Magnetic Resonance Angiography with Hour-Scale Duration after Single Low-Dose Administration of Biocompatible Gadolinium Oxide Nanoprobe

Jiaojiao Wang, Bing Han, Min Ma, Yujie Zhao,Bingjie Li, Junzi Zhou,Chao Wu,Xuening Zhang,Jinbin Pan,Shao-Kai Sun

ADVANCED HEALTHCARE MATERIALS(2024)

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摘要
Long-term contrast-enhanced angiography offers significant advantages in theranostics for diverse vascular diseases, particularly in terms of real-time dynamic monitoring during acute vascular events; However, achieving vascular imaging with a duration of hours through a single administration of low-dose contrast agent remains challenging. Herein, a hyaluronic acid-templated gadolinium oxide (HA@Gd2O3) nanoprobe-enhanced magnetic resonance angiography (MRA) is proposed to address this bottleneck issue for the first time. The HA@Gd2O3 nanoprobe synthesized from a facile one-pot biomineralization method owns ultrasmall size, good biocompatibility, optimal circulation half-life (approximate to 149 min), and a relatively high T1 relaxivity (r1) under both clinical 3 T (8.215 mM-1s-1) and preclinical 9.4 T (4.023 mM-1s-1) equipment. The HA@Gd2O3 nanoprobe-enhanced MRA highlights major vessels readily with significantly improved contrast, extended imaging duration for at least 2 h, and ultrahigh resolution of 0.15 mm under 9.4 T, while only requiring half clinical dosage of Gd. This technique can enable rapid diagnosis and real-time dynamic monitoring of vascular changes in a model of acute superior mesenteric vein thrombosis with only a single injection of nanoprobe. The HA@Gd2O3 nanoprobe-enhanced MRA provides a sophisticated approach for long-term (hour scale) vascular imaging with ultrahigh resolution and high contrast through single administration of low-dose contrast agent. An improved contrast-enhanced magnetic resonance angiography (CE-MRA) technique is proposed for long-term vascular imaging through a single administration of low-dose hyaluronic acid-templated gadolinium oxide (HA@Gd2O3) nanoprobe for the first time. The HA@Gd2O3 nanoprobe-enhanced MRA achieves high-resolution and high-contrast vascular imaging with hour-scale duration, thereby enabling real-time dynamic monitoring of vascular conditions in acute vascular events.image
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biocompatibility,dynamic monitoring,gadolinium oxide,hyaluronic acid,MRA,nanoprobe
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