School of Biosciences, University of Sheffield, Sheffield, United Kingdom.
ALTEX. 2024;41(4):605-616. doi: 10.14573/altex.2312071. Epub 2024 Jul 22.
Botulinum neurotoxin type A (BoNT/A) is a biopharmaceutic widely used for the treatment of neurological diseases and in aesthetic medicine to achieve months-long paralysis of target muscles and glands. Large numbers of mice are used in the mouse bioassay (MBA) for various botulinum-related applications including batch release potency testing, antitoxin testing, countermeasure development, and basic research. BoNT/A intoxication causes severe suffering to the mice used for testing, and application-specific, non-animal alternatives are urgently needed. Cell-based assays (CBA) need to replicate all the physiological steps of botulinum intoxication, comprising neuronal binding, internalization, endosomal escape, and cleavage of synaptosomal-associated protein of 25 kDa (SNAP25). However, the CBA currently in use have limitations. In this study we show that LAN5 cells, a human neuroblastoma-derived cell line, are sensitive to BoNT/A and can be engineered to express a recombinant NanoLuciferase (NanoLuc)-tagged SNAP25 reporter molecule. On exposure, the reporter molecule is cleaved and releases a NanoLuc-SNAP25 fragment that can be captured on a 96-well plate for quantitative luminometry using a cleavage-specific SNAP25 antibody. We demonstrate, using purified BoNT/A and a commercial BoNT/A product, that the sensitivity of this new cell-based assay is in the fM range, comparable to that of the MBA. The new assay could replace the MBA in research and commercial testing of BoNT/A, benefiting both scientific progress and animal welfare.
A型肉毒毒素(BoNT/A)是一种生物制药,广泛用于治疗神经疾病和美容医学,以实现目标肌肉和腺体长达数月的瘫痪。大量的老鼠被用于小鼠生物测定(MBA)中,用于各种与肉毒杆菌相关的应用,包括批量放行效力测试、抗毒素测试、对策开发和基础研究。BoNT/A 中毒会给用于测试的老鼠带来严重的痛苦,因此迫切需要特定于应用的非动物替代品。基于细胞的测定(CBA)需要复制肉毒中毒的所有生理步骤,包括神经元结合、内化、内体逃逸和突触相关蛋白 25kDa(SNAP25)的切割。然而,目前使用的 CBA 存在局限性。在这项研究中,我们表明,人神经母细胞瘤衍生细胞系 LAN5 细胞对 BoNT/A 敏感,并且可以被工程改造以表达重组纳米荧光素酶(NanoLuc)标记的 SNAP25 报告分子。暴露后,报告分子被切割并释放出 NanoLuc-SNAP25 片段,该片段可被捕获在 96 孔板上,并用切割特异性的 SNAP25 抗体进行定量发光测量。我们使用纯化的 BoNT/A 和一种商业 BoNT/A 产品证明,这种新的基于细胞的测定法的灵敏度在 fM 范围内,与 MBA 相当。该新测定法可以替代 MBA 在 BoNT/A 的研究和商业测试中,既有利于科学进步,又有利于动物福利。