Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.
Bioconjug Chem. 2024 Nov 20;35(11):1762-1778. doi: 10.1021/acs.bioconjchem.4c00326. Epub 2024 Oct 28.
Quinine is a promising building block for creating polymer carriers for intracellular nucleic acid delivery. This is due to its ability to bind to genetic material through intercalation and electrostatic interactions and the balance of hydrophobicity and hydrophilicity dependent on the pH/charge state. Yet, studies utilizing cinchona alkaloid natural products in gene delivery are limited. Herein, we present the incorporation of a quinine functionalized monomer (Q) into block polymer architectures to form self-assembled micelles for highly efficient gene delivery. Q was incorporated into the core and/or the shell of the micelles to introduce the unique advantages of quinine to the system. We found that incorporation of Q into the core of the micelle resulted in acid-induced disassembly of the micelle and a boost in transfection efficiency by promoting endosomal escape. This effect was especially evident in the cancerous cell line, A549, which has a more acidic intracellular environment. Incorporation of Q into the shell of the micelles resulted in intercalative binding to the genetic payload as well as larger micelle-DNA complexes (micelleplexes) from the hydrophobicity of Q in the shell. These factors enable the micelleplexes to be more resistant to serum and have more persistent protein expression post-transfection. Overall, this study is the first to demonstrate the benefits of including quinine functionalities into self-assembled micelles for highly efficient gene delivery and presents a platform for inclusion of other natural products with similar properties into micellar systems.
奎宁是一种很有前途的构建块,可以用来构建用于细胞内核酸递送的聚合物载体。这是因为它能够通过嵌入和静电相互作用与遗传物质结合,并且疏水性和亲水性的平衡取决于 pH/电荷状态。然而,利用金鸡纳生物碱天然产物进行基因传递的研究是有限的。在此,我们介绍了将奎宁功能化单体(Q)掺入嵌段聚合物结构中,以形成用于高效基因传递的自组装胶束。将 Q 掺入胶束的核心和/或壳中,以将奎宁的独特优势引入系统中。我们发现,将 Q 掺入胶束的核心会导致胶束在酸性条件下解体,并通过促进内涵体逃逸来提高转染效率。这种效应在具有更酸性细胞内环境的癌细胞系 A549 中尤为明显。将 Q 掺入胶束的壳中会导致与遗传有效载荷的插入结合,以及由于壳中 Q 的疏水性而导致更大的胶束-DNA 复合物(胶束复合物)。这些因素使胶束复合物更能抵抗血清,并在转染后具有更持久的蛋白质表达。总的来说,这项研究首次证明了将奎宁功能纳入自组装胶束以实现高效基因传递的好处,并为将具有类似性质的其他天然产物纳入胶束系统提供了一个平台。