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Carbon Dot-based Fluorescent Antibody Nanoprobes as Brain Tumour Glioblastoma Diagnostics

View ORCID ProfileMattia Ghirardello, Radhe Shyam, Xia Liu, Teodoro Garcia-Millan, Imke Sittel, F. Javier Ramos-Soriano, View ORCID ProfileKathreena Kurian, View ORCID ProfileM. Carmen Galan
doi: https://doi.org/10.1101/2021.11.29.470408
Mattia Ghirardello
1School of Chemistry, University of Bristol, Bristol, United Kingdom
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  • ORCID record for Mattia Ghirardello
Radhe Shyam
1School of Chemistry, University of Bristol, Bristol, United Kingdom
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Xia Liu
2Bristol Medical School, Public Health Sciences, Southmead Hospital, University of Bristol, Bristol, United Kingdom
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Teodoro Garcia-Millan
1School of Chemistry, University of Bristol, Bristol, United Kingdom
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Imke Sittel
1School of Chemistry, University of Bristol, Bristol, United Kingdom
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F. Javier Ramos-Soriano
1School of Chemistry, University of Bristol, Bristol, United Kingdom
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Kathreena Kurian
2Bristol Medical School, Public Health Sciences, Southmead Hospital, University of Bristol, Bristol, United Kingdom
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  • ORCID record for Kathreena Kurian
M. Carmen Galan
1School of Chemistry, University of Bristol, Bristol, United Kingdom
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  • For correspondence: m.c.galan@bristol.ac.uk
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Abstract

The development of efficient and sensitive tools for the detection of brain cancer in patients is of the utmost importance particularly because many of these tumours go undiagnosed until the disease has advanced and when treatment is less effective. Current strategies employ antibodies (Abs) to detect Glial Fibrillary Acid Protein (GFAP) in tissue samples, since GFAP is unique to the brain and not present in normal peripheral blood, and it relies on fluorescent reporters.

Herein we describe a low cost, practical and general method for the labelling of proteins and antibodies with fluorescent carbon dots (CD) to generate diagnostic probes that are robust, photostable and applicable to the clinical setting. The two-step protocol relies on the conjugation of a dibenzocyclooctyne (DBCO)-functionalised CD with azide functionalised proteins by combining amide conjugation and strain promoted alkyne-azide cycloaddition (SPAAC) ligation chemistry. The new class of Ab-CD conjugates developed using this strategy was successfully used for the immunohistochemical staining of human brain tissues of patients with glioblastoma (GBM) validating the approach. Overall, these novel fluorescent probes offer a promising and versatile strategy in terms of costs, photostability and applicability which can be extended to other Abs and protein systems.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • ↵* E-mail: kathreena.kurian{at}bristol.ac.uk and m.c.galan{at}bristol.ac.uk

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted December 06, 2021.
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Carbon Dot-based Fluorescent Antibody Nanoprobes as Brain Tumour Glioblastoma Diagnostics
Mattia Ghirardello, Radhe Shyam, Xia Liu, Teodoro Garcia-Millan, Imke Sittel, F. Javier Ramos-Soriano, Kathreena Kurian, M. Carmen Galan
bioRxiv 2021.11.29.470408; doi: https://doi.org/10.1101/2021.11.29.470408
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Carbon Dot-based Fluorescent Antibody Nanoprobes as Brain Tumour Glioblastoma Diagnostics
Mattia Ghirardello, Radhe Shyam, Xia Liu, Teodoro Garcia-Millan, Imke Sittel, F. Javier Ramos-Soriano, Kathreena Kurian, M. Carmen Galan
bioRxiv 2021.11.29.470408; doi: https://doi.org/10.1101/2021.11.29.470408

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