Souto E B, Mehnert W, Müller R H
Department of Pharmaceutics, Biopharmaceutics and Biotechnology, Free University of Berlin, Berlin, Germany.
J Microencapsul. 2006 Jun;23(4):417-33. doi: 10.1080/02652040600612439.
CompritolR888 ATO (glycerol behenate) is widely used as a pharmaceutical excipient in the field of solid dosage forms due to its lubricating properties. It is an amphiphilic material with a high melting point (approximately 70 degrees C) and, therefore, it can also be used to prepare aqueous colloidal dispersions. The aim of this paper is to study the suitability of CompritolR888 ATO for the production of solid lipid nanoparticles (SLN) and nanostructured lipid carriers (NLC) for the entrapment of a lipophilic model drug. This study assesses the crystalline structure of the bulk lipid, as well as the changes that occur in its crystal lattice with the addition of 'impurities', such as oil (alpha-tocopherol) and drug (ketoconazole), using DSC and X-ray diffraction analysis before and after thermal stress. Aqueous SLN and NLC dispersions were produced using an appropriate surfactant/co-surfactant system and their physicochemical stability was assessed by PCS, LD, DSC and by WAXS. It was found that the crystalline lattice of CompritolR888 ATO is composed of very small amounts of the unstable alpha polymorphic form characteristic of triacylglycerols, which disappears after thermal stress of bulk lipid. Mixing oils and drug molecules which are soluble in this lipid decreased its lattice organization and, thus, was revealed to be suitable for production of lipid nanoparticles containing ketoconazole. However, particle growth could not be avoided during shelf life.
CompritolR888 ATO(山嵛酸甘油酯)因其润滑性能而在固体剂型领域被广泛用作药物赋形剂。它是一种具有高熔点(约70摄氏度)的两亲性材料,因此也可用于制备水性胶体分散体。本文的目的是研究CompritolR888 ATO用于生产固体脂质纳米粒(SLN)和纳米结构脂质载体(NLC)以包封亲脂性模型药物的适用性。本研究使用差示扫描量热法(DSC)和X射线衍射分析,在热应力前后评估了块状脂质的晶体结构,以及添加“杂质”(如油(α-生育酚)和药物(酮康唑))后其晶格发生的变化。使用合适的表面活性剂/助表面活性剂体系制备了水性SLN和NLC分散体,并通过光子相关光谱法(PCS)、激光衍射法(LD)、差示扫描量热法(DSC)和广角X射线散射法(WAXS)评估了它们的物理化学稳定性。结果发现,CompritolR888 ATO的晶格由极少量三酰甘油特有的不稳定α多晶型组成,在块状脂质热应力后消失。将可溶于该脂质的油和药物分子混合会降低其晶格结构,因此被证明适合用于生产含酮康唑的脂质纳米粒。然而,在保质期内无法避免颗粒生长。