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首页> 外文期刊>Journal of Immunological Methods >Development of improved SNAP25 endopeptidase immuno-assays for botulinum type A and E toxins.
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Development of improved SNAP25 endopeptidase immuno-assays for botulinum type A and E toxins.

机译:改进的针对A型和E型肉毒杆菌毒素的SNAP25内肽酶免疫测定方法的开发。

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摘要

Botulinum neurotoxins contain proteases that cleave specific intra-neural proteins essential for neurotransmitter release. Toxin types A, E and C1 intra-cellularly cleave SNAP25 resulting in a flaccid paralysis. As a consequence, various different endopeptidase assays have been developed to specifically detect the toxins enzymatic activity, however, many of these suffer from variability, low sensitivity or unwanted interference exerted by product specific excipients. The current studies utilised solid phase synthesized SNAP25(137-206) peptide substrate, and specific antibody to either the SNAP25(190-197) or (173-180) octapeptide epitopes that become exposed following cleavage by toxin types A or E respectively. Assay sensitivity was increased 50 fold by the use of an optimal 0.5% Tween 20 concentration in tandem to 0.1% albumin together with an improved, simplified assay design without a pre-activation / reduction step. Sensitivities capable of detecting 0.01 LD50/ml (40fg/ml or 0.3fM) of type A toxin was achieved with a linear dose response between 0.1 and 1 LD50/ml. This provides sufficient sensitivity and precision (inter assay GCV of < 2%) for monitoring activity within any current or newly marketed therapeutic products containing less units per vial and may also make it applicable for other applications. Both purified haemagglutinin free and complexed toxins could be detected equally. Unlike type A, type E activity could unexpectedly be detected in the complete absence of reducing conditions and the optimal assay had a limit of detection of 0.2LD50/ml (4.8pg/ml) with a linear dose response between 1 and 10LD50/ml. The principle of using a detecting antibody to a substrate sequence buried within the native substrates alpha-helix may be further expanded to other specific enzyme cleavage reactions in the future.
机译:肉毒杆菌神经毒素包含的蛋白酶可裂解神经递质释放所必需的特定神经内蛋白。毒素A,E和C1在细胞内裂解SNAP25,导致松弛性麻痹。结果,已经开发出各种不同的内肽酶测定法以特异性地检测毒素的酶促活性,然而,许多此类酶具有产物特异性赋形剂所具有的可变性,低灵敏度或不想要的干扰。当前的研究利用固相合成的SNAP25(137-206)肽底物,以及针对SNAP25(190-197)或(173-180)八肽表位的特异性抗体,这些抗原表位分别被毒素A或E裂解后暴露。通过将最佳0.5%Tween 20浓度串联使用至0.1%白蛋白,将测定灵敏度提高了50倍,并且无需预先激活/还原步骤即可进行改进,简化的测定设计。在0.1到LD50 / ml的线性剂量范围内,可以检测0.01 LD50 / ml(40fg / ml或0.3fM)的A型毒素。这提供了足够的灵敏度和精确度(内部测定GCV <2%),可用于监测任何当前或新上市的治疗产品中每个小瓶包含更少单位的活性,也可以使其适用于其他应用。纯化的血凝素游离蛋白和复合毒素都可以被同等检测。与A型不同,在完全不存在还原条件的情况下,可以意外地检测到E型活性,并且最佳测定的检测限为0.2LD50 / ml(4.8pg / ml),线性剂量响应为1至10LD50 / ml。使用针对埋在天然底物α-螺旋内的底物序列的检测抗体的原理将来可能会进一步扩展到其他特定的酶裂解反应。

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