Wave Life Sciences USA, Inc., Lexington, Massachusetts, USA.
Nucleic Acid Ther. 2022 Aug;32(4):350-359. doi: 10.1089/nat.2021.0100. Epub 2022 Apr 11.
As oligonucleotides (ONs) and similar nucleic acid therapeutic modalities enter development pipelines, there is continual need to develop bioanalytical methodologies addressing unique challenges they pose. Novel ONs back bone chemistries, especially those enabling stereochemical control, and base modifications are being exploited to improve pharmacological properties, potency, and increase half-lives. These changes have strained established methods, oftentimes precluding development of assays sensitive and specific enough to meet the needs of preclinical programs. For stereopure ONs representing a single molecular species, nontrivial presence of chain-shortened metabolites in biological samples necessitate assays with high specificity. To meet these needs, this report presents a toolbox of novel techniques, easy to implement for existing hybridization-ligation enzyme-linked immunosorbent assay formats, which address this challenge and yield significant sensitivity and specificity enhancements. Ligation efficiency was improved up to 61-fold through addition of polyethylene glycol, betaine, or dimethylsulfoxide, mitigating major differences among sequence-matched ONs of varying stereopurity, enabling sensitivities below 0.100 ng/mL for quantitation. These improvements enabled further refinement of capture probe designs engendering sufficient specificity to discriminate N-1 chain-shortened metabolites at both the 5' and 3' end of the ONs. These generalizable methods advance the performance of mainstay bioanalytical assays, facilitating research and development of innovative ONs therapeutics.
随着寡核苷酸 (ONs) 和类似的核酸治疗模式进入开发管道,不断需要开发生物分析方法来解决它们带来的独特挑战。新型的 ONs 骨架化学,特别是那些能够实现立体化学控制和碱基修饰的化学,正在被开发用于改善药理学性质、效力和增加半衰期。这些变化给现有的方法带来了压力,往往使开发出足够敏感和特异的检测方法无法满足临床前计划的需求。对于代表单一分子种类的立体纯 ONs,生物样本中大量存在链缩短的代谢物,需要具有高特异性的检测方法。为了满足这些需求,本报告提出了一套新的工具,这些工具易于实施现有的杂交-连接酶联免疫吸附测定格式,解决了这一挑战,并显著提高了灵敏度和特异性。通过添加聚乙二醇、甜菜碱或二甲基亚砜,将连接效率提高了 61 倍,减轻了不同立体纯度的序列匹配 ONs 之间的主要差异,使定量检测的灵敏度低于 0.100ng/mL。这些改进进一步优化了捕获探针的设计,使其具有足够的特异性,能够区分 ONs 的 5' 和 3' 端的 N-1 链缩短的代谢物。这些可推广的方法提高了主流生物分析检测的性能,为创新的 ONs 治疗药物的研究和开发提供了便利。