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Article

Synthesis and Chemiluminescent Properties of Amino-Acylated luminol Derivatives Bearing Phosphonium Cations

by
Anna Pantelia
1,
Ira Daskalaki
1,
M. Consuelo Cuquerella
2,
Georgios Rotas
1,
Miguel A. Miranda
2,* and
Georgios C. Vougioukalakis
1,*
1
Laboratory of Organic Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, Panepistimiopolis, 15771 Athens, Greece
2
Instituto de Tecnología Química (UPV-CSIC), Universitat Politècnica de València, 46022 València, Spain
*
Authors to whom correspondence should be addressed.
Molecules 2019, 24(21), 3957; https://doi.org/10.3390/molecules24213957
Submission received: 15 October 2019 / Revised: 28 October 2019 / Accepted: 30 October 2019 / Published: 31 October 2019
(This article belongs to the Section Organic Chemistry)

Abstract

The monitoring of reactive oxygen species in living cells provides valuable information on cell function and performance. Lately, the development of chemiluminescence-based reactive oxygen species monitoring has gained increased attention due to the advantages posed by chemiluminescence, including its rapid measurement and high sensitivity. In this respect, specific organelle-targeting trackers with strong chemiluminescence performance are of high importance. We herein report the synthesis and chemiluminescence properties of eight novel phosphonium-functionalized amino-acylated luminol and isoluminol derivatives, designed as mitochondriotropic chemiluminescence reactive oxygen species trackers. Three different phosphonium cationic moieties were employed (phenyl, p-tolyl, and cyclohexyl), as well as two alkanoyl chains (hexanoyl and undecanoyl) as bridges/linkers. Synthesis is accomplished via the acylation of the corresponding phthalimides, as phthalhydrazide precursors, followed by hydrazinolysis. This method was chosen because the direct acylation of (iso)luminol was discouraging. The new derivatives’ chemiluminescence was evaluated and compared with that of the parent molecules. A relatively poor chemiluminescence performance was observed for all derivatives, with the isoluminol-based ones being the poorest. This result is mainly attributed to the low yield of the fluorescence species formation during the chemiluminescence oxidation reaction.
Keywords: phthalhydrazide; luminol; chemiluminescence; peroxide; phosphonium; mitochondria phthalhydrazide; luminol; chemiluminescence; peroxide; phosphonium; mitochondria

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MDPI and ACS Style

Pantelia, A.; Daskalaki, I.; Cuquerella, M.C.; Rotas, G.; Miranda, M.A.; Vougioukalakis, G.C. Synthesis and Chemiluminescent Properties of Amino-Acylated luminol Derivatives Bearing Phosphonium Cations. Molecules 2019, 24, 3957. https://doi.org/10.3390/molecules24213957

AMA Style

Pantelia A, Daskalaki I, Cuquerella MC, Rotas G, Miranda MA, Vougioukalakis GC. Synthesis and Chemiluminescent Properties of Amino-Acylated luminol Derivatives Bearing Phosphonium Cations. Molecules. 2019; 24(21):3957. https://doi.org/10.3390/molecules24213957

Chicago/Turabian Style

Pantelia, Anna, Ira Daskalaki, M. Consuelo Cuquerella, Georgios Rotas, Miguel A. Miranda, and Georgios C. Vougioukalakis. 2019. "Synthesis and Chemiluminescent Properties of Amino-Acylated luminol Derivatives Bearing Phosphonium Cations" Molecules 24, no. 21: 3957. https://doi.org/10.3390/molecules24213957

APA Style

Pantelia, A., Daskalaki, I., Cuquerella, M. C., Rotas, G., Miranda, M. A., & Vougioukalakis, G. C. (2019). Synthesis and Chemiluminescent Properties of Amino-Acylated luminol Derivatives Bearing Phosphonium Cations. Molecules, 24(21), 3957. https://doi.org/10.3390/molecules24213957

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