Medical Microbiology and Bioprocess Laboratory, Department of Microbiology, Maharshi Dayanand University, Rohtak, India.
Department of Botany, Gargi College, University of Delhi, New Delhi, India.
J Pept Sci. 2020 Apr;26(4-5):e3246. doi: 10.1002/psc.3246. Epub 2020 Mar 5.
Cyclotides is a rapidly growing class of plant-derived cyclic peptides exhibiting several bioactivities with potential applications in the agricultural and pharmaceutical sectors. Both natural and grafted cyclotides have shown promise in cancer therapy. Approximately 70 natural cyclotides belonging to three plant families (Fabaceae, Rubiaceae, and Violaceae) have shown cytotoxicity against several cancer cell lines. Cyclotides exhibit considerable stability against thermal and enzymatic proteolysis, owing to their unique structure with knotted topology and head to tail cyclization. Further, their small size, high stability, oral bioavailability, and tolerance to amino acid substitution in structural loops make them an ideal platform for designing peptide-based drugs for cancer. Thus, cyclotides provide ideal scaffolds for bioactive epitope grafting and facilitating drug delivery in cancer treatment. Many anticancer linear peptides have been grafted in cysteine knotted cyclic framework of cyclotide for enhancing their cell permeability across cellular membranes, thereby improving their delivery and pharmacokinetics. The present review comprehensively discusses the distribution, toxicity, and anticancer bioactivity of natural cyclotides. Further, it systematically elaborates on the role and action of epitopes' into grafted cyclotides in targeting cancer. The review also encompasses related patents landscape study and future challenges in peptide-based cancer therapy.
环肽是一类快速发展的植物来源的环状肽,具有多种生物活性,在农业和制药领域具有潜在的应用前景。天然和嫁接的环肽在癌症治疗中都显示出了前景。大约 70 种属于三个植物科(豆科、茜草科和堇菜科)的天然环肽对几种癌细胞系表现出细胞毒性。环肽由于其独特的结构,具有打结的拓扑结构和头尾环化,对热和酶解具有相当大的稳定性。此外,它们的体积小、稳定性高、口服生物利用度高,以及对结构环中氨基酸取代的耐受性,使它们成为设计基于肽的抗癌药物的理想平台。因此,环肽为生物活性表位的嫁接和促进癌症治疗中的药物传递提供了理想的支架。许多抗癌线性肽已被嫁接在环肽的半胱氨酸打结环状框架中,以增强其跨细胞膜的细胞通透性,从而改善其递药和药代动力学。本综述全面讨论了天然环肽的分布、毒性和抗癌生物活性。此外,它还系统地阐述了表位在靶向癌症中的作用和作用。该综述还包括相关专利的景观研究和肽基癌症治疗的未来挑战。