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树突状功能化超支化双(甲基丙烯酰氧乙基)酯作为高效非病毒基因治疗载体在不同细胞系中的应用。

Dendron-functionalised hyperbranched bis-MPA polyesters as efficient non-viral vectors for gene therapy in different cell lines.

机构信息

Instituto de Nanociencia y Materiales de Aragón (INMA), CSIC-Universidad de Zaragoza, Zaragoza, Spain.

ARAID Foundation, Government of Aragón, Zaragoza, Spain.

出版信息

Biomater Sci. 2022 May 17;10(10):2706-2719. doi: 10.1039/d2bm00365a.

Abstract

Gene therapy has become a relevant tool in the biomedical field to treat or even prevent some diseases. The effective delivery of genetic material into the cell remains a crucial step to succeed in this purpose. In the search for efficient non-viral vectors, a series of amino-terminated dendronized hyperbranched polymers (DHPs) of different generations based either on bis-MPA or bis-GMPA have been designed. All of them have demonstrated an accurate ability to complex two types of genetic materials, a plasmid DNA and a siGFP, yielding dendriplexes. Moreover, some of them have proved to be able to deliver the genetic material inside the cells, resulting in the effective accomplishment of the desired genetic modification and improving the activity of some commercial transfection reagents. Different cell lines, including cancer and mesenchymal stem cells, have been studied here to evaluate the ability of DHPs as vectors for transfection. Treatments based on mesenchymal stem cells are gaining importance due to their pluripotency. Thus, it is of special relevance to introduce a genetic modification into a mesenchymal cell line as it allows it to act over a wide spectrum of tissues after inducing cellular differentiation.

摘要

基因治疗已成为生物医学领域中一种重要的工具,可用于治疗甚至预防某些疾病。将遗传物质有效地递送到细胞内仍然是实现这一目标的关键步骤。在寻找有效的非病毒载体时,设计了一系列基于双 MMA 或双 GMPA 的不同代数的氨基端树状化超支化聚合物 (DHPs)。所有这些都表现出了准确地结合两种类型的遗传物质,即质粒 DNA 和 siGFP,从而产生树状聚合物的能力。此外,其中一些已被证明能够将遗传物质递送到细胞内,从而有效地完成所需的基因修饰,并提高一些商业转染试剂的活性。研究了不同的细胞系,包括癌细胞和间充质干细胞,以评估 DHPs 作为转染载体的能力。基于间充质干细胞的治疗方法因其多能性而变得越来越重要。因此,将遗传修饰引入间充质细胞系中特别重要,因为它可以在诱导细胞分化后在广泛的组织中发挥作用。

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