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Bioresponsive Polyoxometalate Cluster for Redox-Activated Photoacoustic Imaging-Guided Photothermal Cancer Therapy

机译:生物反应性多金属氧酸盐簇用于氧化还原激活的光声成像引导光热癌治疗。

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摘要

Although various types of imaging agents have been developed for photoacoustic (PA) imaging, relatively few imaging agents exhibit high selectivity/sensitivity to the tumor microenvironment for on-demand PA imaging and therapy. Herein, molybdenum-based polyoxometalate (POM) clusters with the highest oxidation state of Mo(VI) (denoted as Ox-POM) were designed as novel agents for redox-activated PA imaging-guided photothermal therapy (PTT). Capable of escaping from recognition and capture by the liver and spleen, these renal clearable clusters with ultra-small size (hydrodynamic size: 1.9 nm) can accumulate in the tumor, self-assemble into larger nanoclusters at low pH, and are reduced to NIR absorptive agents in the tumor microenvironment. Studies in 4T1 tumor-bearing mice indicated that these clusters could be employed for bio-responsive PA imaging-guided tumor ablation in vivo. Our finding is expected to establish a new physicochemical paradigm for the design of PA imaging agents based on clusters, bridging the conventional concepts of “molecule” and “nano” in the bio-imaging field.
机译:尽管已经开发出用于光声(PA)成像的各种类型的成像剂,但是相对较少的成像剂对按需PA成像和治疗的肿瘤微环境表现出高选择性/敏感性。在此,将具有最高氧化态的Mo(VI)(称为Ox-POM)的钼基多金属氧酸盐(POM)簇设计为氧化还原激活的PA成像引导光热疗法(PTT)的新型药物。这些具有超小尺寸(流体动力学尺寸:1.9 nm)的肾脏可清除簇能够逃避肝脏和脾脏的识别和捕获,可以在肿瘤中积聚,在低pH下自组装成更大的纳米簇,并被还原为NIR肿瘤微环境中的吸收剂。对4T1荷瘤小鼠的研究表明,这些簇可用于体内生物响应PA成像引导的肿瘤消融。我们的发现有望为基于聚类的PA显像剂设计建立一种新的物理化学范式,将生物成像领域中“分子”和“纳米”的传统概念联系起来。

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