School of Medical Imaging, Tianjin Key Laboratory of Functional Imaging, Tianjin Medical University, Tianjin 300203, China.
Department of Radiology, The Second Hospital of Tianjin Medical University, Tianjin 300211, China.
ACS Nano. 2024 Sep 10;18(36):25081-25095. doi: 10.1021/acsnano.4c06705. Epub 2024 Aug 29.
Tantalum (Ta) emerges as a promising element for advanced computed tomography (CT) imaging probes owing to its high X-ray attenuation coefficient and excellent biocompatibility. Nevertheless, the synthesis of renally clear Ta-based imaging probes through simple methods remains a significant challenge. Herein, we introduce a simple and gram-scale approach for the synthesis of renal-clearable Ta nanodots with high water solubility for CT imaging in vivo. The Ta nanodots, coordination polymers, are fabricated via coordination reactions involving Ta(OH), citric acid (CA), and hydrogen peroxide. The Ta nanodots exhibit an ultrasmall hydrodynamic diameter (2.8 nm), high water solubility (1.88 g/mL, 688 mg Ta/mL), superior X-ray absorption capacity, gram-scale production capability (>10 g in lab synthesis), renal-clearable ability, and good biocompatibility. The Ta nanodots possess superior CT imaging efficacy across diverse tube voltages, enabling highly sensitive gastrointestinal CT imaging, renal CT imaging, and CT angiography (CTA). Moreover, Ta nanodots maintain robust CT imaging capabilities even at high X-ray energies, and Ta nanodots-based spectral CT achieves metallic artifacts-minimized CTA. The proposed Ta nanodots present substantial potential as a potent CT imaging probe for diagnosing various diseases.
钽 (Ta) 由于其高 X 射线衰减系数和优异的生物相容性,成为先进计算机断层扫描 (CT) 成像探针的有前途的元素。然而,通过简单的方法合成肾脏清晰的基于 Ta 的成像探针仍然是一个重大挑战。在此,我们介绍了一种简单且克级规模的方法,用于合成具有高水溶性的肾脏清晰的 Ta 纳米点,用于体内 CT 成像。通过 Ta(OH)、柠檬酸 (CA) 和过氧化氢之间的配位反应制备 Ta 纳米点,配位聚合物。Ta 纳米点具有超小的水动力直径 (2.8nm)、高水溶性 (1.88g/mL,688mg Ta/mL)、优异的 X 射线吸收能力、克级生产能力 (>10g 实验室合成)、肾脏清除能力和良好的生物相容性。Ta 纳米点在不同的管电压下具有优异的 CT 成像效果,能够进行高度敏感的胃肠道 CT 成像、肾脏 CT 成像和 CT 血管造影 (CTA)。此外,即使在高 X 射线能量下,Ta 纳米点也能保持强大的 CT 成像能力,基于 Ta 纳米点的能谱 CT 可实现最小化金属伪影的 CTA。所提出的 Ta 纳米点具有作为诊断各种疾病的有效 CT 成像探针的巨大潜力。