用于增强定量MRI的磁化率依赖比率探针

IF 26.8 1区 医学 Q1 ENGINEERING, BIOMEDICAL Nature Biomedical Engineering Pub Date : 2024-11-29 DOI:10.1038/s41551-024-01286-4
Cheng Zhang, Bin Nan, Juntao Xu, Tengxiang Yang, Li Xu, Chang Lu, Xiao-Bing Zhang, Jianghong Rao, Guosheng Song
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引用次数: 0

摘要

在磁共振成像(MRI)中,分析物的定量测量受阻于难以区分分析物激活探针的MRI信号和完整探针积累的MRI信号。本研究表明,通过磁化率相关的磁共振调谐,具有高弛豫比变化(在7 T时超过2.5倍)的比率型MRI探针可以增强成像灵敏度和定量。具体来说,包含顺磁性mn -卟啉和超顺磁性氧化铁纳米颗粒的聚合物探针诱导了纵向和横向磁弛豫的相反变化,对分析物浓度的响应独立于探针浓度。在小鼠实验中,该探针允许对皮下肿瘤、药物性损伤肝脏和正异性胶质瘤中的H2O2、H2S或pH进行定量实时动态成像。比例MRI探针可有利地用于获得病理过程的分子洞察力,并在提供解剖信息的同时避免体内探针浓度动态变化的干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Magnetic-susceptibility-dependent ratiometric probes for enhancing quantitative MRI

In magnetic resonance imaging (MRI), quantitative measurements of analytes are hindered by difficulties in distinguishing the MRI signals of activation of the probe by the analyte from those of the accumulation of the intact probe. Here we show that imaging sensitivity and quantitation can be enhanced by ratiometric MRI probes with a high relaxivity-ratio change (more than 2.5-fold at 7 T) via magnetic-susceptibility-dependent magnetic resonance tuning. Specifically, polymeric probes that incorporate paramagnetic Mn-porphyrin and superparamagnetic iron oxide nanoparticles inducing opposite changes in the longitudinal and transverse magnetic relaxivities responded to analyte concentration independently of probe concentration. In mice, the probes allowed for quantitative real-time dynamic imaging of H2O2, H2S or pH in subcutaneous tumours, in livers with drug-induced injury and in orthotropic gliomas. The ratiometric MRI probes may be advantageously used to obtain molecular insight into pathological processes and to circumvent interference from dynamic changes in probe concentration within the body while providing anatomical information.

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来源期刊
Nature Biomedical Engineering
Nature Biomedical Engineering Medicine-Medicine (miscellaneous)
CiteScore
45.30
自引率
1.10%
发文量
138
期刊介绍: Nature Biomedical Engineering is an online-only monthly journal that was launched in January 2017. It aims to publish original research, reviews, and commentary focusing on applied biomedicine and health technology. The journal targets a diverse audience, including life scientists who are involved in developing experimental or computational systems and methods to enhance our understanding of human physiology. It also covers biomedical researchers and engineers who are engaged in designing or optimizing therapies, assays, devices, or procedures for diagnosing or treating diseases. Additionally, clinicians, who make use of research outputs to evaluate patient health or administer therapy in various clinical settings and healthcare contexts, are also part of the target audience.
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