Dentamaro Mario, Lux François, Vander Elst Luce, Dauguet Nicolas, Montante Sylvie, Moussaron Albert, Burtea Carmen, Muller Robert N, Tillement Olivier, Laurent Sophie
Mons, Belgium.
Villeurbanne, France.
Contrast Media Mol Imaging. 2016 Sep;11(5):381-395. doi: 10.1002/cmmi.1702. Epub 2016 Jul 19.
Different studies on AGuIX nanoparticles have been achieved in the biomedical domain, showing that they allow us to combine multimodal and theranostic properties in oncology. The targeting of apoptotic cells presents a wide range of biomedical applications, including the monitoring of antitumoral therapy and the diagnosis of diseases related to this process, such as atherosclerosis, ischemia, chronic inflammation or autoimmune disorders. AGuIX nanoparticles functionalized with a peptide that recognizes apoptotic cells and with organic fluorophores were characterized by several physicochemical and biological methods such as HPLC, relaxometry and photon correlation spectroscopy, which attested to their potential as bimodal tracers detected by optical imaging and MRI. An increase of relaxivity and stability of AGuIX nanoparticles is also observed after their vectorization. The biological efficiency of this novel bimodal probe to target apoptotic cells was evaluated by fluorescence microscopy, relaxometry, MRI and flow cytometry on a lymphoblastic human T-cell line. In vitro cell apoptosis was chemically induced by incubation with camptothecin. Our in vitro experiments showed a significant specificity of vectorized AGuIX nanoparticles for camptothecin-treated cells that suggests their potential efficiency as probes to target apoptosis. Copyright © 2016 John Wiley & Sons, Ltd.
在生物医学领域已开展了多项关于AGuIX纳米颗粒的研究,结果表明它们使我们能够在肿瘤学中结合多模态和治疗诊断特性。对凋亡细胞的靶向具有广泛的生物医学应用,包括监测抗肿瘤治疗以及诊断与此过程相关的疾病,如动脉粥样硬化、缺血、慢性炎症或自身免疫性疾病。用识别凋亡细胞的肽和有机荧光团功能化的AGuIX纳米颗粒通过多种物理化学和生物学方法进行了表征,如高效液相色谱法、弛豫测量法和光子相关光谱法,这些方法证明了它们作为通过光学成像和磁共振成像检测的双模态示踪剂的潜力。在AGuIX纳米颗粒载体化后,还观察到其弛豫率和稳定性的增加。通过荧光显微镜、弛豫测量法、磁共振成像和流式细胞术在人T淋巴细胞白血病细胞系上评估了这种新型双模态探针靶向凋亡细胞的生物学效率。通过与喜树碱孵育化学诱导体外细胞凋亡。我们的体外实验表明,载体化的AGuIX纳米颗粒对喜树碱处理的细胞具有显著的特异性,这表明它们作为靶向凋亡的探针具有潜在的效率。版权所有© 2016约翰威立父子有限公司。