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界面聚合制备具有纳米丝状伪足的磁性粒子,用于 PSA 灰区的高精准液体活检。

Interfacial Polymerization Produced Magnetic Particles with Nano-Filopodia for Highly Accurate Liquid Biopsy in the PSA Gray Zone.

机构信息

CAS Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Adv Mater. 2023 Nov;35(48):e2303821. doi: 10.1002/adma.202303821. Epub 2023 Oct 25.

Abstract

Magnetic particles are leading separation materials for biological purification and detection. Existing magnetic particles, which almost rely on molecule-level interactions, however, often encounter bottlenecks in highly efficient cell-level separation due to the underestimate of surface structure effects. Here, immune cell-inspired magnetic particles with nano-filopodia (NFMPs) produced by interfacial polymerization for highly efficient capture of circulating tumor cells (CTCs) and further accurate clinical diagnosis of prostate cancer are reported . The unprecedented construction of nano-filopodia on polymer-based magnetic particles is achieved by introducing electrostatic interactions in emulsion interfacial polymerization. Due to the unique nano-filopodia, the NFMPs allow remarkably enhanced CTCs capture efficiency (86.5% ± 2.8%) compared with smooth magnetic particles (SMPs, 35.7% ± 5.7%). Under the assistance of machine learning by combining with prostate-specific antigen (PSA) and free to total PSA (F/T-PSA), the NFMPs strategy demonstrates high sensitivity (100%), high specificity (93.3%), and a high area under the curve (AUC) value (98.1%) for clinical diagnosis of prostate cancer in the PSA gray zone. The NFMPs are anticipated as an efficient platform for CTCs-based liquid biopsy toward early cancer diagnosis and prognosis evaluation.

摘要

磁性颗粒是生物净化和检测的主要分离材料。然而,现有的磁性颗粒几乎依赖于分子水平的相互作用,由于低估了表面结构的影响,在高效的细胞水平分离方面经常遇到瓶颈。在这里,报道了一种免疫细胞启发的磁性纳米纤维(NFMPs),它是通过界面聚合产生的,用于高效捕获循环肿瘤细胞(CTCs),并进一步实现前列腺癌的精确临床诊断。通过在乳液界面聚合中引入静电相互作用,在基于聚合物的磁性颗粒上实现了前所未有的纳米纤维结构的构建。由于独特的纳米纤维,NFMPs 与光滑的磁性颗粒(SMPs,35.7%±5.7%)相比,允许显著提高 CTCs 的捕获效率(86.5%±2.8%)。在结合前列腺特异性抗原(PSA)和游离 PSA 与总 PSA(F/T-PSA)的机器学习的辅助下,NFMPs 策略在 PSA 灰色区域的前列腺癌临床诊断中表现出高灵敏度(100%)、高特异性(93.3%)和高曲线下面积(AUC)值(98.1%)。NFMPs 有望成为基于 CTC 的液体活检的有效平台,用于早期癌症诊断和预后评估。

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