Department of Chemistry, Texas A&M University, P.O. Box 30012, 3255 TAMU, College Station, TX 77842-3012, United States.
Biomaterials. 2012 Nov;33(33):8557-68. doi: 10.1016/j.biomaterials.2012.07.054. Epub 2012 Aug 16.
Cationic shell crosslinked knedel-like nanoparticles (cSCKs) have emerged as a highly efficient transfection agent for nucleic acids delivery. In this study, a new class of cSCKs with tunable buffering capacities has been developed by altering the amounts of histamines and primary amines incorporated into their crosslinked shell regions. The effect of histamine content of these nanoparticles with a hydrodynamic diameter of ca. 20 nm, on the siRNA-binding affinity, cytotoxicity, immunogenicity, and transfection efficiency was investigated. The modification of cSCKs with histamine was found to reduce the siRNA-binding affinity and cellular binding. On the other hand, it significantly reduced the toxicity and immunogenicity of the nanoparticles with subsequent increase in the transfection efficiency. In addition, escape from endosomes was facilitated by having two species of low and high pK(a)s (i.e. histamine and primary amine groups, respectively), as demonstrated by the potentiometric titration experiments and the effect of bafilomycin A1, an inhibitor of the endosomal acidification, on the transfection efficiency of cSCKs. Histamine modification of 15 mol% was a threshold, above which cSCKs with higher histamine content completely lost the ability to bind siRNA and to transfect cells. This study highlights the potential of histamine incorporation to augment the gene silencing activity of cationic nanoparticles, reduce their toxicity, and increase their biocompatibility, which is of particular importance in the design of nucleic acids delivery vectors.
阳离子壳交联 knedel 样纳米颗粒 (cSCKs) 已成为一种高效的核酸转染试剂。在这项研究中,通过改变其交联壳区域中组氨酸和伯胺的含量,开发了一类具有可调节缓冲能力的新型 cSCKs。研究了这些纳米颗粒的组氨酸含量对其约 20nm 水动力直径的 siRNA 结合亲和力、细胞毒性、免疫原性和转染效率的影响。组氨酸修饰 cSCKs 被发现降低了 siRNA 的结合亲和力和细胞结合。另一方面,它显著降低了纳米颗粒的毒性和免疫原性,随后转染效率增加。此外,通过具有两种低和高 pK(a)(即组氨酸和伯胺基团)的物种,促进了从内涵体中的逃逸,这通过等电位滴定实验和内涵体酸化抑制剂巴弗洛霉素 A1 对 cSCKs 转染效率的影响证明了这一点。组氨酸修饰 15mol%是一个阈值,高于该阈值的 cSCKs 具有更高的组氨酸含量,完全丧失了结合 siRNA 和转染细胞的能力。这项研究强调了组氨酸掺入可以增强阳离子纳米颗粒的基因沉默活性、降低其毒性和提高其生物相容性的潜力,这在设计核酸递送载体时尤为重要。