Application of Multiantigen Profiling To Detect Pecan

Author:

CHO CHUNG Y.1,PUENTE-LELIEVRE CAROLINE1,JONES GRANT D.2,STADIG SARAH R.1,TAYLOR DEBRA A.2,EISCHEID ANNE C.1,GARBER ERIC A. E.1

Affiliation:

1. Office of Regulatory Science, Center for Food Safety and Applied Nutrition (CFSAN), U.S. Food and Drug Administration, College Park, Maryland 20740; and

2. New Orleans District Office, Office of Regulatory Affairs (ORA), U.S. Food and Drug Administration, Jackson, Mississippi 39269, USA

Abstract

ABSTRACTA problem often encountered in the detection and identification of undeclared tree nut food allergens is the lack of analytical methods. This problem is accentuated by the current trend, whereby the primary methods used to detect food allergens are antibody-based enzyme-linked immunosorbent assays (ELISAs) and the development of analyte-specific antibodies takes months. The recently developed xMAP food allergen detection assay (xMAP FADA) has the ability to generate multiantigen profiles with tree nuts, thereby providing a potential solution to this problem. The xMAP FADA includes 22 antibodies targeting peanut, soy, and nine tree nuts. The high number of antibodies to a diverse group of tree nuts and legumes and the propensity of tree nuts to cross-react have enabled the development of multiantigen profiling, whereby an analyte reacts with the various antibodies to generate a profile. Recently, a question arose regarding the possible presence of pecan dust at a manufacturer of pecan products that also stored fresh produce. The lack of suitable pecan ELISAs created an analytical challenge that was resolved using multiantigen profiling with the xMAP FADA. Pecan was detected on swab samples by using multiantigen profiling and confirmed by DNA analysis. The use of multiantigen profiling provided an analytical capability beyond what was possible with an analyte-specific analytical method.

Publisher

International Association for Food Protection

Subject

Microbiology,Food Science

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