Ren Yufu, Rosch Justin G, Landry Madeleine R, Winter Hayden, Khan Syamantak, Pratx Guillem, Sun Conroy
Department of Pharmaceutical Sciences, College of Pharmacy, Oregon State University, 2730 SW Moody Ave, Portland, OR 97201, USA.
Department of Chemistry, College of Liberal Arts & Sciences, Portland State University, 1719 SW 10th Ave, Portland, OR 97201, USA.
Biomater Sci. 2021 Jan 26;9(2):496-505. doi: 10.1039/d0bm00897d.
The development of radiation responsive materials, such as nanoscintillators, enables a variety of exciting new theranostic applications. In particular, the ability of nanophosphors to serve as molecular imaging agents in novel modalities, such as X-ray luminescence computed tomography (XLCT), has gained significant interest recently. Here, we present a radioluminescent nanoplatform consisting of Tb-doped nanophosphors with an unique core/shell/shell (CSS) architecture for improved optical emission under X-ray excitation. Owing to the spatial confinement and separation of luminescent activators, these CSS nanophosphors exhibited bright optical luminescence upon irradiation. In addition to standard physiochemical characterization, these CSS nanophosphors were evaluated for their ability to serve as energy mediators in X-ray stimulated photodynamic therapy, also known as radiodynamic therapy (RDT), through attachment of a photosensitizer, rose bengal (RB). Furthermore, cRGD peptide was used as a model targeting agent against U87 MG glioblastoma cells. In vitro RDT efficacy studies suggested the RGD-CSS-RB in combination with X-ray irradiation could induce enhanced DNA damage and increased cell killing, while the nanoparticles alone are well tolerated. These studies support the utility of CSS nanophosphors and warrants their further development for theranostic applications.
辐射响应材料(如纳米闪烁体)的发展推动了各种令人兴奋的新型诊疗应用。特别是,纳米磷光体作为新型成像模态(如X射线发光计算机断层扫描(XLCT))中的分子成像剂的能力,最近引起了广泛关注。在此,我们展示了一种由掺杂铽的纳米磷光体组成的放射发光纳米平台,其具有独特的核/壳/壳(CSS)结构,可在X射线激发下改善光发射。由于发光激活剂的空间限制和分离,这些CSS纳米磷光体在辐照时表现出明亮的光致发光。除了标准的物理化学表征外,还通过附着光敏剂孟加拉玫瑰红(RB),评估了这些CSS纳米磷光体作为X射线刺激光动力疗法(也称为放射动力疗法(RDT))中能量介质的能力。此外,cRGD肽用作针对U87 MG胶质母细胞瘤细胞的模型靶向剂。体外RDT疗效研究表明,RGD-CSS-RB与X射线照射相结合可诱导增强的DNA损伤并增加细胞杀伤,而单独的纳米颗粒具有良好的耐受性。这些研究支持了CSS纳米磷光体的实用性,并保证了它们在诊疗应用中的进一步发展。