材料科学
聚乙二醇
纳米技术
双膦酸盐
生物利用度
药物输送
化学
有机化学
骨质疏松症
医学
药理学
内分泌学
作者
Federica Rizzi,Annamaria Panniello,Roberto Comparelli,Ilaria Arduino,Elisabetta Fanizza,Rosa Maria Iacobazzi,Maria Grazia Perrone,Marinella Striccoli,M. Lucia Curri,Antonio Scilimati,Nunzio Denora,Nicoletta Depalo
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2024-05-17
卷期号:29 (10): 2367-2367
标识
DOI:10.3390/molecules29102367
摘要
Vitamin D, an essential micronutrient crucial for skeletal integrity and various non-skeletal physiological functions, exhibits limited bioavailability and stability in vivo. This study is focused on the development of polyethylene glycol (PEG)-grafted phospholipid micellar nanostructures co-encapsulating vitamin D3 and conjugated with alendronic acid, aimed at active bone targeting. Furthermore, these nanostructures are rendered optically traceable in the UV–visible region of the electromagnetic spectrum via the simultaneous encapsulation of vitamin D3 with carbon dots, a newly emerging class of fluorescents, biocompatible nanoparticles characterized by their resistance to photobleaching and environmental friendliness, which hold promise for future in vitro bioimaging studies. A systematic investigation is conducted to optimize experimental parameters for the preparation of micellar nanostructures with an average hydrodynamic diameter below 200 nm, ensuring colloidal stability in physiological media while preserving the optical luminescent properties of the encapsulated carbon dots. Comprehensive chemical-physical characterization of these micellar nanostructures is performed employing optical and morphological techniques. Furthermore, their binding affinity for the principal inorganic constituent of bone tissue is assessed through a binding assay with hydroxyapatite nanoparticles, indicating significant potential for active bone-targeting. These formulated nanostructures hold promise for novel therapeutic interventions to address skeletal-related complications in cancer affected patients in the future.
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