False positive result of human chorionic gonadotropin caused by human anti-mouse antibodies.

IF 3.8 3区 医学 Q1 MEDICAL LABORATORY TECHNOLOGY
Jaroslav Racek, Ivana Potočová, Daniel Rajdl, Ladislav Trefil, Marie Šolcová
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Abstract

Immunochemical reactions are fast, can be automated, and generally do not require pretreatment of biological material. Based on these advantages, they are widely used. On the other hand, they are susceptible to analytical interference that can lead to inaccurate results. These factors include the presence of anti-mouse antibodies, causing false positive (or sometimes false negative) results. Although the anti-mouse antibodies over many decades have been repeatedly identified to be the causative source but due to the rarity of such encounters they remain insufficiently considered. Here we show a case, a 45 year-old female who was mis-diagnosed with pregnancy due to falsely elevated human chorionic gonadotropin (hCG) due to anti-mouse antibodies. This led to the patient undergoing two ultrasound examinations and laparoscopy before the hCG was repeated on alternative assays which showed negative results, preventing the patient from methotrexate treatment. Here we describe the details of the case, outline the assay principal, supporting the finding from literature and outlining a process on how to identify such interferences in timely manner.

Abstract Image

Abstract Image

人抗小鼠抗体致人绒毛膜促性腺激素假阳性结果。
免疫化学反应速度快,可以自动化,通常不需要预处理生物材料。基于这些优点,它们被广泛使用。另一方面,它们容易受到分析干扰,从而导致不准确的结果。这些因素包括抗小鼠抗体的存在,导致假阳性(或有时假阴性)结果。虽然几十年来,抗小鼠抗体已被反复确定为致病源,但由于这种接触的罕见性,它们仍然没有得到充分的考虑。这里我们报告一个病例,一位45岁的女性,由于抗小鼠抗体导致人绒毛膜促性腺激素(hCG)错误升高而被误诊为怀孕。这导致患者接受了两次超声检查和腹腔镜检查,然后在重复hCG的替代分析中显示阴性结果,阻止患者接受甲氨蝶呤治疗。在这里,我们描述了案例的细节,概述了分析原则,支持文献中的发现,并概述了如何及时识别此类干扰的过程。
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来源期刊
Biochemia Medica
Biochemia Medica 医学-医学实验技术
CiteScore
5.50
自引率
3.00%
发文量
70
审稿时长
>12 weeks
期刊介绍: Biochemia Medica is the official peer-reviewed journal of the Croatian Society of Medical Biochemistry and Laboratory Medicine. Journal provides a wide coverage of research in all aspects of clinical chemistry and laboratory medicine. Following categories fit into the scope of the Journal: general clinical chemistry, haematology and haemostasis, molecular diagnostics and endocrinology. Development, validation and verification of analytical techniques and methods applicable to clinical chemistry and laboratory medicine are welcome as well as studies dealing with laboratory organization, automation and quality control. Journal publishes on a regular basis educative preanalytical case reports (Preanalytical mysteries), articles dealing with applied biostatistics (Lessons in biostatistics) and research integrity (Research integrity corner).
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