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Recent advances in multiphoton microscopy combined with nanomaterials in the field of disease evolution and clinical applications to liver cancer

机译:多光子显微镜相结合的最新进展与纳米材料领域的疾病进化和临床应用肝癌症

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摘要

Multiphoton microscopy (MPM) is expected to become a powerful clinical tool, with its unique advantages of being label-free, high resolution, deep imaging depth, low light photobleaching and low phototoxicity. Nanomaterials, with excellent physical and chemical properties, are biocompatible and easy to prepare and functionalize. The addition of nanomaterials exactly compensates for some defects of MPM, such as the weak endogenous signal strength, limited imaging materials, insufficient imaging depth and lack of therapeutic effects. Therefore, combining MPM with nanomaterials is a promising biomedical imaging method. Here, we mainly review the principle of MPM and its application in liver cancer, especially in disease evolution and clinical applications, including monitoring tumor progression, diagnosing tumor occurrence, detecting tumor metastasis, and evaluating cancer therapy response. Then, we introduce the latest advances in the combination of MPM with nanomaterials, including the MPM imaging of gold nanoparticles (AuNPs) and carbon dots (CDs). Finally, we also propose the main challenges and future research directions of MPM technology in HCC.
机译:多光子显微镜(MPM)有望成为一个强大的临床工具,以其独特的等优势,成为label-free,高分辨率,深度成像深度、低光光漂白和低光毒性。物理和化学属性,准备和生物相容性和容易使职能化。完全补偿MPM的一些缺陷,弱内源性信号强度,有限的成像材料、成像深度和不足缺乏疗效。MPM与纳米材料是一种很有前途的生物医学成像方法。MPM的原理及其在肝脏中的应用癌症,特别是在进化和疾病临床应用,包括监测肿瘤诊断肿瘤的发生,发展,检测肿瘤转移,并评估癌症治疗反应。的进步MPM的结合纳米材料,包括黄金的MPM成像碳纳米颗粒(AuNPs)和点(CDs)。最后,我们还提出的主要挑战和MPM技术的未来研究方向HCC。

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