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首页> 外文期刊>Biomaterials Science >Primary tumor and pre-metastatic niches co-targeting 'peptides-lego' hybrid hydroxyapatite nanoparticles for metastatic breast cancer treatment
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Primary tumor and pre-metastatic niches co-targeting 'peptides-lego' hybrid hydroxyapatite nanoparticles for metastatic breast cancer treatment

机译:原发性肿瘤和转移性乳头物共靶向“肽-LEGO”杂交羟基磷灰石纳米粒子用于转移性乳腺癌治疗

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摘要

Both tumor metastasis resisting therapy (TMRT) and tumor metastasis targeting therapy (TMTT) attempt to improve tumor metastasis treatment, but they are limited by dynamic metastatic escape or insufficient micrometastases drug accumulation, respectively. Doxorubicin (DOX)-loaded functional peptide combination (PMC)-modified hydroxyapatite (HP) multi-mode nanoparticles (DPH) were developed to realize tumor metastasis amphibious therapy by balancing TMRT and TMTT. An in vivo imaging study showed that DPH had efficient drug delivery ability targeting to primary tumor and micrometastasis. Besides, it was found that cathepsin B-triggered intracellular mitochondria and nuclei dual-targeted treatment could enhance the antitumor effect of DOX by a synergistic effect. DPH treatment finally achieved both primary tumor and micrometastases reduction in 4T1 aggressive lung metastasis models. The tumor metastasis inhibition of DPH was attributed to blocking the mitochondrial escape signaling pathways. The results also showed the enhanced anti-cancer benefits of DPH, which could orchestrate TMRT and TMTT in contrast to a mixture of DOX and PH (PMC-modified HP nanoparticles). Overall, we generated multi-mode nanoparticles that could flexibly realize amphibious therapy for metastatic cancer while reducing systemic drug exposure and off-target toxicities.
机译:肿瘤转移抵抗治疗(TMRT)和肿瘤转移靶向治疗(TMTT)试图改善肿瘤转移处理,但它们分别受到动态转移逃逸或不足的微量酶药物积累的限制。开发了多柔比蛋白(DOX) - 加载的功能肽组合(PMC)羟基磷灰石(HP)多模式纳米颗粒(DPH),通过平衡TMRT和TMTT来实现肿瘤转移两栖治疗。体内成像研究表明,DPH具有靶向原发性肿瘤和微转移的有效药物递送能力。此外,发现组织蛋白酶B触发的细胞内线粒体和核双重靶向治疗可以通过协同效应增强DOX的抗肿瘤作用。 DPH治疗最终达到了初级肿瘤和微转移血滴酶的降低,在4T1侵袭性肺转移模型中。 DPH的肿瘤转移抑制归因于阻断线粒体逃逸信号传导途径。结果还表明,DPH的增强抗癌益处,它可以与DOX和pH(PMC改性HP纳米颗粒)的混合物相比,可以协调TMRT和TMTT。总体而言,我们产生了多样性纳米颗粒,其可以灵活地实现转移性癌症的两栖治疗,同时减少全身药物暴露和偏离靶向毒性。

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