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Non-invasive sensitive brain tumor detection using dual-modality bioimaging nanoprobe

机译:使用双模模拟纳米孔的非侵袭性敏感脑肿瘤检测

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Despite decades of efforts, non-invasive sensitive detection of small malignant brain tumors still remains challenging. Here we report a dual-modality I-241-labeled gold nanostar (I-241-GNS) probe for sensitive brain tumor imaging with positron emission tomography (PET) and subcellular tracking with two-photon photoluminescence (TPL) and electron microscopy (EM). Experiment results showed that the developed nanoprobe has potential to reach sub-millimeter intracranial brain tumor detection using PET scan, which is superior to any currently available non-invasive imaging modality. Microscopic examination using TPL and EM further confirmed that GNS nanoparticles permeated the brain tumor leaky vasculature and accumulated inside brain tumor cells following systemic administration. Selective brain tumor targeting by enhanced permeability and retention effect and ultrasensitive imaging render I-241-GNS nanoprobe promise for future brain tumor-related preclinical and translational applications.
机译:尽管数十年的努力,但小恶性脑肿瘤的无侵袭性敏感性仍然持挑战性。在这里,我们报告了一种用于敏感脑肿瘤成像的双式模态I-241标记的金纳米碱(I-241-GNS)探针,其具有正电子发射断层扫描(PET)和具有双光子光致发光(TPL)和电子显微镜的亚细胞跟踪(EM )。实验结果表明,发育的纳米孔使用PET扫描具有潜力达到亚毫米颅内脑肿瘤检测,其优于任何当前可用的非侵入性成像模态。使用TPL和EM进一步证实了GNS纳米粒子渗透脑肿瘤泄漏血管系统并在全身施用后累积脑肿瘤细胞的微观检查。通过增强的渗透性和保留效果和超细成像来靶向靶向脑肿瘤,使I-241-GNS NanoProbe承诺未来脑肿瘤相关的临床前和翻译应用。

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