Chan Minnie, Almutairi Adah
Department of Chemistry and Biochemistry , University of California , San Diego , La Jolla , CA 92093-0600 , USA.
Skaggs School of Pharmacy and Pharmaceutical Sciences , KACST-UCSD Center of Excellence in Nanomedicine , Laboratory of Bioresponsive Materials , University of California , 9500 Gilman Dr., 0600 , PSB 2270 , La Jolla , San Diego , CA 92093-0600 , USA . Email:
Mater Horiz. 2016 Jan 21;3(1):21-40. doi: 10.1039/c5mh00161g. Epub 2015 Oct 19.
In the past few decades, advances in imaging equipment and protocols have expanded the role of imaging in diagnosis and disease management, especially in cancer. Traditional imaging agents have rapid clearance and low specificity for disease detection. To improve accuracy in disease identification, localization and assessment, novel nanomaterials are frequently explored as imaging agents to achieve high detection specificity and sensitivity. A promising material for this purpose are hydrogel nanoparticles, whose high hydrophilicity, biocompatibility, and tunable size in the nanometer range make them ideal for imaging. These nanogels (10 to 200 nm) can circumvent uptake by the reticuloendothelial system, allowing longer circulation times than small molecules. In addition, their size/surface properties can be further tailored to optimize their pharmacokinetics for imaging of a particular disease. Herein, we provide a comprehensive review of nanogels as imaging agents in various modalities with sources of signal spanning the electromagnetic spectrum, including MRI, NIR, UV-vis, and PET. Many materials and formulation methods will be reviewed to highlight the versatility of nanogels as imaging agents.
在过去几十年中,成像设备和协议的进步扩大了成像在诊断和疾病管理中的作用,尤其是在癌症方面。传统成像剂对疾病检测的清除速度快且特异性低。为了提高疾病识别、定位和评估的准确性,人们经常探索新型纳米材料作为成像剂,以实现高检测特异性和灵敏度。水凝胶纳米颗粒就是一种很有前景的用于此目的的材料,其高亲水性、生物相容性以及纳米范围内可调节的尺寸使其成为理想的成像材料。这些纳米凝胶(10至200纳米)可以避免被网状内皮系统摄取,从而比小分子具有更长的循环时间。此外,它们的尺寸/表面性质可以进一步调整,以优化其药代动力学,用于特定疾病的成像。在此,我们全面综述了纳米凝胶作为各种成像模态的成像剂,其信号源涵盖电磁光谱,包括磁共振成像(MRI)、近红外(NIR)、紫外可见(UV-vis)和正电子发射断层扫描(PET)。将综述许多材料和制剂方法,以突出纳米凝胶作为成像剂的多功能性。