A customizable multiplex protein microarray for antibody testing and its application for tick-borne and other infectious diseases

Author:

Krishnamurthy Hari KrishnanORCID,Jayaraman Vasanth,Krishna Karthik,Wang Tianhao,Bei Kang,Suresh Chithra,Matilda Shiny,Rai Alex J,Welc-Falęciak Renata,Pawełczyk Agnieszka,Blanton Lucas S.,Chrdle Aleš,Fořtová Andrea,Růžek Daniel,Nasrallah Gheyath K.,Abu-Raddadi Laith J.,Al-Sadeq Duaa W.,Abdallah Marah Abed Alhakim,Lilleri Daniele,Fornara Chiara,D’Angelo Piera,Furione Milena,Venermo Maria Söderlund-,Hedman Klaus,Chochlakis Dimosthenis,Psaroulaki Anna,Makridaki Eirini,Ntoula Artemis,Rajasekaran John J.

Abstract

AbstractTick-borne infections are the most common vector-borne diseases in the USA. Ticks harbor and spread several infections with Lyme disease being the most common tickborne infection in the US and Europe. Lack of awareness about tick populations, specific diagnostic tests, and overlapping symptoms of tick-borne infections can often lead to misdiagnosis affecting treatment and the prevalence data reported especially for non-Lyme tick-borne infections. The diagnostic tests currently available for tick-borne diseases are severely limited in their ability to provide accurate results and cannot detect multiple pathogens in a single run. The multiplex protein microarray developed at Vibrant was designed to detect multiple serological antibodies thereby detecting exposure to multiple pathogens simultaneously. Our microarray in its present form can accommodate 400 antigens and can multiplex across antigen types, whole cell sonicates, recombinant proteins, and peptides. A designed array containing multiple antigens of several microbes includingBorrelia burgdorferi,the Lyme disease spirochete, was manufactured and evaluated. The immunoglobulin M (IgM) and G (IgG) responses against several tick-borne microbes and other infectious agents were analyzed for analytical and clinical performance. The microarray improved IgM and IgG sensitivities and specificities of individual microbes when compared with the respective gold standards. The testing was also performed in a single run in comparison to multiple runs needed for comparable testing standards. In summary, our study presents a flexible multiplex microarray platform that can provide quick results with high sensitivity and specificity for evaluating exposure to varied infectious agents especially tick-borne infections.

Publisher

Cold Spring Harbor Laboratory

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