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Erratum: Noncovalently associated cell-penetrating peptides for gene delivery applications (Therapeutic Delivery (2013) 4:6 (741-757))

机译:勘误:基因传递应用中非共价结合的细胞穿透肽(Therapeutic Delivery(2013)4:6(741-757))

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Following the publication of the Review article by Nabil A Alhakamy, Adane S Nigatu, Cory J Berkland & Joshua D Ramsey 'Noncovalently associated cell-penetrating peptides for gene delivery applications' in the June 2013 issue of Therapeutic Delivery (Ther. Deliv. 4[6], 741-757 [2013]), it has been brought to our attention that:References 61-71 were mistakenly omitted from the reference section. These references are included below, and the updated article is avaiable on the journal website at: www.future-science.com/doi/full/io.4I55/tde.I3.44, Baourr AA, Berkland C. Calcium condensation of DNA complexed with cellpenetrating peptides offers efficient, noncytotoxic gene delivery. /. Pharm. Sci. 100(5), 1637-1642 (2011).Ignatovich IA, Dizhe EB, Pavlotskaya AV et al. Complexes of plasmid DNA with basic domain 47—57 of the HIV-1 Tat protein are transferred to mammalian cells by endocytosis-mediated pathways./. Biol. Chem. 278(43), 42625-42636 (2003).Unnamalai N, Kang BG, Lee WS. Cationic oligopeptide-mediated delivery of dsRNA for post-transcriptional gene silencing in plant cells. FEBSLett. 566(1), 307-310 (2004).Simeoni F, Morris MC, Heitz F, Divita G. Insight into the mechanism of the peptidebased gene delivery system MPG: implications for delivery of siRNA into mammalian cells. Nucleic Acids Res. 31(11), 2717-2724 (2003).Juliano R, Alam MR, Dixit V, Kang H. Mechanisms and strategies for effective delivery of antisense and siRNA oligonucleotides. Nucleic Acids Res. 36(12), 4158-4171 (2008).Mann A, Thakur G, Shukla V et al. Differences in DNA condensation and release by lysine and arginine homopeptides govern their DNA delivery efficiencies. Mol. Pharm. 8(5), 1729-1741 (2011).Shows the importance of using cellpenetrating peptides arginine residues, compared to lysine residues, for DNA condensation because arginine has a unique mechanism of DNA assembly.Pichon C, Goncalves C, Midoux P. Histidinerich peptides and polymers for nucleic acids delivery. Adv. Drug Deliv. Rev. 53(1), 75-94 (2001).
机译:继Nabil A Alhakamy,Adane S Nigatu,Cory J Berkland和Joshua D Ramsey发表了“非共价结合的细胞穿透肽以用于基因递送应用”评论文章发表于2013年6月期《治疗性递送》(Ther。Deliv。4 [ 6],741-757 [2013]),已提请我们注意:参考章节中错误地省略了参考文献61-71。这些参考文献包括在下面,并且更新的文章可在期刊网站上找到:www.future-science.com/doi/full/io.4I55/tde.I3.44、Baourr AA,Berkland C. DNA的钙缩合与细胞穿透肽复合后,可以高效,无细胞毒性地传递基因。 /。药科学100(5),1637-1642(2011).Ignatovich IA,Dizhe EB,Pavlotskaya AV等。具有HIV-1 Tat蛋白基本结构域47-57的质粒DNA复合物通过内吞作用介导的途径转移至哺乳动物细胞。生物学化学278(43),42625-42636(2003).Unnamalai N,Kang BG,Lee WS。阳离子寡肽介导的dsRNA传递,用于植物细胞中的转录后基因沉默。 FEBSLett。 566(1),307-310(2004).Simeoni F,Morris MC,Heitz F,Divita G.深入了解基于肽的基因传递系统MPG的机制:将siRNA传递至哺乳动物细胞的意义。核酸研究。 31(11),2717-2724(2003).Juliano R,Alam MR,Dixit V,Kang H.有效传递反义和siRNA寡核苷酸的机制和策略。核酸研究。 36(12),4158-4171(2008).Mann A,Thakur G,Shukla V等。赖氨酸和精氨酸同源肽在DNA缩合和释放中的差异决定了它们的DNA传递效率。大声笑药8(5),1729-1741(2011)。显示了与赖氨酸残基相比,使用细胞穿透肽精氨酸残基进行DNA缩合的重要性,因为精氨酸具有独特的DNA组装机制。用于核酸递送的肽和聚合物。进阶药物运送Rev.53(1),75-94(2001)。

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