Louzao Iria, García-Fandiño Rebeca, Montenegro Javier
Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CIQUS), Departamento de Química Orgánica, Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Spain.
J Mater Chem B. 2017 Jun 21;5(23):4426-4434. doi: 10.1039/c7tb00179g. Epub 2017 Mar 6.
Gene transfection continues to be a major challenge in chemistry, biology and materials sciences. New methodologies and recent breakthroughs have renewed the interest in the discovery and development of new tools for efficient gene transfection. Hydrazone formation between a cationic head and hydrophobic tails has emerged as one of the most promising techniques for nucleotide delivery. In this contribution, we have exploited hydrazone formation to modulate the transfection activity of a parent linear peptide in combination with a plasmid DNA cargo. This strategy allowed the straightforward preparation, under physiologically compatible conditions, of a discrete library of amphiphilic modulated penetrating peptides. Without the requirement of any isolation or purification steps, these modulated amphiphilic peptides were combined with a plasmid DNA and screened in transfection experiments of human HeLa cells. Three of these hydrazone-conjugated peptides were identified as excellent vectors for plasmid delivery with comparable, or even higher, efficiencies and lower toxicity than the commercial reagents employed in routine transfection assays.
基因转染在化学、生物学和材料科学领域仍然是一项重大挑战。新的方法和近期的突破重新激发了人们对发现和开发高效基因转染新工具的兴趣。阳离子头部与疏水尾部之间形成腙已成为最具前景的核苷酸递送技术之一。在本论文中,我们利用腙的形成来调节亲本线性肽与质粒DNA货物结合后的转染活性。该策略能够在生理兼容条件下直接制备离散的两亲性调节穿透肽文库。无需任何分离或纯化步骤,这些调节后的两亲性肽与质粒DNA结合,并在人HeLa细胞的转染实验中进行筛选。其中三种腙共轭肽被鉴定为质粒递送的优秀载体,其效率与常规转染实验中使用的商业试剂相当,甚至更高,且毒性更低。