Hybrid of Indolizine and Merocyanine—A New Class of Organelle‐Specific Dyes

J Jaqueline S. A. Badaro (Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland) B Beata Koszarna (Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland) M Maja Perkowska (Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland) K Kristiana Kandere‐Grzybowska (Center for Algorithmic and Robotized Synthesis Institute for Basic Science (IBS) Ulsan 44919 Republic of Korea) D Diana V. Kolygina (IBS Center for Algorithmic and Robotized Synthesis (CARS) Ulsan National Institute of Science and Technology 50 UNIST‐gil Ulsan 44919 Republic of Korea) O Olaf Morawski (Institute of Physics Polish Academy of Sciences Warsaw Poland) J Juhee Park (School of Biological Sciences, Seoul National University) B Bartosz Grzybowski (Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland) I Irena Deperasińska (Institute of Physics, Polish Academy of Sciences, Warsaw, Poland.) D Daniel T Gryko (Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland)

Abstract

Abstract Unlocking the potential of electron‐rich 2‐hydroxyindolizines led to the discovery of a new class of dyes—indolizine‐merocyanines (IndMer) and indolizine‐cyanines. Tandem Friedel–Crafts alkylation followed by intramolecular nucleophilic aromatic substitution afforded structurally diverse dyes, as both the nucleophilic and electrophilic partners can be broadly modified. A convergent fragment coupling strategy allowed rapid access to these π‐conjugated merocyanines in three steps from pyridines. Uniform distribution of the HOMO and LUMO combined with negligible change of dipole moment upon excitation is responsible for the intense orange or red emission of this new family of reasonably photostable dyes in a broad range of solvents. The new merocyanine dyes have the potential to target a variety of organelles—both uncharged and positively charged indolizine–merocyanines localize a subset of cellular lysosomes, positively charged indolizine–cyanine hybrid accumulates in mitochondria, while coumarin–merocyanine shows context‐dependent localization to mitochondria and RNA‐rich nucleoli of the living cells.

Article Details

Volume / Issue Vol. 64, Issue 47
Published November 17, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (10)

J

Jaqueline S. A. Badaro

Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland

B

Beata Koszarna

Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland

M

Maja Perkowska

Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland

K

Kristiana Kandere‐Grzybowska

Center for Algorithmic and Robotized Synthesis Institute for Basic Science (IBS) Ulsan 44919 Republic of Korea

D

Diana V. Kolygina

IBS Center for Algorithmic and Robotized Synthesis (CARS) Ulsan National Institute of Science and Technology 50 UNIST‐gil Ulsan 44919 Republic of Korea

O

Olaf Morawski

Institute of Physics Polish Academy of Sciences Warsaw Poland

J

Juhee Park

School of Biological Sciences, Seoul National University

B

Bartosz Grzybowski

Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland

I

Irena Deperasińska

Institute of Physics, Polish Academy of Sciences, Warsaw, Poland.

D

Daniel T Gryko

Institute of Organic Chemistry of Polish Academy of Sciences Kasprzaka 44/52 Warsaw 01‐224 Poland