Lovelace Biomedical Research Institute, 2425 Ridgecrest Dr. SE, Albuquerque, NM 87108-5127, United States of America.
Lovelace Biomedical Research Institute, 2425 Ridgecrest Dr. SE, Albuquerque, NM 87108-5127, United States of America.
J Pharmacol Toxicol Methods. 2024 Sep-Oct;129:107549. doi: 10.1016/j.vascn.2024.107549. Epub 2024 Sep 3.
Ribonucleic acid (RNA) extraction and purification play pivotal roles in molecular biology and cell and gene therapy, where the quality and integrity of RNA are critical for downstream applications. Automated high-throughput systems have gained interest due to their potential for scalability and reduced labor requirements compared to manual methods. However, ensuring high-throughput capabilities, reproducibility, and reliability while maintaining RNA yield and purity remains challenging. This study evaluated and compared the performance of four commercially available high-throughput magnetic bead-based RNA extraction kits across six types of naïve non-human primate (NHP) tissue matrices: brain, heart, kidney, liver, lung, and spleen. The assessment focused on RNA purity, yield, and extraction efficiency (EE) using Xeno Internal Positive Control (IPC) spiking. Samples (∼50 mg) were homogenized via bead-beating and processed according to the manufacturer's protocol on the KingFisher Flex platform in eight replicates. RNA purity and yield were measured using a NanoDrop® spectrophotometer, while EE was evaluated via real-time reverse transcription-quantitative polymerase chain reaction (RT-qPCR). The findings indicate consistent high RNA purity across all tested extraction kits, yet substantial variation in RNA yield. Extraction efficiency exhibited variations across tissue types, with decreasing trends observed from brain to lung tissues. These results underscore the importance of careful kit selection and method optimization for achieving reliable downstream applications. The MagMAX™ mirVana™ Total RNA Isolation Kit stands out as the most accurate and reproducible, making it the preferred choice for applications requiring high RNA quality and consistency. Other kits, such as the Maxwell® HT simplyRNA Kit, offer a good balance between cost and performance, though with some trade-offs in precision. These findings highlight the importance of selecting the appropriate RNA isolation method based on the specific needs of the research, underscoring the critical role of accurate nucleic acid extraction in gene and cell therapy research. In conclusion, this study highlights the critical factors influencing RNA extraction performance, emphasizing the need for researchers and practitioners to consider both kit performance and tissue characteristics when designing experimental protocols. These insights contribute to the ongoing efforts to enhance the reproducibility and reliability of RNA extraction methods in molecular biology and cell/gene therapy applications.
核糖核酸(RNA)提取和纯化在分子生物学、细胞和基因治疗中起着关键作用,其中 RNA 的质量和完整性对于下游应用至关重要。与手动方法相比,自动化高通量系统因其具有可扩展性和降低劳动力需求的潜力而受到关注。然而,在保持 RNA 产量和纯度的同时,确保高通量能力、重现性和可靠性仍然具有挑战性。本研究评估并比较了四种市售的基于磁珠的高通量 RNA 提取试剂盒在六种原始非人类灵长类动物(NHP)组织基质中的性能:脑、心、肾、肝、肺和脾。评估重点是使用 Xeno Internal Positive Control(IPC)加标进行 RNA 纯度、产量和提取效率(EE)。通过珠磨将样品(约 50mg)匀浆,并根据制造商的方案在 KingFisher Flex 平台上进行 8 次重复处理。使用 NanoDrop®分光光度计测量 RNA 纯度和产量,通过实时逆转录定量聚合酶链反应(RT-qPCR)评估 EE。研究结果表明,所有测试的提取试剂盒都具有一致的高 RNA 纯度,但 RNA 产量存在很大差异。提取效率在组织类型之间存在差异,从脑组织到肺组织呈现出下降趋势。这些结果强调了仔细选择试剂盒和方法优化的重要性,以实现可靠的下游应用。MagMAX™ mirVana™总 RNA 分离试剂盒脱颖而出,是最准确和可重复的,因此成为需要高质量和一致性 RNA 的应用的首选。其他试剂盒,如 Maxwell®HT simplyRNA 试剂盒,在成本和性能之间提供了良好的平衡,但在精度上存在一些折衷。这些发现强调了根据研究的具体需求选择适当的 RNA 分离方法的重要性,突出了准确提取核酸在基因和细胞治疗研究中的关键作用。总之,本研究强调了影响 RNA 提取性能的关键因素,强调了研究人员和从业者在设计实验方案时既要考虑试剂盒性能,又要考虑组织特性。这些见解有助于提高分子生物学和细胞/基因治疗应用中 RNA 提取方法的重现性和可靠性。