Université Pierre et Marie Curie, UPMC-Univ Paris 06, Laboratoire PECSA-UMR 7195-CNRS-ESPCI, 4 place Jussieu, 75252 Paris cedex 05, France.
Langmuir. 2012 Aug 14;28(32):11834-42. doi: 10.1021/la3024716. Epub 2012 Jul 30.
Magnetic liposomes offer opportunities as theranostic systems. The prerequisite for efficient imaging, tissue targeting or hyperthermia is high magnetic load of these vesicles. Here we describe the preparation of Ultra Magnetic Liposomes (UMLs), which may encapsulate iron oxide nanoparticles in a volume fraction of up to 30%. This remarkable magnetic charge provides UMLs with high magnetic mobilities, MRI relaxivities, and heating capacities for magnetic hyperthermia. Moreover, these UMLs are rapidly and efficiently internalized by cultured tumor cells and, when they are administered to mice, they can be vectorized to tumors by an external magnet.
磁性脂质体作为治疗诊断系统有一定的应用前景。高效成像、组织靶向或热疗的前提是这些囊泡具有高磁性负载。在这里,我们描述了超顺磁性脂质体(UML)的制备方法,其可以将氧化铁纳米颗粒包裹在体积分数高达 30%的溶液中。这种显著的磁性载量使 UML 具有高磁迁移率、MRI 弛豫率和磁热疗的加热能力。此外,这些 UML 被培养的肿瘤细胞快速有效地内化,当它们被给予小鼠时,它们可以在外磁场的作用下被靶向到肿瘤部位。