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利用高弛豫率多糖纳米凝胶磁共振成像对比剂实现长效、高效的肿瘤成像。

Long-Lasting and Efficient Tumor Imaging Using a High Relaxivity Polysaccharide Nanogel Magnetic Resonance Imaging Contrast Agent.

机构信息

Department of Polymer Chemistry, Graduate School of Engineering, Kyoto University, Katsura , Nishikyo-ku, Kyoto 615-8510, Japan.

Japan Science and Technology Agency (JST), The Exploratory Research for Advanced Technology (ERATO), Bionanotransporter Project, Katsura Int'tech Center, Katsura , Nishikyo-ku, Kyoto 615-8530, Japan.

出版信息

Biomacromolecules. 2015 Sep 14;16(9):2964-71. doi: 10.1021/acs.biomac.5b00867. Epub 2015 Aug 25.

Abstract

Clinically approved small-molecule magnetic resonance imaging (MRI) contrast agents are all rapidly cleared from the body and offer weak signal enhancement. To avoid repeated administration of contrast agent and improve signal-to-noise ratios, agents with stronger signal enhancement and better retention in tumors are needed. Therefore, we focused on hydrogels because of their excellent water accessibility and biodegradability. Gadolinium (Gd)-chelating cross-linkers were incorporated into self-assembled pullulan nanogels to both impart magnetic properties and to stabilize this material that has been extensively studied for medical applications. We show that these Gd-chelating pullulan nanogels (Gd-CHPOA) have the highest reported relaxivity for any hydrogel-based particles and accumulate in the 4T1 tumors in mice at high levels 4 h after injection. This combination offers high signal enhancement and lasts up to 7 days to delineate the tumor clearly for longer imaging time scales. Importantly, this long-term accumulation does not cause any damage or toxicity in major organs up to three months after injection. Our work highlights the clinical potential of Gd-CHPOA as a tumor-imaging MRI contrast agent, permitting tumor identification and assessment with a high signal-to-background ratio.

摘要

临床上批准的小分子磁共振成像(MRI)对比剂都从体内迅速清除,提供微弱的信号增强。为了避免反复给予造影剂并提高信噪比,需要具有更强信号增强和更好在肿瘤中保留的试剂。因此,我们专注于水凝胶,因为它们具有极好的水可及性和生物降解性。镧系元素(Gd)螯合交联剂被掺入自组装普鲁兰纳米凝胶中,既赋予磁性又稳定这种已广泛研究用于医学应用的材料。我们表明,这些 Gd 螯合普鲁兰纳米凝胶(Gd-CHPOA)具有任何基于水凝胶的颗粒中报告的最高弛豫率,并在注射后 4 小时在小鼠的 4T1 肿瘤中高水平积累。这种组合提供了高信号增强,并持续长达 7 天,以更清晰地描绘肿瘤,用于更长的成像时间尺度。重要的是,这种长期积累在注射后三个月内不会对主要器官造成任何损害或毒性。我们的工作突出了 Gd-CHPOA 作为肿瘤成像 MRI 对比剂的临床潜力,允许以高信噪比进行肿瘤识别和评估。

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