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设计用于将靶向 siRNA 递送至肿瘤球体的抗肿瘤肽。

Designed Antitumor Peptide for Targeted siRNA Delivery into Cancer Spheroids.

机构信息

Department of Chemical and Biological Engineering, University of Sheffield, Sheffield S1 3JD, United Kingdom.

Department of Infection, Immunity & Cardiovascular Disease, University of Sheffield, Sheffield S10 2RX, United Kingdom.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 27;13(42):49713-49728. doi: 10.1021/acsami.1c14761. Epub 2021 Oct 17.

Abstract

Antimicrobial/anticancer peptides (AMPs/ACPs) have shown promising results as new therapeutic agents in cancer thearpy. Among them, the designed amphiphilic α-helical peptide G(IIKK)I-NH (G3) displayed great affinity and specificity in targeting cancer cells. Here, we report new insights on how G3 penetrates cancer cells. G3 showed high specificity to HCT-116 colon cancer cells compared to the HDFs (human neonatal primary dermal fibroblasts) control. With high concentrations of peptide, a clear cancer cell membrane disruption was observed through SEM. Gene knockdown of the endocytic pathways demonstrated that an energy-dependent endocytic pathway is required for the uptake of the peptide. In addition, G3 can protect and selectively deliver siRNAs into cancer cells and successfully modulated their gene expression. Gene delivery was also tested in 3D cancer spheroids and showed deep penetration delivery into the cancer spheroids. Finally, the in vivo toxicity of G3 was evaluated on zebrafish embryos, showing an increasing toxicity effect with concentration. However, the toxicity of the peptide was attenuated when complexed with siRNA. In addition, negligible toxicity was observed at the concentration range for efficient gene delivery. The current results demonstrate that G3 is promising as an excellent agent for cancer therapy.

摘要

抗菌/抗癌肽(AMPs/ACPs)作为癌症治疗的新治疗剂显示出了很有前景的结果。在它们之中,设计的两亲性 α-螺旋肽 G(IIKK)I-NH(G3)在靶向癌细胞方面表现出了很大的亲和力和特异性。在这里,我们报告了关于 G3 如何穿透癌细胞的新见解。与 HDFs(人新生儿原代真皮成纤维细胞)对照相比,G3 对 HCT-116 结肠癌细胞表现出了很高的特异性。在高浓度的肽存在下,通过 SEM 观察到明显的癌细胞膜破裂。内吞途径的基因敲低表明,内吞肽需要一个能量依赖的内吞途径。此外,G3 可以保护并选择性地将 siRNA 递送到癌细胞中,并成功地调节它们的基因表达。基因传递也在 3D 癌症球体中进行了测试,并显示出肽可以深入穿透到癌症球体中。最后,在斑马鱼胚胎上评估了 G3 的体内毒性,结果显示随着浓度的增加毒性作用增强。然而,当与 siRNA 复合时,肽的毒性会减弱。此外,在有效基因传递的浓度范围内,观察到可忽略不计的毒性。目前的结果表明,G3 有望成为癌症治疗的优秀药物。

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