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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Quil A-lipid powder formulations releasing ISCOMs and related colloidal stuctures upon hydration
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Quil A-lipid powder formulations releasing ISCOMs and related colloidal stuctures upon hydration

机译:Quil A-脂质粉末制剂在水化后释放ISCOM和相关胶体结构

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The aim of the present study was to prepare solid Quil A-cholesterol-phospholid formulations (as powder mixtures or compressed to pellets) by physical mixing or by freeze-drying of aqueous dispersions of these components in ratios that allow spontaneous formation of ISCOMs and other colloidal stuctures upon hydration. The effect of addition of excess cholesterol to the lipid mixtures on the release of a model antigen (PE-FITC-OVA) from the pellets was also investigated. Physical properties were evaluated by X-ray powder diffractometry (XPRD), differential scanning calorimetry (DSC), scanning electron microscopy (SEM), and polarized light microscopy (PLM). Characterization of aqueous colloidal dispersions was performed by negative staining transmission electron microscopy (TEM). Physically mixed powders (with or without PE-FITC-OVA) and pellets prepared from the same powders did not spontaneously form ISCOM matrices and related colloidal structures such as worm-like micelles, ring-like micelles, lipidic/layered structures and lamellae (hexagonal array of ring-like micelles) upon hydration as expected from the pseudo-temary diagram for aqueous mixtures of Quil A, cholesterol and phospholipid. In contrast, spontaneous formation of the expected colloids was demonstrated for the freeze-dried lipid mixtures. Pellets prepared by compression of freeze-dried powders released PE-FITC-OVA slower than those prepared from physically mixed powders. TEM investigations revealed that the antigen was released in the form of colloidal particles (ISCOMs) from pellets prepared by compression of freeze-dried powders. The addition of excess cholesterol slowed down the release of antigen. The findings obtained in this study are important for the formulation of solid Quil A-containing lipid articles as controlled particulate adjuvant containing antigen delivery systems. (c) 2004 Elsevier B.V. All rights reserved.
机译:本研究的目的是通过物理混合或通过冷冻干燥这些成分的水分散体的比例来制备固体Quil A-胆固醇-磷脂制剂(粉末混合物或压制成小丸),使之自发形成ISCOM和其他化合物。水化后的胶体结构。还研究了向脂质混合物中添加过量胆固醇对从沉淀中释放模型抗原(PE-FITC-OVA)的影响。物理性能通过X射线粉末衍射(XPRD),差示扫描量热法(DSC),扫描电子显微镜(SEM)和偏振光显微镜(PLM)进行评估。通过负染色透射电子显微镜(TEM)进行胶体水分散体的表征。物理混合的粉末(有或没有PE-FITC-OVA)和由相同粉末制备的颗粒不会自发形成ISCOM基质和相关的胶体结构,例如蠕虫状胶束,环状胶束,脂质/层状结构和薄片(六边形)水合,如假想像图所预期的,水合的Quil A,胆固醇和磷脂的水性混合物。相反,对于冻干脂质混合物,证明了预期胶体的自发形成。通过压缩冻干粉剂制备的丸剂释放PE-FITC-OVA的速度比用物理混合粉剂制备的释放速度慢。 TEM研究表明,抗原以胶体颗粒(ISCOM)的形式从压缩冻干粉制备的沉淀中释放出来。添加过量的胆固醇会减慢抗原的释放。在这项研究中获得的发现对于将包含Quil A的固体脂质制品配制为包含受控的颗粒佐剂的抗原递送系统非常重要。 (c)2004 Elsevier B.V.保留所有权利。

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