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用于锰的诊断用途的合成和纳米技术方法。

Synthetic and Nanotechnological Approaches for a Diagnostic Use of Manganese.

机构信息

Department of Chemical, Pharmaceutical and Agricultural Sciences (DoCPAS), University of Ferrara, 44121 Ferrara, Italy.

Biotechnology Interuniversity Consortium, Ferrara Section, University of Ferrara, 44121 Ferrara, Italy.

出版信息

Molecules. 2022 May 13;27(10):3124. doi: 10.3390/molecules27103124.

Abstract

The development of multimodal imaging techniques such as positron emission tomography (PET) and magnetic resonance imaging (MRI) allows the contemporary obtaining of metabolic and morphological information. To fully exploit the complementarity of the two imaging modalities, the design of probes displaying radioactive and magnetic properties at the same time could be very beneficial. In this regard, transition metals offer appealing options, with manganese representing an ideal candidate. As nanosized imaging probes have demonstrated great value for designing advanced diagnostic/theranostic procedures, this work focuses on the potential of liposomal formulations loaded with a new synthesized paramagnetic Mn(II) chelates. Negatively charged liposomes were produced by thin-layer hydration method and extrusion. The obtained formulations were characterized in terms of size, surface charge, efficiency of encapsulation, stability over time, relaxivity, effective magnetic moment, and in vitro antiproliferative effect on human cells by means of the MTT assay. The negatively charged paramagnetic liposomes were monodisperse, with an average hydrodynamic diameter not exceeding 200 nm, and they displayed good stability and no cytotoxicity. As determined by optical emission spectroscopy, manganese complexes are loaded almost completely on liposomes maintaining their paramagnetic properties.

摘要

多模态成像技术的发展,如正电子发射断层扫描(PET)和磁共振成像(MRI),使得当代能够获得代谢和形态信息。为了充分利用两种成像方式的互补性,设计同时显示放射性和磁性特性的探针可能非常有益。在这方面,过渡金属提供了有吸引力的选择,其中锰是理想的候选者。由于纳米级成像探针在设计先进的诊断/治疗程序方面表现出了巨大的价值,因此这项工作侧重于负载新合成的顺磁 Mn(II)螯合物的脂质体制剂的潜力。通过薄层水合和挤压法制备带负电荷的脂质体。通过 MTT 测定法,从粒径、表面电荷、包封效率、随时间的稳定性、弛豫率、有效磁矩以及体外对人细胞的抗增殖作用等方面对获得的制剂进行了表征。带负电荷的顺磁脂质体单分散性好,平均水动力直径不超过 200nm,且具有良好的稳定性和无细胞毒性。通过发射光谱法测定,锰配合物几乎完全负载在脂质体上,保持其顺磁性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a92/9146667/88b720a744c5/molecules-27-03124-g002.jpg

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