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首页> 外文期刊>Nature nanotechnology >Targeted crystallization of mixed-charge nanoparticles in lysosomes induces selective death of cancer cells
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Targeted crystallization of mixed-charge nanoparticles in lysosomes induces selective death of cancer cells

机译:溶酶体中混合纳米粒子的靶向结晶诱导癌细胞的选择性死亡

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摘要

Lysosomes have become an important target for anticancer therapeutics because lysosomal cell death bypasses the classical caspase-dependent apoptosis pathway, enabling the targeting of apoptosis- and drug-resistant cancers. However, only a few small molecules-mostly repurposed drugs-have been tested so far, and these typically exhibit low cancer selectivity, making them suitable only for combination therapies. Here, we show that mixed-charge nanoparticles covered with certain ratios of positively and negatively charged ligands can selectively target lysosomes in cancerous cells while exhibiting only marginal cytotoxicity towards normal cells. This selectivity results from distinct pH-dependent aggregation events, starting from the formation of small, endocytosis-prone clusters at cell surfaces and ending with the formation of large and well-ordered nanoparticle assemblies and crystals inside cancer lysosomes. These assemblies cannot be cleared by exocytosis and cause lysosome swelling, which gradually disrupts the integrity of lysosomal membranes, ultimately impairing lysosomal functions and triggering cell death.
机译:溶酶体已成为抗癌治疗剂的重要靶标,因为溶酶体细胞死亡绕过典型的胱天蛋白酶依赖性凋亡途径,从而能够靶向凋亡和耐药癌症。然而,到目前为止只测试了几个小分子 - 大多是重复的药物,并且这些通常表现出低癌症选择性,使它们仅适用于组合疗​​法。这里,我们表明,用带负电荷的配体的某些比率覆盖的混合电荷纳米颗粒可以在癌细胞中选择性地靶向溶酶体,同时仅表现出对正常细胞的边缘细胞毒性。这种选择性由不同的pH依赖性聚集事件产生,从细胞表面的形成和结束的小型内吞作用簇的形成开始,并以癌症溶酶体内的大型且有序众多的纳米粒子组件和晶体结束。这些组件不能通过外毒性症清除并引起溶酶体溶胀,这逐渐破坏溶酶体膜的完整性,最终损害溶酶体功能并引发细胞死亡。

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