Holm Tina, Räägel Helin, Andaloussi Samir E L, Hein Margot, Mäe Maarja, Pooga Margus, Langel Ülo
Department of Neurochemistry, Stockholm University, SE-106 91 Stockholm, Sweden.
Biochim Biophys Acta. 2011 Jun;1808(6):1544-51. doi: 10.1016/j.bbamem.2010.10.019. Epub 2010 Nov 9.
Cell-penetrating peptides (CPPs) are a promising group of delivery vectors for various therapeutic agents but their application is often hampered by poor stability in the presence of serum. Different strategies to improve peptide stability have been exploited, one of them being "retro-inversion" (RI) of natural peptides. With this approach the stability of CPPs has been increased, thereby making them more efficient transporters. Several RI-CPPs were here assessed and compared to the corresponding parent peptides in different cell-lines. Surprisingly, treatment of cells with these peptides induced trypsin insensitivity and rapid severe toxicity in contrast to L-peptides. This was measured as reduced metabolic activity and condensed cell nuclei, in parity with the apoptosis inducing agent staurosporine. Furthermore, effects on mitochondrial network, focal adhesions, actin cytoskeleton and caspase-3 activation were analyzed and adverse effects were evident at 20 μM peptide concentration within 4 h while parent L-peptides had negligible effects. To our knowledge this is the first time RI peptides are reported to cause cellular toxicity, displayed by decreased metabolic activity, morphological changes and induction of apoptosis. Considering the wide range of research areas that involves the use of RI-peptides, this finding is of major importance and needs to be taken under consideration in applications of RI-peptides.
细胞穿透肽(CPPs)是一类很有前景的用于递送各种治疗剂的载体,但它们在血清存在下的稳定性较差,这常常阻碍其应用。人们已经探索了多种提高肽稳定性的策略,其中之一是天然肽的“反向翻转”(RI)。通过这种方法,CPPs的稳定性得到了提高,从而使其成为更有效的转运体。本文评估了几种RI-CPPs,并在不同细胞系中将它们与相应的亲本肽进行了比较。令人惊讶的是,与L-肽相比,用这些肽处理细胞会诱导细胞对胰蛋白酶不敏感并迅速产生严重毒性。这表现为代谢活性降低和细胞核浓缩,与凋亡诱导剂星形孢菌素的作用相当。此外,还分析了对线粒体网络、粘着斑、肌动蛋白细胞骨架和半胱天冬酶-3激活的影响,在肽浓度为20μM时,4小时内就出现了明显的不良反应,而亲本L-肽的影响可忽略不计。据我们所知,这是首次报道RI肽会导致细胞毒性,表现为代谢活性降低、形态变化和凋亡诱导。考虑到涉及RI-肽使用的研究领域广泛,这一发现非常重要,在RI-肽的应用中需要加以考虑。