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超灵敏光学检测及消除残留微肿瘤的术后可植入水凝胶传感器,用于预防癌症复发。

Ultrasensitive Optical Detection and Elimination of Residual Microtumors with a Postoperative Implantable Hydrogel Sensor for Preventing Cancer Recurrence.

机构信息

School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, 450001, China.

Key Laboratory of Targeting Therapy and Diagnosis for Critical Diseases, Key Laboratory of Advanced Drug Preparation Technologies, Ministry of Education, Zhengzhou, 450001, China.

出版信息

Adv Mater. 2024 Apr;36(14):e2307923. doi: 10.1002/adma.202307923. Epub 2024 Jan 10.

DOI:10.1002/adma.202307923
PMID:38174840
Abstract

In vivo optical imaging of trace biomarkers in residual microtumors holds significant promise for cancer prognosis but poses a formidable challenge. Here, a novel hydrogel sensor is designed for ultrasensitive and specific imaging of the elusive biomarker. This hydrogel sensor seamlessly integrates a molecular beacon nanoprobe with fibroblasts, offering both high tissue retention capability and an impressive signal-to-noise ratio for imaging. Signal amplification is accomplished through exonuclease I-mediated biomarker recycling. The resulting hydrogel sensor sensitively detects the biomarker carcinoembryonic antigen with a detection limit of 1.8 pg mL in test tubes. Moreover, it successfully identifies residual cancer nodules with a median diameter of less than 2 mm in mice bearing partially removed primary triple-negative breast carcinomas (4T1). Notably, this hydrogel sensor is proven effective for the sensitive diagnosis of invasive tumors in post-surgical mice with infiltrating 4T1 cells, leveraging the role of fibroblasts in locally enriching tumor cells. Furthermore, the residual microtumor is rapidly photothermal ablation by polydopamine-based nanoprobe under the guidance of visualization, achieving ≈100% suppression of tumor recurrence and lung metastasis. This work offers a promising alternative strategy for visually detecting residual microtumors, potentially enhancing the prognosis of cancer patients following surgical interventions.

摘要

在残留微肿瘤中痕量生物标志物的体内光学成像对癌症预后具有重要意义,但也带来了巨大的挑战。在这里,设计了一种新型水凝胶传感器,用于超灵敏和特异性地对难以捉摸的生物标志物进行成像。这种水凝胶传感器将分子信标纳米探针与成纤维细胞无缝集成,具有高组织保留能力和令人印象深刻的成像信噪比。通过外切酶 I 介导的生物标志物循环实现信号放大。所得到的水凝胶传感器可以灵敏地检测生物标志物癌胚抗原,在试管中检测限低至 1.8 pg mL。此外,它成功地识别了携带部分切除原发性三阴性乳腺癌(4T1)的小鼠中直径小于 2 毫米的残留癌症结节。值得注意的是,该水凝胶传感器通过浸润性 4T1 细胞在手术后小鼠中浸润性肿瘤的敏感诊断中被证明是有效的,利用成纤维细胞在局部富集肿瘤细胞中的作用。此外,在可视化引导下,基于聚多巴胺的纳米探针可快速光热消融残留微肿瘤,实现肿瘤复发和肺转移的抑制率约为 100%。这项工作为可视化检测残留微肿瘤提供了一种有前途的替代策略,可能会提高癌症患者手术后的预后。

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