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异常微环境响应性 MRI 纳米探针的设计及其应用。

The Design of Abnormal Microenvironment Responsive MRI Nanoprobe and Its Application.

机构信息

School of Life Science, Institute of Engineering Medicine, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Int J Mol Sci. 2021 May 13;22(10):5147. doi: 10.3390/ijms22105147.

Abstract

Magnetic resonance imaging (MRI) is often used to diagnose diseases due to its high spatial, temporal and soft tissue resolution. Frequently, probes or contrast agents are used to enhance the contrast in MRI to improve diagnostic accuracy. With the development of molecular imaging techniques, molecular MRI can be used to obtain 3D anatomical structure, physiology, pathology, and other relevant information regarding the lesion, which can provide an important reference for the accurate diagnosis and treatment of the disease in the early stages. Among existing contrast agents, smart or activatable nanoprobes can respond to selective stimuli, such as proving the presence of acidic pH, active enzymes, or reducing environments. The recently developed environment-responsive or smart MRI nanoprobes can specifically target cells based on differences in the cellular environment and improve the contrast between diseased tissues and normal tissues. Here, we review the design and application of these environment-responsive MRI nanoprobes.

摘要

磁共振成像(MRI)由于具有较高的空间、时间和软组织分辨率,常用于疾病的诊断。通常,探针或对比剂用于增强 MRI 中的对比度,以提高诊断准确性。随着分子成像技术的发展,分子 MRI 可用于获取有关病变的三维解剖结构、生理学、病理学和其他相关信息,这可为疾病的早期准确诊断和治疗提供重要参考。在现有的对比剂中,智能或可激活的纳米探针可以对选择性刺激做出响应,例如证明酸性 pH 值、活性酶或还原环境的存在。最近开发的环境响应或智能 MRI 纳米探针可以根据细胞环境的差异特异性靶向细胞,并提高病变组织与正常组织之间的对比度。在这里,我们综述了这些环境响应性 MRI 纳米探针的设计和应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14f4/8152268/8e9ce9e3e818/ijms-22-05147-g001.jpg

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