Kissling Vera M, Eitner Stephanie, Bottone Davide, Cereghetti Gea, Wick Peter
Nanomaterials in Health Laboratory, Department of Materials Meet Life, Swiss Federal Laboratories for Materials Science and Technology (Empa), St. Gallen, 9014, Switzerland.
Centre for Misfolding Diseases, Department of Chemistry, University of Cambridge, Cambridge, CB2 1EW, UK.
Adv Healthc Mater. 2025 Jun;14(16):e2404870. doi: 10.1002/adhm.202404870. Epub 2025 Apr 29.
Negative- and positive-staining transmission electron microscopy (ns/psTEM) is a cornerstone of research and diagnostics, enabling nanometer-resolution analysis of organic specimens from nanoparticles to cells without requiring costly cryo-equipment. For nearly 70 years, uranyl salts like uranyl acetate (UA) have been the gold-standard ns/psTEM-stains. However, mounting safety concerns due to their high toxicity and radioactivity have led to stricter regulations and expensive licensing requirements. Consequently, there is an urgent global demand for safer, more sustainable stains that deliver uranyl-comparable, high-quality ns/psTEM. Here, the commercially available stain-alternatives UranyLess, UAR, UA-Zero, PTA, STAIN 77, Nano-W, NanoVan, and lead citrate are systematically assessed against UA. The stains are evaluated regarding their contrast, resolution, stain-distribution, and ease-of-use in ns/psTEM across a diverse sample set, including polymethylmethacrylate-nanoplastics, phosphatidylcholine-liposomes, Influenza-A viruses, globular ferritin, fibrillar pyruvate kinase amyloids, and human lung-carcinoma cell-sections. It is shown that for this variety of samples, a ready-to-use uranyl-alternative is commercially available with comparable or even superior ns/psTEM-performance to UA using an efficient staining-protocol. Furthermore, the GUIDE4U tool is developed for the fast identification of the appropriate uranyl-replacements for each sample of interest, saving ns/psTEM-users time and costs while ensuring excellent staining results for ultrastructural analysis, thereby further catalyzing the use of safer stains.
负染和正染透射电子显微镜(ns/psTEM)是研究和诊断的基石,能够对从纳米颗粒到细胞的有机标本进行纳米级分辨率分析,而无需昂贵的冷冻设备。近70年来,醋酸铀酰(UA)等铀盐一直是ns/psTEM染色的金标准。然而,由于其高毒性和放射性,人们对其安全性的担忧与日俱增,这导致了更严格的法规和昂贵的许可要求。因此,全球迫切需要更安全、更可持续的染色剂,以提供与铀酰相当的高质量ns/psTEM。在此,将市售的替代染色剂UranyLess、UAR、UA-Zero、磷钨酸(PTA)、STAIN 77、Nano-W、NanoVan和柠檬酸铅与UA进行了系统评估。在包括聚甲基丙烯酸甲酯纳米塑料、磷脂酰胆碱脂质体、甲型流感病毒、球状铁蛋白、纤维状丙酮酸激酶淀粉样蛋白和人肺癌细胞切片在内的多种样本中,对这些染色剂在ns/psTEM中的对比度、分辨率、染色分布和易用性进行了评估。结果表明,对于这种多样的样本,使用高效染色方案,有一种即用型铀酰替代物在商业上可用,其ns/psTEM性能与UA相当甚至更优。此外,还开发了GUIDE4U工具,可以快速识别适合每个感兴趣样本的铀酰替代物,为ns/psTEM用户节省时间和成本,同时确保超微结构分析获得出色的染色结果,从而进一步推动更安全染色剂的使用。