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Enhanced Melanoma‐Targeted Therapy by Fru‐Blocked Phenyboronic Acid‐Modified Multiphase Antimetastatic Micellar Nanoparticles

机译:通过全封闭苯硼酸修饰的多相抗转移胶束纳米颗粒增强针对黑素瘤的治疗。

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摘要

Metastasis remains the main driver of mortality in patients suffering from cancer because of the refractoriness resulting from the multi‐phase metastatic cascade. Herein, a multifunctional self‐delivering PBA‐LMWH‐TOS nanoparticle (PLT NP) is established that acts as both nanocarrier and anti‐metastatic agent with effects on most hematogenous metastases of cancers. The hydrophilic segment (low molecular weight heparin, LMWH) inhibits the interactions between tumor cells and platelets. The hydrophobic segment (d‐α‐tocopheryl succinate, TOS) could inhibit the expression of matrix metalloproteinase‐9 (MMP‐9) in B16F10 cells which is first reported in this article. Surprisingly, even the blank NPs showed excellent anti‐metastatic capacity in three mouse models by acting on different phases of the metastatic cascade. Moreover, the overexpression of sialic acid (SA) residues on tumor cells is implicated in the malignant and metastatic phenotypes of cancers. Thus, these 3‐aminophenylboronic acid (PBA)‐modified doxorubicin (DOX)‐loaded NPs offer an efficient approach for the treatment of both solid melanomas and metastases. Furthermore, a simple pH‐sensitive “Fructose (Fru)‐blocking” coping strategy is established to reduce the NP distribution in normal tissues and distinctly increases the accumulation in melanoma tumors. These micellar NPs consisting of biocompatible materials offer a promising approach for the clinical therapy of highly invasive solid tumors and metastases.
机译:由于多阶段转移级联导致的难治性,转移仍然是癌症患者死亡率的主要驱动力。在此,建立了一种多功能的可自我递送的PBA-LMWH-TOS纳米颗粒(PLT NP),它既可以作为纳米载体,又可以作为抗转移剂,对大多数癌症的血源性转移都有影响。亲水片段(低分子量肝素,LMWH)抑制肿瘤细胞与血小板之间的相互作用。疏水部分(d-α-生育酚琥珀酸酯,TOS)可以抑制B16F10细胞中基质金属蛋白酶9(MMP-9)的表达,这是本文首次报道。出乎意料的是,即使空白的NP在三个小鼠模型中也通过作用于转移级联的不同阶段而显示出出色的抗转移能力。而且,在肿瘤细胞上唾液酸(SA)残基的过表达与癌症的恶性和转移表型有关。因此,这些3-氨基苯基硼酸(PBA)修饰的阿霉素(NPX)负载的NP为治疗实体黑色素瘤和转移瘤提供了有效的方法。此外,建立了一种简单的pH敏感的“果糖(Fru)阻断”应对策略,以减少正常组织中的NP分布并明显增加黑色素瘤肿瘤中的蓄积。这些由生物相容性材料组成的胶束NP为高侵袭性实体瘤和转移的临床治疗提供了一种有前途的方法。

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