Department of Materials Science and Engineering, College of Engineering, North Carolina State University, Raleigh, NC, 27695, USA.
Department of Biomedical Engineering, College of Engineering, North Carolina State University, Raleigh, NC, 27695, USA.
Adv Mater. 2019 May;31(21):e1808262. doi: 10.1002/adma.201808262. Epub 2019 Apr 10.
Nucleic acid aptamers selected for thrombin binding have been previously shown to possess anticoagulant activity; however, problems with rapid renal clearance and short circulation half-life have prevented translation to clinical usefulness. Here, a family of self-folding, functional RNA origami molecules bearing multiple thrombin-binding RNA aptamers and showing significantly improved anticoagulant activity is described. These constructs may overcome earlier problems preventing clinical use of nucleic acid anticoagulants. RNA origami structures are designed in silico and produced by in vitro transcription from DNA templates. Incorporation of 2'-fluoro-modified C- and U-nucleotides is shown to increase nuclease resistance and stability during long-term storage. Specific binding to human thrombin as well as high stability in the presence of RNase A and in human plasma, comparatively more stable than DNA is demonstrated. The RNA origami constructs show anticoagulant activity sevenfold greater than free aptamer and higher than previous DNA weave tiles decorated with DNA aptamers. Anticoagulation activity is maintained after at least 3 months of storage in buffer at 4 °C. Additionally, inhibition of thrombin is shown to be reversed by addition of single-stranded DNA antidotes. This project paves the way for development of RNA origami for potential therapeutic applications especially as a safer surgical anticoagulant.
先前已有研究表明,针对凝血酶结合而筛选出的核酸适体具有抗凝血活性;然而,由于快速肾脏清除和短循环半衰期等问题,其无法转化为临床应用。在此,我们描述了一类具有多个凝血酶结合 RNA 适体的自折叠功能性 RNA 折纸分子,其具有显著提高的抗凝血活性。这些结构可能克服了先前阻止核酸类抗凝剂临床应用的问题。RNA 折纸结构通过计算机设计,并通过体外转录从 DNA 模板生成。研究表明,在 2'-氟修饰的 C 和 U 核苷酸的掺入可增加核酸在长期储存过程中的耐核酸酶性和稳定性。研究证明,这些结构能够特异性结合人凝血酶,并且在存在 RNase A 和人血浆中具有高度稳定性,与 DNA 相比稳定性更高。与游离适体相比,RNA 折纸结构的抗凝活性提高了 7 倍,高于先前用 DNA 适体修饰的 DNA 编织瓦片。在 4°C 的缓冲液中储存至少 3 个月后,抗凝活性仍能保持。此外,研究还表明,加入单链 DNA 解毒剂可逆转凝血酶的抑制作用。该项目为 RNA 折纸技术的开发铺平了道路,特别是作为一种更安全的手术抗凝剂,其具有潜在的治疗应用前景。