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From Rational Design to Probe Optimization: The Role of Nanoparticle Valency in Single Cancer Cell Detection in Blood via Magnetic Relaxation

机译:从理性设计到探测优化:纳米粒子级在血液放松血液中单癌细胞检测中的作用

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The conjugation of targeting ligands to iron oxide nanoparticles has achieved the development of specific assays for the detection of biomedical targets through magnetic relaxation. However, limited studies investigated how the nanoparticle valency modulates the detection response and the assays' sensitivity. Through nanoparticle valency grafting, we were able to achieve single cancer cell detection in blood, with a small-molecule-carrying multivalent nanoparticle in just 15 minutes. Although exhibiting a similar diagnostic trend, a corresponding high-valency antibody-carrying nanosensor did not achieve the same detection threshold, indicating that small molecules might be attractive probes for cancer diagnostics. Overall, these studies indicate that nanoparticle multivalency is a critical parameter in the design of robust and sensitive nanoprobes for diverse clinical and field-based applications.
机译:靶向配体与氧化铁纳米颗粒的缀合已经实现了通过磁性松弛检测生物医学靶的特异性测定的发展。然而,有限的研究研究了纳米粒子级的方式如何调节检测响应和测定的敏感性。通过纳米颗粒植物嫁接,我们能够在短短15分钟内携带血液中的单一癌细胞检测,用小分子携带的多价纳米粒子。虽然表现出类似的诊断趋势,但是一种相应的高价抗体纳米传感器未达到相同的检测阈值,表明小分子可能对癌症诊断具有吸引力的探针。总的来说,这些研究表明,纳米粒子多价是用于多种临床和现场应用的鲁棒和敏感的纳米体的设计中的关键参数。

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