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Core-Shell Nanoparticle-Based Peptide Therapeutics and Combined Hyperthermia for Enhanced Cancer Cell Apoptosis

机译:基于核-壳纳米粒子的肽治疗剂和联合热疗增强癌细胞凋亡。

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摘要

Mitochondria-targeting peptides have garnered immense interest as potential chemotherapeutics in recent years. However, there is a clear need to develop strategies to overcome the critical limitations of peptides, such as poor solubility and the lack of target specificity, which impede their clinical applications. To this end, we report magnetic core-shell nanoparticle (MCNP)-mediated delivery of a mitochondria-targeting pro-apoptotic amphipathic tail-anchoring peptide (ATAP) to malignant brain and metastatic breast cancer cells. Conjugation of ATAP to the MCNPs significantly enhanced the chemotherapeutic efficacy of ATAP, while the presence of targeting ligands afforded selective delivery to cancer cells. Induction of MCNP-mediated hyperthermia further potentiated the efficacy of ATAP. In summary, a combination of MCNP-mediated ATAP delivery and subsequent hyperthermia resulted in an enhanced effect on mitochondrial dysfunction, thus resulting in increased cancer cell apoptosis.
机译:近年来,靶向线粒体的肽作为潜在的化学疗法引起了极大的兴趣。然而,显然需要开发策略来克服肽的关键限制,例如溶解性差和靶标特异性不足,这阻碍了它们的临床应用。为此,我们报告了磁性核-壳纳米粒子(MCNP)介导的线粒体靶向促凋亡两亲性尾部锚定肽(ATAP)递送至恶性脑和转移性乳腺癌细胞。 ATAP与MCNP的结合显着增强了ATAP的化学治疗功效,而靶向配体的存在则提供了向癌细胞的选择性递送。 MCNP介导的高温的诱导进一步增强了ATAP的功效。总之,MCNP介导的ATAP传递和随后的体温过高相结合对线粒体功能障碍的作用增强,从而导致癌细胞凋亡增加。

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