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多梯度耦合的磁增强作用可实现对循环生物标志物的直接和可编程分析。

Magnetic augmentation through multi-gradient coupling enables direct and programmable profiling of circulating biomarkers.

机构信息

Institute for Health Innovation & Technology, National University of Singapore, Singapore, Singapore.

Department of Biomedical Engineering, College of Design and Engineering, National University of Singapore, Singapore, Singapore.

出版信息

Nat Commun. 2024 Sep 27;15(1):8410. doi: 10.1038/s41467-024-52754-z.

Abstract

Conventional magnetic biosensing technologies have reduced analytical capacity for magnetic field dimensionality and require extensive sample processing. To address these challenges, we spatially engineer 3D magnetic response gradients for direct and programmable molecular detection in native biofluids. Named magnetic augmentation through triple-gradient coupling for high-performance detection (MATCH), the technology comprises gradient-distributed magnetic nanoparticles encapsulated within responsive hydrogel pillars and suspended above a magnetic sensor array. This configuration enables multi-gradient matching to achieve optimal magnetic activation, response and transduction, respectively. Through focused activation by target biomarkers, the platform preferentially releases sensor-proximal nanoparticles, generating response gradients that complement the sensor's intrinsic detection capability. By implementing an upstream module that recognizes different biomarkers and releases universal activation molecules, the technology achieves programmable detection of various circulating biomarkers in native plasma. It bypasses conventional magnetic labeling, completes in <60 minutes and achieves sensitive detection (down to 10 RNA and 1000 protein copies). We apply the MATCH to measure RNAs and proteins directly in patient plasma, achieving accurate cancer classification.

摘要

传统的磁生物传感技术降低了对磁场维度的分析能力,并且需要大量的样品处理。为了解决这些挑战,我们对 3D 磁场响应梯度进行了空间工程设计,以便在天然生物流体中进行直接和可编程的分子检测。这项技术被命名为通过三重梯度耦合进行高性能检测的磁增强(MATCH),它由梯度分布的磁性纳米粒子封装在响应性水凝胶柱内,并悬浮在磁传感器阵列上方。这种配置可以实现多梯度匹配,分别实现最佳的磁激活、响应和转换。通过目标生物标志物的集中激活,该平台优先释放靠近传感器的纳米粒子,产生补充传感器固有检测能力的响应梯度。通过实施一个识别不同生物标志物并释放通用激活分子的上游模块,该技术可以实现对天然血浆中各种循环生物标志物的可编程检测。它绕过了传统的磁标记,在<60 分钟内完成,并实现了灵敏的检测(低至 10 RNA 和 1000 个蛋白质拷贝)。我们将 MATCH 应用于直接在患者血浆中测量 RNA 和蛋白质,实现了癌症的准确分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1b3/11437193/001337e2bb17/41467_2024_52754_Fig1_HTML.jpg

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