3 research outputs found
Towards efficient Ir(iii) anticancer photodynamic therapy agents by extending π-conjugation on N^N ligands
Funding Information: This work was supported by the MCIN/AEI of Spain (projects PID2021-127187OB-C21 and PID2021-127187OB-C22). The PhD students acknowledge their predoctoral grants to Universidad de Burgos (J. S. V., 2019/00002/008/001) and University of Girona (C. B., IFUdG 2021). Publisher Copyright: © 2024 The Royal Society of Chemistry.In this work we disclose a new family of biscyclometallated Ir(iii) complexes of the general formula [Ir(C^N)2(N^N)]Cl (IrL1-IrL5), where HC^N is 1-phenyl-β-carboline and N^N ligands (L1-L5) are different diimine ligands that differ from each other in the number of aromatic rings fused to the bipyridine scaffold. The photophysical properties of IrL1-IrL5 were thoroughly studied, and theoretical calculations were performed for a deeper comprehension of the respective variations along the series. All complexes exhibited high photostability under blue light irradiation. An increase in the number of aromatic rings led to a reduction in the HOMO-LUMO band gap causing a red-shift in the absorbance bands. Although all the complexes generated singlet oxygen (1O2) in aerated aqueous solutions through a photocatalytic process, IrL5 was by far the most efficient photosensitizer. Consequently, IrL5 was highly active in the photocatalytic oxidation of NADH. The formation of aggregates in DMSO at a high concentration (25 mM) was confirmed using different techniques, but was proved to be negligible in the concentration range of biological experiments. Moreover, ICP-MS studies proved that the cellular uptake of IrL2 and IrL3 is much better relative to that of IrL1, IrL4 and IrL5. The antiproliferative activity of IrL1-IrL5 was investigated in the dark and under blue light irradiation against different cancer cell lines. Complexes IrL1-IrL4 were found to be cytotoxic under dark conditions, while IrL5 turned out to be weakly cytotoxic. Despite the low cellular uptake of IrL5, this derivative exhibited a high increase of cytotoxicity upon blue light irradiation resulting in photocytotoxicity indexes (PI) up to 38. IrL1-IrL4 showed lower photocytotoxicity indexes ranging from 1.3 to 17.0. Haemolytic experiments corroborated the compatibility of our complexes with red blood cells. Confocal microscopy studies proved their accumulation in mitochondria, leading to mitochondrial membrane depolarization, and ruled out their localization in lysosomes. Overall, the mitochondria-targeted activity of IrL5, which inhibits considerably the viability of cancer cells upon blue light irradiation, allows us to outline this PS as a new alternative to traditional chemotherapeutic agents.publishersversionpublishe
Study of the biological activity of photoactive bipyridyl-Ru(II) complexes containing 1,3,5-triaza-7-phosphaadamantane (PTA).
The water-soluble ruthenium complex cis-[Ru(dcbpyH)2(PTAH)2]Cl2⋅3H2O (1) (dcbpy = 4,4′-dicarboxy-2,2′-
bipyridine; PTA = 1,3,5-triaza-7-phosphaadamantane) has been synthesized and characterised by NMR, IR
spectroscopy, elemental analysis, and single-crystal X-ray diffraction. The optical properties of 1 were studied,
including photoactivation under visible light, as well as its biological properties, together with those of the
previously published Ru complexes cis-[Ru(bpy)2(PTA)2]Cl2 (2), trans-[Ru(bpy)2(PTA)2](CF3SO3)2 (3) and cis-
[Ru(bpy)2(H2O)(PTA)](CF3SO3)2 (4) (bpy = 2,2′-bipyridine). Anticancer activities of the complexes against
human lung (A549), cervical (HeLa) and prostate (PC3) carcinoma cells were evaluated under dark conditions
and upon photoactivation with visible light. None of the complexes exhibited cytotoxic activity in the absence of
light irradiation (IC50 > 100 μM). However, after photoactivation, the cytotoxicity of complexes 1, 2 and 3
against the three cell lines markedly increased, resulting in IC50 values between 25.3 μM and 9.3 μM. Notably,
these complexes did not show toxicity against red blood cells. These findings show the potential of complexes 1,
2 and, particularly, 3 for selective and controlled cancer photochemotherapy. The reactivity of the Ru complexes
against DNA under UV–Vis irradiation was studied by analysing plasmid mobility. Experimental data shows that
4 unfolds supercoiled DNA (SC DNA) both in the dark and under visible irradiation, while 1 and 3 are only active
under light, being 2 inactive in either case. The unfolding activities of complexes 3 and 4 were dependent on the
air present in the reaction. The measured intracellular levels of reactive oxygen species (ROS) upon irradiation
with complexes 1, 2 and 3 suggest that their mechanism of action is related to oxidative stress
IPSC‐based modeling of THD recapitulates disease phenotypes and reveals neuronal malformation
Tyrosine hydroxylase deficiency (THD) is a rare genetic disorder leading to dopaminergic depletion and early-onset Parkinsonism. Affected children present with either a severe form that does not respond to L-Dopa treatment (THD-B) or a milder L-Dopa responsive form (THD-A). We generated induced pluripotent stem cells (iPSCs) from THD patients that were differentiated into dopaminergic neurons (DAn) and compared with control-DAn from healthy individuals and gene-corrected isogenic controls. Consistent with patients, THD iPSC-DAn displayed lower levels of DA metabolites and reduced TH expression, when compared to controls. Moreover, THD iPSC-DAn showed abnormal morphology, including reduced total neurite length and neurite arborization defects, which were not evident in DAn differentiated from control-iPSC. Treatment of THD-iPSC-DAn with L-Dopa rescued the neuronal defects and disease phenotype only in THDA-DAn. Interestingly, L-Dopa treatment at the stage of neuronal precursors could prevent the alterations in THDB-iPSC-DAn, thus suggesting the existence of a critical developmental window in THD. Our iPSC-based model recapitulates THD disease phenotypes and response to treatment, representing a promising tool for investigating pathogenic mechanisms, drug screening, and personalized management