Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.
Department of Brain & Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, MA, USA.
Nat Nanotechnol. 2018 Jun;13(6):473-477. doi: 10.1038/s41565-018-0092-4. Epub 2018 Apr 30.
Calcium ions are ubiquitous signalling molecules in all multicellular organisms, where they mediate diverse aspects of intracellular and extracellular communication over widely varying temporal and spatial scales . Though techniques to map calcium-related activity at a high resolution by optical means are well established, there is currently no reliable method to measure calcium dynamics over large volumes in intact tissue . Here, we address this need by introducing a family of magnetic calcium-responsive nanoparticles (MaCaReNas) that can be detected by magnetic resonance imaging (MRI). MaCaReNas respond within seconds to [Ca] changes in the 0.1-1.0 mM range, suitable for monitoring extracellular calcium signalling processes in the brain. We show that the probes permit the repeated detection of brain activation in response to diverse stimuli in vivo. MaCaReNas thus provide a tool for calcium-activity mapping in deep tissue and offer a precedent for the development of further nanoparticle-based sensors for dynamic molecular imaging with MRI.
钙离子是所有多细胞生物中无处不在的信号分子,它们在广泛的时间和空间尺度上介导细胞内和细胞外通讯的各个方面。虽然通过光学手段绘制高分辨率钙相关活性的技术已经成熟,但目前还没有可靠的方法来测量完整组织中大量体积的钙动力学。在这里,我们通过引入一系列磁性钙响应纳米颗粒(MaCaReNas)来满足这一需求,这些纳米颗粒可以通过磁共振成像(MRI)检测到。MaCaReNas 在 0.1-1.0 mM 范围内对 [Ca]变化的响应时间在数秒内,适用于监测大脑中的细胞外钙信号转导过程。我们表明,这些探针允许在体内对不同刺激下的大脑激活进行重复检测。因此,MaCaReNas 为在深部组织中进行钙活性测绘提供了一种工具,并为进一步开发基于纳米颗粒的 MRI 动态分子成像传感器提供了先例。
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