Institute of Molecular Medicine (IMM), Department of Nuclear Medicine, Institute of Clinical Nuclear Medicine, State Key Laboratory of Oncogenes and Related Genes, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200127, China.
Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, College of Biology, and Aptamer Engineering Center of Hunan Province, Hunan University, Changsha, Hunan 410082, China.
Nucleic Acids Res. 2022 Apr 8;50(6):3083-3095. doi: 10.1093/nar/gkac156.
Oligonucleotide (ON) therapeutics are emerging as a new generation of medicine with tremendous potential, but their clinical translation is hampered by inferior stability and short circulation time in the human body. Here, we report a general approach to manipulating the interaction between ONs and albumin by modulating hydrophobicity. A series of DNA aptamer derivatives were designed and prepared by programmable synthesis as an ON library with a gradient of hydrophobic base 'F'. In vitro experiments revealed that the introduction of two F bases at both ends of ONs enhanced the biostability without sacrificing biological activities, while the binding affinity toward albumin was dramatically increased with Kd in the range of 100 nM to 1 μM. In vivo imaging confirmed the immediate formation of the aptamer-albumin complex after the injection, and the circulation time of the aptamer was dramatically elongated owing to the enhanced biostability and retarded renal excretion. The programmable incorporation of the F base provides a general approach to regulating albumin-binding affinity and enhancing the stability of aptamers in vivo, conferring aptamer therapeutics prolonged circulation time to meet clinical requirements.
寡核苷酸 (ON) 治疗药物作为新一代药物具有巨大的潜力,但由于其在人体中的稳定性差和循环时间短,其临床转化受到阻碍。在这里,我们报告了一种通过调节疏水性来操纵 ON 与白蛋白相互作用的通用方法。通过可编程合成设计并制备了一系列 DNA 适体衍生物,作为具有梯度疏水性碱基 'F' 的 ON 文库。体外实验表明,在 ON 的两端引入两个 F 碱基可以在不牺牲生物活性的情况下增强生物稳定性,而与白蛋白的结合亲和力则显著增加,Kd 值在 100 nM 至 1 μM 范围内。体内成像证实了注射后立即形成适体-白蛋白复合物,并且由于生物稳定性增强和肾脏排泄减缓,适体的循环时间大大延长。可编程地掺入 F 碱基为调节白蛋白结合亲和力和增强适体体内稳定性提供了一种通用方法,使适体治疗药物的循环时间延长,以满足临床需求。