Suppr超能文献

研究 DNA 光谱构象变化与聚合物缓冲能力与 DNA/聚合物复合物转染效率的关系。

Investigation of DNA spectral conformational changes and polymer buffering capacity in relation to transfection efficiency of DNA/polymer complexes.

机构信息

Department of Chemistry and Biochemistry, National Chung Cheng University, 168, University Rd. Chia-Yi 621, Taiwan, ROC.

出版信息

J Pharm Pharm Sci. 2009;12(3):346-56. doi: 10.18433/j3859k.

Abstract

PURPOSE

The relation between transfection efficiency of DNA/polymer complexes and DNA conformational alterations is investigated. The buffering capacity of several synthetic polymers is also studied to relate their performance in transfection efficiency.

METHODS

The cationic polymer/DNA interaction was evaluated by measuring the alteration of DNA secondary structures in solution before and after the addition of polymer with ATR-FTIR technique. The degree of protonation in aqueous cationic polymers is varied upon pH and different structures. A polymer capable of protonation acts like a proton sponge to react with H+ in titration with HCl. This characteristic was evaluated in relation to transfection efficiency because the capacity would help the release of endocytotic DNA from endosome/lysosome on its way to expression.

RESULTS

IR results show that the antisymmetric PO2- vibration of DNA (at 1224 cm-1) shifts toward lower frequencies in complexation with PEI or PLLys (these polymers are able to transfect DNA). By contrast, the antisymmetric PO2- vibration of DNA in presence of PDAMA or dextran (these polymers are poor in DNA transfection) shows a shifting to higher frequencies or no alteration was observed. Interestingly, the polymers with best performance in transfection efficiency are in this order: PEI>PDMAEMA>PLLys>PDAMA>dextran which is in the same order as their polymer buffering capacity. These facts indicate polymers possessing better buffering capacity could result in higher transfection efficiency. Also, we have demonstrated in this paper that the alteration in the antisymmetric PO(2)(-) stretching vibration in the IR spectra is sensitive to the binding of cationic polymers with DNA and the transfection efficiency of the formed complexes. These findings are useful for the developing polymer-based gene delivery systems with better in vitro and in vivo performance. NOVELTY OF THE WORK: this work establishes a rational relation between transfection efficiency of DNA/polymer complexes and DNA conformational alterations. Also, the buffering capacity of polymers is found to be closely related to their performance in transfection efficiency.

摘要

目的

研究 DNA/聚合物复合物的转染效率与 DNA 构象变化之间的关系。还研究了几种合成聚合物的缓冲能力,以将它们在转染效率方面的性能联系起来。

方法

通过 ATR-FTIR 技术测量聚合物加入前后 DNA 二级结构在溶液中的变化,评估阳离子聚合物/DNA 的相互作用。在不同的 pH 值和结构下,阳离子聚合物中的质子化程度会发生变化。能够质子化的聚合物充当质子海绵,与 HCl 滴定中的 H+反应。这一特性与转染效率有关,因为这种能力有助于从内体/溶酶体中释放出内吞的 DNA,使其在表达过程中前进。

结果

IR 结果表明,与 PEI 或 PLLys(这些聚合物能够转染 DNA)络合时,DNA 的反对称 PO2-振动(在 1224cm-1 处)向较低频率移动。相比之下,在 PDAMA 或葡聚糖(这些聚合物在 DNA 转染方面效果不佳)存在下,DNA 的反对称 PO2-振动显示出向更高频率的移动或没有观察到变化。有趣的是,在转染效率方面表现最好的聚合物依次为:PEI>PDMAEMA>PLLys>PDAMA>葡聚糖,这与它们的聚合物缓冲能力顺序相同。这些事实表明,具有更好缓冲能力的聚合物可以导致更高的转染效率。此外,我们在本文中证明,IR 光谱中不对称 PO(2)(-)伸缩振动的变化对阳离子聚合物与 DNA 的结合以及形成复合物的转染效率敏感。这些发现对于开发具有更好的体外和体内性能的基于聚合物的基因传递系统非常有用。

工作的新颖性

这项工作建立了 DNA/聚合物复合物的转染效率与 DNA 构象变化之间的合理关系。此外,还发现聚合物的缓冲能力与它们在转染效率方面的性能密切相关。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验