School of Pharmacy, University of Camerino, Via Gentile III da Varano, Camerino, MC, 62032, Italy.
School of Pharmacy, University of Camerino, Via Gentile III da Varano, Camerino, MC, 62032, Italy.
Int J Pharm. 2017 Dec 20;534(1-2):81-88. doi: 10.1016/j.ijpharm.2017.09.069. Epub 2017 Oct 7.
Doxil is a stealth marketed PEGylated liposomal formulation, containing the anticancer drug doxorubicin. After loading via a pH gradient, fibrillar supramolecular structures of doxorubicin sulfate originates inside the core of the liposomes. Recently, the crystallinity of doxorubicin sulfate has been confirmed by high-resolution calorimetry. However, no detailed information are available on the nature of doxorubicin sulfate nanocrystals and on the effect of different thermal treatments. Thus, the aim of this work was to characterize the thermal behaviour of Doxil in comparison to the unloaded liposomes using microcalorimetry, dynamic light scattering and high-resolution ultrasound spectroscopy (HR-US). Different thermal programmes were applied with the aim to highlight the effect of the treatments on the formulation. The used techniques confirmed the ordered state of doxorubicin nanocrystals inside PEGylated liposomes. Particularly, microcalorimetry and HR-US highlighted the changes in the thermal behaviour of the drug under different heating programmes. Doxorubicin nanocrystals were found to be stable after heating up to 80°C, but an irreversible thermal behaviour was observed after a prolonged heating at elevated temperature (2h at 80°C). The non-reversibility could be related to the formation of a different ordered structure and enhanced by the slight leakage of the drug occurring after a prolonged heating.
多柔比星脂质体是一种经过聚乙二醇化的隐形脂质体制剂,其中包含抗癌药物多柔比星。在通过 pH 梯度加载后,多柔比星硫酸盐的纤维状超分子结构在脂质体的核心内部起源。最近,通过高分辨率量热法证实了多柔比星硫酸盐的结晶度。然而,关于多柔比星硫酸盐纳米晶体的性质以及不同热疗处理的影响,尚无详细信息。因此,这项工作的目的是使用微量热法、动态光散射和高分辨率超声光谱(HR-US)来比较多柔比星脂质体和未加载脂质体的热行为。应用了不同的热程序,旨在突出处理对制剂的影响。所使用的技术证实了多柔比星纳米晶体在聚乙二醇化脂质体中的有序状态。特别是,微量热法和 HR-US 突出了药物在不同加热程序下热行为的变化。多柔比星纳米晶体在加热至 80°C 时被发现是稳定的,但在高温下长时间加热(80°C 加热 2 小时)后观察到不可逆的热行为。这种不可逆性可能与形成不同的有序结构有关,并因长时间加热后药物轻微泄漏而增强。