» Articles » PMID: 10682916

Mitochondrial Effects of Triarylmethane Dyes

Overview
Publisher Springer
Date 2000 Feb 22
PMID 10682916
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

The mitochondrial effects of submicromolar concentrations of six triarylmethane dyes, with potential applications in antioncotic photodynamic therapy, were studied. All dyes promoted an inhibition of glutamate or succinate-supported respiration in uncoupled mitochondria, in a manner stimulated photodynamically. No inhibition of N,N,N',N'-tetramethyl-p-phenylenediamine (TMPD) supported respiration was observed, indicating that these dyes do not affect mitochondrial complex IV. When mitochondria were energized with TMPD in the absence of an uncoupler, treatment with victoria blue R, B, or BO, promoted a dissipation of mitochondrial membrane potential and increase of respiratory rates, compatible with mitochondrial uncoupling. This effect was observed even in the dark, and was not prevented by EGTA, Mg2+ or cyclosporin A, suggesting that it is promoted by a direct effect of the dye on inner mitochondrial membrane permeability to protons. Indeed, victoria blue R, B, and BO promoted swelling of valinomycin-treated mitochondria incubated in a hyposmotic K+-acetate-based medium, confirming that these dyes act as classic protonophores such as FCCP. On the other hand, ethyl violet, crystal violet, and malachite green promoted a dissipation of mitochondrial membrane potential, accompanied by mitochondrial swelling, which was prevented by EGTA, Mg2+, and cyclosporin A, demonstrating that these drugs induce mitochondrial permeability transition. This mitochondrial permeabilization was followed by respiratory inhibition, attributable to cytochrome c release, and was caused by the oxidation of NAD(P)H promoted by these drugs.

Citing Articles

Advancements in nanotechnology-driven photodynamic and photothermal therapies: mechanistic insights and synergistic approaches for cancer treatment.

Shabnum S, Siranjeevi R, Raj C, Saravanan A, Vickram A, Chopra H RSC Adv. 2024; 14(52):38952-38995.

PMID: 39659608 PMC: 11629304. DOI: 10.1039/d4ra07114j.


Photodynamic Therapy-Current Limitations and Novel Approaches.

Gunaydin G, Gedik M, Ayan S Front Chem. 2021; 9:691697.

PMID: 34178948 PMC: 8223074. DOI: 10.3389/fchem.2021.691697.


Effect of photodynamic therapy with malachite green on non-surgical periodontal treatment in HIV patients: a pilot split-mouth study.

Salgado D, Noro-Filho G, Cortes A, Arita E, Casarin R, Costa C Lasers Med Sci. 2016; 32(5):1213-1217.

PMID: 27677476 DOI: 10.1007/s10103-016-2083-8.


Profiling of the Tox21 chemical collection for mitochondrial function to identify compounds that acutely decrease mitochondrial membrane potential.

Attene-Ramos M, Huang R, Michael S, Witt K, Richard A, Tice R Environ Health Perspect. 2014; 123(1):49-56.

PMID: 25302578 PMC: 4286281. DOI: 10.1289/ehp.1408642.


Rosamines targeting the cancer oxidative phosphorylation pathway.

Lim S, Wu L, Kiew L, Chung L, Burgess K, Lee H PLoS One. 2014; 9(3):e82934.

PMID: 24622277 PMC: 3951181. DOI: 10.1371/journal.pone.0082934.


References
1.
Scarlett J, Murphy M . Release of apoptogenic proteins from the mitochondrial intermembrane space during the mitochondrial permeability transition. FEBS Lett. 1998; 418(3):282-6. DOI: 10.1016/s0014-5793(97)01391-4. View

2.
Nicotera P, Leist M, Ferrando-May E . Intracellular ATP, a switch in the decision between apoptosis and necrosis. Toxicol Lett. 1999; 102-103:139-42. DOI: 10.1016/s0378-4274(98)00298-7. View

3.
Petit P, Goubern M, Diolez P, Susin S, Zamzami N, Kroemer G . Disruption of the outer mitochondrial membrane as a result of large amplitude swelling: the impact of irreversible permeability transition. FEBS Lett. 1998; 426(1):111-6. DOI: 10.1016/s0014-5793(98)00318-4. View

4.
Kowaltowski A, Vercesi A . Mitochondrial damage induced by conditions of oxidative stress. Free Radic Biol Med. 1999; 26(3-4):463-71. DOI: 10.1016/s0891-5849(98)00216-0. View

5.
Nicholls D, Budd S . Neuronal excitotoxicity: the role of mitochondria. Biofactors. 1999; 8(3-4):287-99. DOI: 10.1002/biof.5520080317. View