约为230nm和-4mV。使用100mg PLGA 75:25在丙酮-二氯甲烷1:1(v:v)的混合物中以及10mg DXM可获得最高载药量。在37℃孵育4小时后,药物从该优化制剂中完全释放。有机溶剂的蒸发速率、盐对水相的饱和度或在纳米颗粒中掺入1mg 1,2-二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)均未改变包封效率。差示扫描量热法(DSC)和X射线衍射(XRD)表明,药物分子分散在纳米颗粒中,而未包封的DXM结晶。这些结果证明了包封地塞米松及其后续递送的可行性。

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