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首页> 外文期刊>Chemical science >Targeting triple-negative breast cancer cells using Dengue virus-mimicking pH-responsive framboidal triblock copolymer vesicles
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Targeting triple-negative breast cancer cells using Dengue virus-mimicking pH-responsive framboidal triblock copolymer vesicles

机译:使用登革热病毒模拟pH响应的三链三嵌段共聚物囊泡靶向三阴性乳腺癌细胞

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It is well-known that the Dengue fever virus undergoes a distinct morphological transition from topologically smooth particles to ‘bumpy’ particle on increasing the temperature from that of the mosquito carrier (28 °C) to that of the human host (37 °C). This virus also possesses pH-sensitive surface domains that undergo conformational changes during infection which facilitates exit from the endosomes. Herein we take a bio-inspired approach to design synthetic Dengue virus-mimicking nanoparticles to target triple-negative (TN) breast cancer cells that overexpress SR-B1 scavenger receptors. Thus, sterile pH-responsive methacrylic ABC triblock copolymer vesicles were prepared in aqueous solution via polymerization-induced self-assembly. Microphase separation between two enthalpically-incompatible hydrophobic membrane-forming blocks produced a well-defined framboidal morphology, with surface globules of ~28 nm diameter protruding from the membrane. The hydrophilic stabilizer block comprises 97% hydroxyl-functionalized chains and 3% phosphorylcholine-functionalized chains, with the latter being critical for selective intracellular uptake. These framboidal vesicles remain intact at neutral pH but become swollen and cationic at pH 5–6 because the tertiary amine residues in the hydrophobic C block become protonated. We demonstrate that such nanoparticles enable selective targeting of TN breast cancer cells. This is because such malignant cells overexpress SR-B1 receptors for naturally-occurring phospholipids and hence take up the phosphorylcholine-decorated framboidal vesicles preferentially. In contrast, negligible cell uptake is observed over the same time period for both human dermal fibroblasts and normal breast cancer cells that minimally express the SR-B1 receptor. Moreover, we show that genetic material within such pH-responsive framboidal vesicles can be efficiently delivered to the cell nuclei while maintaining high cell viability.
机译:众所周知,登革热病毒会随着温度从蚊子载体的温度(28°C)升高到人宿主的温度(37°C)而经历从拓扑平滑颗粒到“凹凸不平”颗粒的明显形态转变。 。该病毒还具有pH敏感的表面结构域,该结构域在感染过程中发生构象变化,从而有助于从内体中退出。在本文中,我们采用生物启发的方法设计模仿登革热病毒的纳米粒子,以靶向过度表达SR-B1清道夫受体的三阴性(TN)乳腺癌细胞。因此,通过聚合反应诱导的自组装在水溶液中制备了无菌的pH响应性甲基丙烯酸ABC三嵌段共聚物囊泡。在两个不相容的疏水性疏水膜形成嵌段之间进行微相分离,形成了清晰的黄蜂形态,膜表面直径约28 nm的小球突出。亲水性稳定剂嵌段包含97%的羟基官能化链和3%的磷酸胆碱官能化链,后者对于选择性细胞内摄取至关重要。在中性pH下,这些果糖小泡保持完整,但在pH 5–6时溶胀并变为阳离子,因为疏水性C嵌段中的叔胺残基被质子化。我们证明了这种纳米粒子能够选择性靶向TN乳腺癌细胞。这是因为这样的恶性细胞过表达天然存在的磷脂的SR-B1受体,因此优先吸收装饰有磷酸胆碱的黄小囊泡。相比之下,对于人类真皮成纤维细胞和最低表达SR-B1受体的正常乳腺癌细胞,在同一时期内的细胞摄取却可忽略不计。此外,我们表明,在这种pH响应性的果肉小泡内的遗传物质可以有效地传递到细胞核,同时保持较高的细胞活力。

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