Maghsoudinia Fatemeh, Tavakoli Mohamad Bagher, Samani Roghayeh Kamran, Hejazi Seyed Hossein, Sobhani Tayebe, Mehradnia Fatemeh, Mehrgardi Masoud A
Department of Medical Physics, School of Medicine, Isfahan University of Medical Sciences, Isfahan, 81746-73461, Iran.
Department of Medical Physics, School of Medicine, Isfahan University of Medical Sciences, Isfahan, 81746-73461, Iran.
Talanta. 2021 Jun 1;228:122245. doi: 10.1016/j.talanta.2021.122245. Epub 2021 Feb 26.
Dual-modal molecular imaging by combining two imaging techniques can provide complementary information for early cancer diagnosis and therapeutic monitoring. In the present manuscript, folic acid (FA)-functionalized gadolinium-loaded nanodroplets (NDs) are introduced as dual-modal ultrasound (US)/magnetic resonance (MR) imaging contrast agents. These phase-change contrast agents (PCCAs) with alginate (Alg) stabilizing shell and a liquid perfluorohexane (PFH) core were successfully synthesized via the nano-emulsion method and characterized. In this regard, mouse hepatocellular carcinoma (Hepa1-6) as target cancer cells and mouse fibroblast (L929) as control cells were used. The in vitro and in vivo cytotoxicity assessments indicated that Gd/PFH@Alg and Gd/PFH@Alg-FA nanodroplets are highly biocompatible. Gd-loaded NDs do not induce organ toxicity, and no significant hemolytic activity in human red blood cells is observed. Additionally, nanodroplets exhibited strong ultrasound signal intensities as well as T-weighted MRI signal enhancement with a high relaxivity value of 6.40 mM s, which is significantly higher than that of the clinical Gadovist contrast agent (r = 4.01 mM s). Cellular uptake of Gd-NDs-FA by Hepa1-6 cancer cells was approximately 2.5-fold higher than that of Gd-NDs after 12 h incubation. Furthermore, in vivo results confirmed that the Gd-NDs-FA bound selectively to cancer cells and were accumulated in the tumor region. In conclusion, Gd/PFH@Alg-FA nanodroplets have great potential as US/MR dual-modal imaging nanoprobes for the early diagnosis of cancer.
结合两种成像技术的双模态分子成像可为早期癌症诊断和治疗监测提供互补信息。在本论文中,引入了叶酸(FA)功能化的载钆纳米液滴(NDs)作为双模态超声(US)/磁共振(MR)成像造影剂。这些具有藻酸盐(Alg)稳定壳层和液体全氟己烷(PFH)核心的相变造影剂(PCCAs)通过纳米乳液法成功合成并进行了表征。在这方面,使用小鼠肝癌细胞(Hepa1-6)作为靶癌细胞,小鼠成纤维细胞(L929)作为对照细胞。体外和体内细胞毒性评估表明,Gd/PFH@Alg和Gd/PFH@Alg-FA纳米液滴具有高度生物相容性。载钆纳米液滴不会诱导器官毒性,并且在人红细胞中未观察到明显的溶血活性。此外,纳米液滴表现出强烈的超声信号强度以及T加权MRI信号增强,弛豫率值高达6.40 mM-1 s-1,显著高于临床造影剂Gadovist(r = 4.01 mM-1 s-1)。孵育12小时后,Hepa1-6癌细胞对Gd-NDs-FA的细胞摄取量比Gd-NDs高约2.5倍。此外,体内结果证实Gd-NDs-FA选择性地与癌细胞结合并在肿瘤区域积累。总之,Gd/PFH@Alg-FA纳米液滴作为用于癌症早期诊断的US/MR双模态成像纳米探针具有巨大潜力。