Nemzeti Gyógyszerkutatási és Fejlesztési Laboratórium(PharmaLab) Támogató: NKFIH
(2018-1.3.1-VKE-2018-00032)
(KFI-18-2018-00097)
Thematic Excellence Program(TKP2021-EGA-42)
János Bolyai Research Scholarship of the Hungarian Academy of Sciences(TKP2021-NVA-15)
(2020-1.1.5-GYORSÍTÓSÁV-2021-00004,)
BrainVisionCenter(2020-2.1.1-ED-2021-00190)
(2020-2.1.1-ED-2022-00208)
(TKP2021-NVA-14)
(BO/799/21/7)
(ÚNKP-22-ME3)
An asymmetric cyanine-type fluorescent dye was designed and synthesized via a versatile,
multi-step process, aiming to conjugate with an Her2+ receptor specific antibody by
an azide-alkyne click reaction. The aromaticity and the excitation and relaxation
energetics of the fluorophore were characterized by computational methods. The synthesized
dye exhibited excellent fluorescence properties for confocal microscopy, offering
efficient applicability in in vitro imaging due to its merits such as a high molar
absorption coefficient (36 816 M-1 cm-1), excellent brightness, optimal wavelength
(627 nm), larger Stokes shift (26 nm) and appropriate photostability compared to cyanines.
The conjugated cyanine-trastuzumab was constructed via an effective, metal-free, strain-promoted
azide-alkyne click reaction leading to a regulated number of dyes being conjugated.
This novel cyanine-labelled antibody was successfully applied for in vitro confocal
imaging and flow cytometry of Her2+ tumor cells. An azido cyanine dye was synthesized
and characterized by computational and experimental techniques and applied in tumor
cell imaging.