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使用标准化酶联免疫吸附测定程序鉴定96孔免疫测定板塑料表面非特异性蛋白质吸附所导致的不可接受背景。

Identification of unacceptable background caused by non-specific protein adsorption to the plastic surface of 96-well immunoassay plates using a standardized enzyme-linked immunosorbent assay procedure.

作者信息

Rebeski D E, Winger E M, Shin Y K, Lelenta M, Robinson M M, Varecka R, Crowther J R

机构信息

Animal Production Unit, Food and Agriculture Organisation/International Atomic Energy Agency Agriculture and Biotechnology Laboratory, Vienna, Austria.

出版信息

J Immunol Methods. 1999 Jun 24;226(1-2):85-92. doi: 10.1016/s0022-1759(99)00051-4.

DOI:10.1016/s0022-1759(99)00051-4
PMID:10410974
Abstract

A standardized enzyme-linked immunosorbent assay (ELISA) was used to examine the capacity of immunoassay plates to prevent non-specific protein binding under blocking conditions. Data from 16 types of 96-well microtitre plate from seven commercial sources, are described. Plates were evaluated with respect to their capacity to adsorb a conjugated antibody in diluent buffer containing non-ionic detergent Tween 20 (0.05%) and skimmed milk proteins (5%). Plates with an absorbance value of > or = 0.05, in not more than one well, were defined as within acceptable limits. Major problems were seen in high binding gamma-irradiated polystyrene plates, from all sources, where only < or = 30% of plates were acceptable. These showed high, randomly distributed, non-specific binding, with some wells showing absorbance values > 2.0. Similar results were obtained when high binding plates were repeatedly gamma-irradiated, and after gamma-irradiation of low binding polystyrene plates. For high binding, non- gamma-irradiated polystyrene plates, approximately 70% of plates were acceptable. Better results (86-100% acceptability) were observed for all low binding polystyrene plates. Only one source in three provided acceptable, low binding, polyvinylchloride plates. This paper confirms a widely held view that non-specific binding to certain plates could be a serious factor in both the development and application of ELISAs. Therefore, the test protocol described is proposed as an additional quality control method for certifying ELISA plates by commercial companies.

摘要

采用标准化的酶联免疫吸附测定(ELISA)来检测免疫测定板在封闭条件下防止非特异性蛋白质结合的能力。文中描述了来自七个商业来源的16种96孔微量滴定板的数据。对这些板在含有非离子去污剂吐温20(0.05%)和脱脂乳蛋白(5%)的稀释缓冲液中吸附结合抗体的能力进行了评估。吸光度值大于或等于0.05且不超过一个孔的板被定义为在可接受范围内。在所有来源的高结合γ射线辐照聚苯乙烯板中发现了主要问题,其中只有小于或等于30%的板是可接受的。这些板显示出高的、随机分布的非特异性结合,一些孔的吸光度值大于2.0。当高结合板反复进行γ射线辐照时,以及低结合聚苯乙烯板进行γ射线辐照后,都得到了类似的结果。对于高结合的非γ射线辐照聚苯乙烯板,大约70%的板是可接受的。所有低结合聚苯乙烯板都观察到了更好的结果(可接受率为86 - 100%)。三个供应商中只有一个提供了可接受的低结合聚氯乙烯板。本文证实了一个广泛持有的观点,即与某些板的非特异性结合可能是ELISA开发和应用中的一个严重因素。因此,所描述的测试方案被提议作为商业公司认证ELISA板的一种额外质量控制方法。

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