BF2-Azadipyrromethene Fluorophores for Intraoperative Vital Structure Identification

Author:

Caulfield Cathal1ORCID,Wu Dan1,Miller Ian S.23ORCID,Byrne Annette T.23,Mac Aonghusa Pól4,Zhuk Sergiy4,Cinelli Lorenzo56ORCID,Bannone Elisa578ORCID,Marescaux Jacques5ORCID,Gioux Sylvain9,Diana Michele5910ORCID,March Taryn L.11,Vahrmeijer Alexander L.12,Cahill Ronan1314ORCID,O’Shea Donal F.1

Affiliation:

1. Department of Chemistry, Royal College of Surgeons in Ireland (RCSI), D02 PN40 Dublin 2, Ireland

2. Precision Cancer Medicine Group, Department of Physiology and Medical Physics, Royal College of Surgeons in Ireland (RCSI), D02 PN40 Dublin 2, Ireland

3. National Pre-clinical Imaging Centre (NPIC), Royal College of Surgeons in Ireland (RCSI), D02 PN40 Dublin, Ireland

4. IBM Research-Ireland, Damastown Industrial Estate, Mulhuddart, D02 PN40 Dublin 15, Ireland

5. Research Institute against Digestive Cancer (IRCAD), 67000 Strasbourg, France

6. Department of Gastrointestinal Surgery, San Raffaele Hospital IRCCS, 20132 Milan, Italy

7. Department of Surgery, Istituto Fondazione Poliambulanza, 25124 Brescia, Italy

8. Department of Pancreatic Surgery, Verona University, 37134 Verona, Italy

9. ICube Lab, Photonics Instrumentation for Health, 67400 Strasbourg, France

10. Digestive and Endocrine Surgery, Nouvel Hospital Civil, University of Strasbourg, 67000 Strasbourg, France

11. Department of Clinical Pharmacy and Toxicology, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands

12. Department of Surgery, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands

13. UCD Centre for Precision Surgery, School of Medicine, University College Dublin, D02 PN40 Dublin 4, Ireland

14. Department of Surgery, Mater Misericordiae University Hospital, D02 PN40 Dublin 7, Ireland

Abstract

A series of mono- and bis-polyethylene glycol (PEG)-substituted BF2-azadipyrromethene fluorophores have been synthesized with emissions in the near-infrared region (700–800 nm) for the purpose of fluorescence guided intraoperative imaging; chiefly ureter imaging. The Bis-PEGylation of fluorophores resulted in higher aqueous fluorescence quantum yields, with PEG chain lengths of 2.9 to 4.6 kDa being optimal. Fluorescence ureter identification was possible in a rodent model with the preference for renal excretion notable through comparative fluorescence intensities from the ureters, kidneys and liver. Ureteral identification was also successfully performed in a larger animal porcine model under abdominal surgical conditions. Three tested doses of 0.5, 0.25 and 0.1 mg/kg all successfully identified fluorescent ureters within 20 min of administration which was sustained up to 120 min. 3-D emission heat map imaging allowed the spatial and temporal changes in intensity due to the distinctive peristaltic waves of urine being transferred from the kidneys to the bladder to be identified. As the emission of these fluorophores could be spectrally distinguished from the clinically-used perfusion dye indocyanine green, it is envisaged that their combined use could be a step towards intraoperative colour coding of different tissues.

Funder

Irish Government Department of Business, Enterprise and Innovation’s Disruptive Technology Innovation Fund

Science Foundation Ireland

Synthesis and Solid State Pharmaceutical Centre

ARC Foundation

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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