College of Pharmacy, Dongguk University-Seoul , Goyang, Gyeonggi 10326, Republic of Korea.
College of Pharmacy, Seoul National University , Seoul 08826, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Sep 20;9(37):31543-31556. doi: 10.1021/acsami.7b09624. Epub 2017 Sep 11.
Nanodiamonds have been discovered as a new exogenous material source in biomedical applications. As a new potent form of nanodiamond (ND), polyamidoamine-decorated nanodiamonds (PAMAM-NDs) were prepared for E7 or E6 oncoprotein-suppressing siRNA gene delivery for high risk human papillomavirus-induced cervical cancer, such as types 16 and 18. It is critical to understand the physicochemical properties of siRNA complexes immobilized on cationic solid ND surfaces in the aspect of biomolecular structural and conformational changes, as the new inert carbon material can be extended into the application of a gene delivery vector. A spectral study of siRNA/PAMAM-ND complexes using differential scanning calorimetry and circular dichroism spectroscopy proved that the hydrogen bonding and electrostatic interactions between siRNA and PAMAM-NDs decreased endothermic heat capacity. Moreover, siRNA/PAMAM-ND complexes showed low cell cytotoxicity and significant suppressing effects for forward target E6 and E7 oncogenic genes, proving functional and therapeutic efficacy. The cellular uptake of siRNA/PAMAM-ND complexes at 8 h was visualized by macropinocytes and direct endosomal escape of the siRNA/PAMAM-ND complexes. It is presumed that PAMAM-NDs provided a buffering cushion to adjust the pH and hard mechanical stress to escape endosomes. siRNA/PAMAM-ND complexes provide a potential organic/inorganic hybrid material source for gene delivery carriers.
纳米金刚石已被发现是生物医学应用中的一种新的外源性材料来源。作为一种新型的纳米金刚石(ND),聚酰胺-胺修饰的纳米金刚石(PAMAM-ND)被用于递送 E7 或 E6 癌蛋白抑制 siRNA 基因,用于治疗高危型人乳头瘤病毒(HPV)引起的宫颈癌,如 HPV16 和 HPV18 型。了解固定在阳离子固体 ND 表面上的 siRNA 复合物的物理化学性质对于生物分子结构和构象变化至关重要,因为这种新型惰性碳材料可以扩展到基因传递载体的应用中。使用差示扫描量热法和圆二色性光谱对 siRNA/PAMAM-ND 复合物进行的光谱研究证明,siRNA 与 PAMAM-ND 之间的氢键和静电相互作用降低了吸热热容。此外,siRNA/PAMAM-ND 复合物显示出低细胞毒性和对前向靶标 E6 和 E7 致癌基因的显著抑制作用,证明了其功能和治疗功效。在 8 小时时通过巨吞饮作用可视化了 siRNA/PAMAM-ND 复合物的细胞摄取,并且 siRNA/PAMAM-ND 复合物直接从内涵体中逃逸。可以推测,PAMAM-ND 提供了缓冲垫以调节 pH 值和硬机械应力,从而逃逸内涵体。siRNA/PAMAM-ND 复合物为基因传递载体提供了一种潜在的有机/无机杂化材料来源。