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首页> 外文期刊>Advanced Science >Persistent Regulation of Tumor Hypoxia Microenvironment via a Bioinspired Pt‐Based Oxygen Nanogenerator for Multimodal Imaging‐Guided Synergistic Phototherapy
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Persistent Regulation of Tumor Hypoxia Microenvironment via a Bioinspired Pt‐Based Oxygen Nanogenerator for Multimodal Imaging‐Guided Synergistic Phototherapy

机译:通过Bioinspired PT基氧纳米氧化物持续调节肿瘤缺氧微环境,用于多峰显影引导协同光疗法

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Multifunctional nanoplatforms for imaging‐guided synergistic antitumor treatment are highly desirable in biomedical applications. However, anticancer treatment is largely affected by the pre‐existing hypoxic tumor microenvironment (TME), which not only causes the resistance of the tumors to photodynamic therapy (PDT), but also promotes tumorigenesis and tumor progression. Here, a continuous O2 self‐enriched nanoplatform is constructed for multimodal imaging‐guided synergistic phototherapy based on octahedral gold nanoshells (GNSs), which are constructed by a more facile and straightforward one‐step method using platinum (Pt) nanozyme‐decorated metal–organic frameworks (MOF) as the inner template. The Pt‐decorated MOF@GNSs (PtMGs) are further functionalized with human serum albumin‐chelated gadolinium (HSA‐Gd, HGd) and loaded with indocyanine green (ICG) (ICG‐PtMGs@HGd) to achieve a synergistic PDT/PTT effect and fluorescence (FL)/multispectral optoacoustic tomography (MSOT)/X‐ray computed tomography (CT)/magnetic resonance (MR) imaging. The Pt‐decorated nanoplatform endows remarkable catalase‐like behavior and facilitates the continuous decomposition of the endogenous H2O2 into O2 to enhance the PDT effect under hypoxic TME. HSA modification enhances the biocompatibility and tumor‐targeting ability of the nanocomposites. This TME‐responsive and O2 self‐supplement nanoparticle holds great potential as a multifunctional theranostic nanoplatform for the multimodal imaging‐guided synergistic phototherapy of solid tumors.
机译:用于成像引导的协同抗肿瘤处理的多官能纳米膜在生物医学应用中是非常理想的。然而,抗癌治疗在很大程度上受到预先存在的缺氧肿瘤微环境(TME)的影响,这不仅导致肿瘤对光动力疗法(PDT)的抗性,而且促进肿瘤发生和肿瘤进展。这里,基于八面体金纳米壳(GNSS)构建连续O2自富集纳米片形成,用于基于八面体金纳米壳(GNSS)的多模式显影引导的协同光疗法,其通过使用铂(Pt)纳米甲基纳米甲型 - 装饰金属的更容易和直接的一步法构成。有机框架(MOF)作为内模板。对该Pt装饰MOF @ GNSS(PtMGs)与人血清白蛋白的螯合钆(HSA的Gd,HGD)被进一步官能化并装载有吲哚花青绿(ICG)(ICG-PtMGs @ HGD),以实现协同PDT / PTT效果和荧光(FL)/多光谱光声断层扫描(MSOT)/ X射线计算断层扫描(CT)/磁共振(MR)成像。 PT装饰的纳米纳薄机赋予了显着的过氧化氢酶样行为,并促进内源性H 2 O 2的连续分解成O2,以增强缺氧TME下的PDT效应。 HSA改性增强了纳米复合材料的生物相容性和肿瘤靶向能力。该TME响应和O2自我补充纳米粒子具有巨大的潜力作为多峰显影引导的固体瘤的多峰影像引导协同光疗法的多功能治疗纳米型潜力。

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