Ratio-based indicators for cytosolic Ca <sup>2+</sup> with visible light excitation

X Xinqi Zhou (Department of Chemistry) K Kayla J. Belavek (Department of Chemistry, University of California) M Marisol X. Navarro (Department of Chemistry, University of California) K Kayli N. Martinez (Department of Chemistry, University of California) A Abigail Hinojosa (Department of Chemistry, University of California) E Evan W. Miller (Department of Chemistry)

Abstract

Calcium ions (Ca 2+ ) play central roles in cellular physiology. Fluorescent indicators for Ca 2+ ions revolutionized our ability to make rapid, accurate, and highly parallel measurement of Ca 2+ concentrations in living cells. The use of ratio-based imaging with one particular indicator, fura-2, allowed practitioners to correct for a number of experimental confounds, including dye bleaching, variations in sample thickness, and fluctuations in illumination intensity. Ratio-based imaging with fura-2 was the most accurate and reliable method for measuring Ca 2+ concentrations. Two drawbacks to fura-2 exist. First, it requires ultraviolet (UV) excitation, which is more toxic to living cells than visible light. Second, our ability to use fura-2 for accurate, stable, ratio-based determinations of Ca 2+ concentration in living cells is fast becoming a method of the past. This is due, in part, because modern microscopes are phasing out the use of mercury arc lamps that provide the UV excitation needed for fura-2 imaging. To address this problem, we describe the design, synthesis, and cellular application of benzo[ b ]phosphole-based fluorescent Ca 2+ indicators for ratio-based imaging of Ca 2+ in living cells that can be used with modern light emitting diode (LED)-equipped fluorescence microscopes. We report isoCaRed-1Me, a Ca 2+ indicator that enables ratio-based imaging in immortalized cell lines, primary mammalian hippocampal neurons, and human-induced pluripotent stem cell–derived cardiomyocytes. These data show that isoCaRed-1Me will be useful for ratio-based Ca 2+ imaging using modern microscopes.

Article Details

Volume / Issue Vol. 122, Issue 7
Published February 18, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

X

Xinqi Zhou

Department of Chemistry

K

Kayla J. Belavek

Department of Chemistry, University of California

M

Marisol X. Navarro

Department of Chemistry, University of California

K

Kayli N. Martinez

Department of Chemistry, University of California

A

Abigail Hinojosa

Department of Chemistry, University of California

E

Evan W. Miller

Department of Chemistry