a Department of Physiology , University of Saskatchewan College of Medicine , Saskatoon , SK , Canada.
b Department of Neurobiology, Physiology, and Behavior , University of California , Davis , CA , USA.
Expert Rev Proteomics. 2017 Nov;14(11):1037-1053. doi: 10.1080/14789450.2017.1388167. Epub 2017 Oct 13.
Western blotting is one of the most commonly used techniques in molecular biology and proteomics. Since western blotting is a multistep protocol, variations and errors can occur at any step reducing the reliability and reproducibility of this technique. Recent reports suggest that a few key steps, such as the sample preparation method, the amount and source of primary antibody used, as well as the normalization method utilized, are critical for reproducible western blot results. Areas covered: In this review, improvements in different areas of western blotting, including protein transfer and antibody validation, are summarized. The review discusses the most advanced western blotting techniques available and highlights the relationship between next generation western blotting techniques and its clinical relevance. Expert commentary: Over the last decade significant improvements have been made in creating more sensitive, automated, and advanced techniques by optimizing various aspects of the western blot protocol. New methods such as single cell-resolution western blot, capillary electrophoresis, DigiWest, automated microfluid western blotting and microchip electrophoresis have all been developed to reduce potential problems associated with the western blotting technique. Innovative developments in instrumentation and increased sensitivity for western blots offer novel possibilities for increasing the clinical implications of western blot.
免疫印迹法是分子生物学和蛋白质组学中最常用的技术之一。由于免疫印迹法是一个多步骤的方案,因此在任何步骤都可能发生变化和错误,从而降低该技术的可靠性和可重复性。最近的报告表明,一些关键步骤,如样品制备方法、使用的一抗的量和来源以及所采用的归一化方法,对于可重复的免疫印迹结果至关重要。涵盖领域:在这篇综述中,总结了免疫印迹法不同领域的改进,包括蛋白转移和抗体验证。该综述讨论了现有的最先进的免疫印迹技术,并强调了下一代免疫印迹技术及其与临床相关性之间的关系。专家评论:在过去的十年中,通过优化免疫印迹方案的各个方面,已经在创建更敏感、自动化和先进的技术方面取得了重大进展。已经开发出了一些新的方法,如单细胞分辨率免疫印迹、毛细管电泳、DigiWest、自动化微流控免疫印迹和微芯片电泳,以减少与免疫印迹技术相关的潜在问题。仪器的创新发展和免疫印迹的灵敏度的提高为增加免疫印迹的临床意义提供了新的可能性。