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自组装内源性胆红素作为一种多功能近红外光热纳米试剂用于癌症诊疗一体化。

Self-Assembling Endogenous Biliverdin as a Versatile Near-Infrared Photothermal Nanoagent for Cancer Theranostics.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.

School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Adv Mater. 2019 Apr;31(16):e1900822. doi: 10.1002/adma.201900822. Epub 2019 Mar 3.

Abstract

Photothermal nanomaterials that integrate multimodal imaging and therapeutic functions provide promising opportunities for noninvasive and targeted diagnosis and treatment in precision medicine. However, the clinical translation of existing photothermal nanoagents is severely hindered by their unclear physiological metabolism, which makes them a strong concern for biosafety. Here, the utilization of biliverdin (BV), an endogenic near-infrared (NIR)-absorbing pigment with well-studied metabolic pathways, to develop photothermal nanoagents with the aim of providing efficient and metabolizable candidates for tumor diagnosis and therapy, is demonstrated. It is shown that BV nanoagents with intense NIR absorption, long-term photostability and colloidal stability, and high photothermal conversion efficiency can be readily constructed by the supramolecular multicomponent self-assembly of BV, metal-binding short peptides, and metal ions through the reciprocity and synergy of coordination and multiple noncovalent interactions. In vivo data reveal that the BV nanoagents selectively accumulate in tumors, locally elevate tumor temperature under mild NIR irradiation, and consequently induce efficient photothermal tumor ablation with promising biocompatibility. Furthermore, the BV nanoagents can serve as a multimodal contrast for tumor visualization through both photoacoustic and magnetic resonance imaging. BV has no biosafety concerns, and thereby offers a great potential in precision medicine by integrating multiple theranostic functions.

摘要

光热纳米材料集多模态成像和治疗功能于一体,为精准医学中的非侵入性和靶向诊断与治疗提供了极具前景的机会。然而,现有光热纳米制剂的临床转化受到其生理代谢不明确的严重阻碍,这使其生物安全性成为人们强烈关注的问题。在这里,利用胆红素(BV)——一种具有明确代谢途径的内源性近红外(NIR)吸收色素,来开发光热纳米制剂,旨在为肿瘤诊断和治疗提供高效且可代谢的候选物。结果表明,通过 BV、金属结合短肽和金属离子的超分子多组分自组装,可以很容易地构建具有强烈 NIR 吸收、长期光稳定性和胶体稳定性以及高光热转换效率的 BV 纳米制剂,这得益于配位和多种非共价相互作用的相互性和协同性。体内数据表明,BV 纳米制剂选择性地在肿瘤中积累,在温和的 NIR 照射下局部升高肿瘤温度,从而诱导具有良好生物相容性的高效光热肿瘤消融。此外,BV 纳米制剂还可以通过光声和磁共振成像作为肿瘤可视化的多模态对比剂。BV 不存在生物安全问题,通过整合多种治疗功能,在精准医学中具有巨大的应用潜力。

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