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用于特定隔室降解和核酸释放的组织蛋白酶 B 敏感聚合物。

Cathepsin B-sensitive polymers for compartment-specific degradation and nucleic acid release.

机构信息

Department of Bioengineering, University of Washington, Seattle, WA 98195, United States.

出版信息

J Control Release. 2012 Feb 10;157(3):445-54. doi: 10.1016/j.jconrel.2011.10.016. Epub 2011 Oct 20.

Abstract

Degradable cationic polymers are desirable for in vivo nucleic acid delivery because they offer significantly decreased toxicity over non-degradable counterparts. Peptide linkers provide chemical stability and high specificity for particular endopeptidases but have not been extensively studied for nucleic acid delivery applications. In this work, enzymatically degradable peptide-HPMA copolymers were synthesized by RAFT polymerization of HPMA with methacrylamido-terminated peptide macromonomers, resulting in polymers with low polydispersity and near quantitative incorporation of peptides. Three peptide-HPMA copolymers were evaluated: (i) pHCathK(10), containing peptides composed of the linker phe-lys-phe-leu (FKFL), a substrate of the endosomal/lysosomal endopeptidase cathepsin B, connected to oligo-(L)-lysine for nucleic acid binding, (ii) pHCath(D)K(10), containing the FKFL linker with oligo-(D)-lysine, and (iii) pH(D)Cath(D)K(10), containing all (D) amino acids. Cathepsin B degraded copolymers pHCathK(10) and pHCath(D)K(10) within 1 h while no degradation of pH(D)Cath(D)K(10) was observed. Polyplexes formed with pHCathK(10) copolymers show DNA release by 4 h of treatment with cathepsin B; comparatively, polyplexes formed with pHCath(D)K(10) and pH(D)Cath(D)K(10) show no DNA release within 8 h. Transfection efficiency in HeLa and NIH/3T3 cells were comparable between the copolymers but pHCathK(10) was less toxic. This work demonstrates the successful application of peptide linkers for degradable cationic polymers and DNA release.

摘要

可降解阳离子聚合物在体内核酸递送中很有应用前景,因为与不可降解的同类物相比,它们的毒性显著降低。肽接头为特定内肽酶提供了化学稳定性和高度特异性,但尚未广泛应用于核酸递送应用。在这项工作中,通过 HPMA 与末端为丙烯酰胺基的肽大分子单体的 RAFT 聚合,合成了酶可降解的肽-HPMA 共聚物,得到的聚合物具有低多分散性和接近定量的肽掺入。评估了三种肽-HPMA 共聚物:(i) pHCathK(10),含有由接头 phe-lys-phe-leu (FKFL)组成的肽,FKFL 是内体/溶酶体内肽酶组织蛋白酶 B 的底物,连接到寡-(L)-赖氨酸以结合核酸,(ii) pHCath(D)K(10),含有 FKFL 接头和寡-(D)-赖氨酸,以及 (iii) pH(D)Cath(D)K(10),含有所有 (D) 氨基酸。组织蛋白酶 B 在 1 小时内降解共聚物 pHCathK(10)和 pHCath(D)K(10),而 pH(D)Cath(D)K(10)则没有降解。用组织蛋白酶 B 处理 4 小时后,与 pHCathK(10)共聚物形成的聚集体显示 DNA 释放;相比之下,与 pHCath(D)K(10)和 pH(D)Cath(D)K(10)形成的聚集体在 8 小时内没有 DNA 释放。HeLa 和 NIH/3T3 细胞中的转染效率在共聚物之间相当,但 pHCathK(10)的毒性较低。这项工作证明了肽接头在可降解阳离子聚合物和 DNA 释放方面的成功应用。

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2
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J Control Release. 2011 Oct 30;155(2):303-11. doi: 10.1016/j.jconrel.2011.07.009. Epub 2011 Jul 14.
3
Tailoring charge density and hydrogen bonding of imidazolium copolymers for efficient gene delivery.
Biomacromolecules. 2011 Jun 13;12(6):2243-50. doi: 10.1021/bm2003303. Epub 2011 May 10.
4
Biodegradable star HPMA polymer conjugates of doxorubicin for passive tumor targeting.
Eur J Pharm Sci. 2011 Apr 18;42(5):527-39. doi: 10.1016/j.ejps.2011.03.001. Epub 2011 Mar 8.
5
Cathepsins: fundamental effectors of endolysosomal proteolysis.
Indian J Biochem Biophys. 2008 Apr;45(2):75-90.
6
Synthesis of statistical copolymers containing multiple functional peptides for nucleic Acid delivery.
Biomacromolecules. 2010 Nov 8;11(11):3007-13. doi: 10.1021/bm100806h. Epub 2010 Oct 5.
7
Reducible DNA nanoparticles enhance in vitro gene transfer via an extracellular mechanism.
J Control Release. 2010 Aug 17;146(1):118-27. doi: 10.1016/j.jconrel.2010.04.031. Epub 2010 May 12.
8
Cationic carriers of genetic material and cell death: a mitochondrial tale.
Biochim Biophys Acta. 2010 Jun-Jul;1797(6-7):1203-9. doi: 10.1016/j.bbabio.2010.03.026. Epub 2010 Apr 8.

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