Detection of Tumor‐Associated Autoantibodies in the Sera of Pancreatic Cancer Patients Using Engineered MUC1 Glycopeptide Nanoparticle Probes

Author:

Corzana Francisco1ORCID,Asín Alicia1,Eguskiza Ander2ORCID,De Tomi Elisa3ORCID,Martín‐Carnicero Alfonso4ORCID,Martínez‐Moral María P.56ORCID,Mangini Vincenzo7ORCID,Papi Francesco8ORCID,Bretón Carmen1ORCID,Oroz Paula1ORCID,Lagartera Laura9ORCID,Jiménez‐Moreno Ester1ORCID,Avenoza Alberto1ORCID,Busto Jesús H.1ORCID,Nativi Cristina8ORCID,Asensio Juan L.10ORCID,Hurtado‐Guerrero Ramón111213ORCID,Peregrina Jesús M.1ORCID,Malerba Giovanni3ORCID,Martínez Alfredo5ORCID,Fiammengo Roberto27ORCID

Affiliation:

1. Departamento de Química Instituto de Investigación en Química (IQUR) Universidad de La Rioja Logroño 26006 Logroño Spain

2. Department of Biotechnology University of Verona Strada Le Grazie 15 37134 Verona Italy

3. Department of Neurosciences Biomedicine and Movement Sciences GM Lab University of Verona 37134 Verona Italy

4. Medical Oncology Department Hospital San Pedro Logroño 26006 Logroño Spain

5. Oncology Area Angiogenesis Group Center for Biomedical Research of La Rioja (CIBIR) Logroño 26006 Logroño Spain

6. Wadsworth Center New York State Department of Health Biggs Laboratory Corning Tower ESP. 12201 Albany NY USA

7. Center for Biomolecular Nanotechnologies@UniLe Istituto Italiano di Tecnologia (IIT) 73010 Arnesano Lecce Italy

8. Department of Chemistry “Ugo Schiff” University of Florence 50019 Sesto Fiorentino (FI) Italy

9. Servicios de Interacciones Biofísicas Instituto de Química Médica (CSIC) C/Juan de la Cierva, 3 28006 Madrid Spain

10. Departamento de Química Bio-Orgánica Instituto de Química Orgánica General (IQOG-CSIC) Consejo Superior de Investigaciones Científicas (CSIC) 28006 Madrid Spain

11. Institute of Biocomputation and Physics of Complex Systems University of Zaragoza 50018 Zaragoza Spain

12. Copenhagen Center for Glycomics Department of Cellular and Molecular Medicine University of Copenhagen Copenhagen DK-2200 Denmark

13. Fundación ARAID 50018 Zaragoza Spain

Abstract

AbstractPancreatic cancer is one of the deadliest cancers worldwide, mainly due to late diagnosis. Therefore, there is an urgent need for novel diagnostic approaches to identify the disease as early as possible. We have developed a diagnostic assay for pancreatic cancer based on the detection of naturally occurring tumor associated autoantibodies against Mucin‐1 (MUC1) using engineered glycopeptides on nanoparticle probes. We used a structure‐guided approach to develop unnatural glycopeptides as model antigens for tumor‐associated MUC1. We designed a collection of 13 glycopeptides to bind either SM3 or 5E5, two monoclonal antibodies with distinct epitopes known to recognize tumor associated MUC1. Glycopeptide binding to SM3 or 5E5 was confirmed by surface plasmon resonance and rationalized by molecular dynamics simulations. These model antigens were conjugated to gold nanoparticles and used in a dot‐blot assay to detect autoantibodies in serum samples from pancreatic cancer patients and healthy volunteers. Nanoparticle probes with glycopeptides displaying the SM3 epitope did not have diagnostic potential. Instead, nanoparticle probes displaying glycopeptides with high affinity for 5E5 could discriminate between cancer patients and healthy controls. Remarkably, the best‐discriminating probes show significantly better true and false positive rates than the current clinical biomarkers CA19‐9 and carcinoembryonic antigen (CEA).

Funder

HORIZON EUROPE Marie Sklodowska-Curie Actions

Mizutani Foundation for Glycoscience

Fundación Científica Asociación Española Contra el Cáncer

Agencia Estatal de Investigación

Universidad de La Rioja

Departamento de Educación, Cultura y Deporte, Gobierno de Aragón

Fondazione AIRC per la ricerca sul cancro ETS

Publisher

Wiley

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