Department of Life Sciences and Biotechnology, Section of Biochemistry and Molecular Biology, University of Ferrara, Ferrara, Italy.
Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parma, Italy.
Sci Rep. 2019 Feb 28;9(1):3036. doi: 10.1038/s41598-019-39211-4.
The application of Peptide Nucleic Acids (PNAs), mimics of DNA lacking the sugar-phosphate backbone, for antisense/anti-gene therapy and gene editing is limited by their low uptake by cells. Currently, no simple and efficient delivery systems and methods are available to solve this open issue. One of the most promising approach is the modification of the PNA structure through the covalent linkage of poliarginine tails, but this means that every PNA intended to be internalized must be modified. Herein we report the results relative to the delivery ability of a macrocyclic multivalent tetraargininocalix[4]arene (1) used as non-covalent vector for anti-miR-221-3p PNAs. High delivery efficiency, low cytotoxicity, maintenance of the PNA biological activity and ease preparation of the transfection formulation, simply attained by mixing PNA and calixarene, candidate this vector as universal delivery system for this class of nucleic acid analogues.
肽核酸(PNA)是 DNA 的模拟物,缺乏糖-磷酸骨架,可用于反义/抗基因治疗和基因编辑,但由于细胞摄取率低,其应用受到限制。目前,尚无简单有效的递送系统和方法来解决这一未解决的问题。最有前途的方法之一是通过聚精氨酸尾巴的共价连接修饰 PNA 结构,但这意味着每个要内化的 PNA 都必须进行修饰。本文报道了大环多价四精氨酸杯[4]芳烃(1)作为非共价载体用于抗 miR-221-3p PNA 的递送能力的结果。高转染效率、低细胞毒性、保持 PNA 的生物学活性以及易于制备转染制剂,只需将 PNA 和杯芳烃混合即可实现,这使得该载体成为此类核酸类似物的通用递送系统。