Carboxyl BODIPY Dyes from Bicarboxylic Anhydrides: One-Pot Preparation, Spectral Properties, Photostability, and Biolabeling
Abstract
New fluorescent dyes based on 4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (BODIPY) and functionalized with a free carboxyl group have been conveniently synthesized from pyrroles and dicarboxylic anhydrides in one-pot reactions. Their spectral properties in different solvents showed little effect of solvatochromism (f up to 0.80 in water) but affect the photostability of the dyes. Photooxidation and photodegradation experiments suggest that dyes 1a and 2a exhibit excellent photostability, especially in water, and several factors were taken into account to elucidate the experimental phenomena. Dyes 1c and 2c, derived from 1a and 2a via the esterification of NHS (N-hydroxysuccinimidyl ester), can be easily acquired in high yields (>90%). Single crystal X-ray structures of dyes 2c and 3a are also obtained and discussed. The fluorescence labeling of BSA and followed prestaining method for gel electrophoresis of BSA demonstrate that the protein can be directly observed by naked eyes at as low as 2 ng level under a normal UV fluorescence electrophorogram gel image system- Dataset
- Dataset
- Biophysics
- Biochemistry
- Cell Biology
- Neuroscience
- Pharmacology
- Biotechnology
- Developmental Biology
- Plant Biology
- Chemical Sciences not elsewhere classified
- Physical Sciences not elsewhere classified
- Dyes 1 c
- 2 c
- yield
- gel electrophoresis
- dicarboxylic anhydrides
- methyl groups
- Spectral Properties
- 2 ng level
- dyes 1
- photostability
- dyes 2 c
- BSA
- BODIPY skeleton benefit
- UV fluorescence electrophorogram gel image system
- Bicarboxylic Anhydrides
- prestaining method
- photodegradation experiments
- NHS
- Carboxyl BODIPY Dyes
- carboxyl group