肽功能化纳米粒子向表达MMP-14的癌症细胞靶向递送细胞毒素

J. Cathcart, Giulia Suarato, Weiyi Li, Jian Cao, Y. Meng
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引用次数: 0

摘要

由于90%的癌症患者死亡是由转移引起的,迫切需要选择性靶向并杀死转移细胞的新疗法。基质金属蛋白酶-14(MMP-14)在消化基底膜和诱导癌症细胞迁移中起着关键作用,已被发现在各种人类癌症的循环和转移肿瘤细胞的细胞表面表达。我们最近已经表明,IVS4肽,其模拟MMP-14的血红素样(PEX)结构域的最小结合基序,阻断MMP-14二聚化并减少MMP-14介导的细胞侵袭。在这项研究中,通过将IVS4连接到基于多糖的纳米颗粒(NP)上,然后封装药物来组装通癌纳米载体。IVS4-NP以MMP-14依赖的方式有效地阻止了MMP-14介导的细胞迁移,并且与对照肽相比具有摄取优势。虽然单独的IVS4-NPs没有细胞毒性,但药物包膜的NP显示有效靶向表达MMP-14的癌症细胞。这种新型纳米治疗剂能够抑制MMP-14介导的功能并有效杀死表达MMP-14的癌症细胞,而不会影响非癌细胞的生存能力。
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Peptide-Functionalized Nanoparticles for the Targeted Delivery of Cytotoxins to MMP-14-Expressing Cancer Cells
As 90% of cancer-patient deaths are due to metastasis, novel therapeutics that selectively target and kill metastatic cells are desperately needed. Matrix metalloproteinase-14 (MMP-14), which plays a critical role in digesting the basement membrane and in inducing cancer cell migration, has been found to be expressed at the cell surface of circulating and metastasized tumor cells in various human cancers. We have recently shown that the IVS4 peptide, which mimics the minimal binding motif of the hemopexin-like (PEX) domain of MMP-14, interrupts MMP-14 dimerization and decreases MMP-14-mediated cell invasion. In this study, cancer-homing nanocarriers were assembled by linking IVS4 to polysaccharide-based nanoparticles (NPs), followed by the encapsulation of a pharmaceutical agent. IVS4-NPs efficiently prevented MMP-14-mediated cell migration and conferred an uptake advantage compared to the control peptide in an MMP-14-dependent manner. While the IVS4-NPs alone were not cytotoxic, drug-encapsulated NPs were shown to effectively target MMP-14-expressing cancer cells. This novel nanotherapeutic is capable of inhibiting MMP-14-mediated functions and efficiently killing MMP-14-expressing cancer cells, without affecting the viability of non-cancer cells.
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