Department of Experimental Physics, Faculty of Science, Palacký University Olomouc, tř. 17. listopadu 12, 77900 Olomouc, Czech Republic.
Institute for Clinical and Experimental Medicine, Vídeňská 9, 140 21 Prague, Czech Republic.
J Colloid Interface Sci. 2024 Jun;663:467-477. doi: 10.1016/j.jcis.2024.02.116. Epub 2024 Feb 20.
The development of bimodal imaging probes represents a hot topic of current research. Herein, we deal with developing an innovative bimodal contrast agent enabling fluorescence imaging (FI)/magnetic resonance imaging (MRI) and, simultaneously, consisting of biocompatible nanostructures. Optimized synthesis of advanced protein-embedded bimetallic (APEBM) nanocomposite containing luminescent gold nanoclusters (AuNC) and superparamagnetic iron oxide nanoparticles (SPION), suitable for in vivo dual-modal FI/MR imaging is reported.
The APEBM nanocomposite was prepared by a specific sequential one-pot green synthetic approach that is optimized to increase metals (Au, Fe) content and, consequently, the imaging ability of the resulting nanostructures. The protein matrix, represented by serum albumin, was intentionally chosen, and used since it creates an efficient protein corona for both types of optically/magnetically-susceptible nanostructures (AuNC, SPION) and ensures biocompatibility of the resulting APEBM nanocomposite although it contains elevated metal concentrations (approx. 1 mg·mL of Au, around 0.3 mg·mL of Fe). In vitro and in vivo imaging was performed.
Successful in vivo FI and MRI recorded in healthy mice corroborated the applicability of the APEBM nanocomposite and, simultaneously, served as a proof of concept concerning the potential future exploitation of this new FI/MRI bimodal contrast agent in preclinical and clinical practice.
双模态成像探针的开发是当前研究的热点。在此,我们致力于开发一种创新的双模态对比剂,使其能够进行荧光成像(FI)/磁共振成像(MRI),同时由生物相容性的纳米结构组成。本文报道了一种优化合成的含发光金纳米簇(AuNC)和超顺磁氧化铁纳米颗粒(SPION)的新型蛋白嵌入双金属(APEBM)纳米复合材料,适用于体内双模态 FI/MR 成像。
通过特定的顺序一锅绿色合成方法制备 APEBM 纳米复合材料,该方法经过优化以增加金属(Au、Fe)的含量,从而提高所得纳米结构的成像能力。选择血清白蛋白作为蛋白质基质,因为它为两种光学/磁性敏感的纳米结构(AuNC、SPION)形成了有效的蛋白质外壳,并确保了所得 APEBM 纳米复合材料的生物相容性,尽管它含有较高的金属浓度(约 1 mg·mL 的 Au,约 0.3 mg·mL 的 Fe)。进行了体外和体内成像。
在健康小鼠中成功进行的体内 FI 和 MRI 记录证实了 APEBM 纳米复合材料的适用性,同时也证明了这种新型 FI/MRI 双模态对比剂在临床前和临床实践中的潜在未来应用的概念验证。