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1921
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Enrichment: All (1921) 📝 Has abstract (1310) 📄 Has full text (1889)
Xu, Li, Zhong, Nan-Jing, Xie, Yang-Yin +4 more · 2012 · Journal of Coordination Chemistry
Xu, Li, Zhong, Nan-Jing, Xie, Yang-Yin, Huang, Hong-Liang, Liang, Zhen-Hua, Li, Zheng-Zheng, Liu, Yun-Jun Show less
📄 Full text DOI: 10.1080/00958972.2011.640675
Zeng, Cheng-Hui, Liu, Yun-Jun, Li, Zheng-Zheng +3 more · 2010 · Transition Metal Chemistry
Zeng, Cheng-Hui, Liu, Yun-Jun, Li, Zheng-Zheng, Liang, Zhen-Hua, Huang, Hong-Liang, Wu, Fu-Hai Show less
📄 Full text DOI: 10.1007/s11243-010-9386-6
Bhattacharya, S., Karki, Subhas S., Suresh, R. +6 more · 2012 · Medicinal Chemistry Research
Bhattacharya, S., Karki, Subhas S., Suresh, R., Manikandan, L., Senthilkumar, G. P., Gupta, M., Mazumder, Upal K., Balaji, R., Murali, K. Show less
📄 Full text DOI: 10.1007/s00044-011-9620-6
Mansour, Najwa, Bodman-Smith, Kikki, Khnayzer, Rony S. +1 more · 2021 · Chemico-Biological Interactions
Mansour, Najwa, Bodman-Smith, Kikki, Khnayzer, Rony S., Daher, Costantine F. Show less
The photoactivatable Ru (II) complex 1 [Ru(bipy)2(dpphen)]Cl2 (where bipy = 2,2'-bipyridine and dpphen = 2,9-diphenyl-1,10-phenanthroline) has been shown to possess promising anticancer activity again Show more
The photoactivatable Ru (II) complex 1 [Ru(bipy)2(dpphen)]Cl2 (where bipy = 2,2'-bipyridine and dpphen = 2,9-diphenyl-1,10-phenanthroline) has been shown to possess promising anticancer activity against triple negative adenocarcinoma MDA-MB-231 cells. The present study aims to elucidate the plausible mechanism of action of the photoactivatable complex 1 against MDA-MB-231 cells. Upon photoactivation, complex 1 exhibited time-dependent cytotoxic activity with a phototoxicity index (P Index) of >100 after 72 h. A significant increase in cell rounding and detachment, loss of membrane integrity, ROS accumulation and DNA damage was observed. Flow cytometry and a fluorescent apoptosis/necrosis assay showed an induction of cell apoptosis. Western blot analysis revealed the induction of intrinsic and extrinsic pathways and inhibition of the MAPK and PI3K pathways. The photoproduct of complex 1 showed similar effects on key apoptotic protein expression confirming that it is behind the observed cell death. In conclusion, the present study revealed that complex 1 is a potent multi-mechanistic photoactivatable chemotherapeutic drug that may serve as a potential lead molecule for targeted cancer chemotherapy. Show less
📄 Full text DOI: 10.1016/j.cbi.2020.109317
Musthafa, Moideen, Konakanchi, Ramaiah, Ganguly, Rakesh +3 more · 2021 · Journal of Biomolecular Structure and Dynamics
Musthafa, Moideen, Konakanchi, Ramaiah, Ganguly, Rakesh, Balachandran, Chandrasekar, Aoki, Shin, Sreekanth, Anandaram Show less
A sequence of aroyl selenourea ligands (L1-L3) substituted by aniline and their Ru(II) (η6-p-cymene) complexes (1-3), [Ru(II) (η6-p-cyme Show more
A sequence of aroyl selenourea ligands (L1-L3) substituted by aniline and their Ru(II) (η6-p-cymene) complexes (1-3), [Ru(II) (η6-p-cymene) L] (L = monodentate aroyl selenourea ligand) have been synthesized and characterized the composition of the ligands and their metal complexes. The molecular structures of ligand L1 and complex 3 were also confirmed by single XRD crystal method. The single-crystal XRD study showed that aroyl selenourea ligand coordinates with Ru via Se novel neutral monodentate atom. In vitro DNA interaction studies were investigated by Fluorescence and UV-Visible spectroscopic methods which showed that the intercalative mode of binding is in the order of 1 > 2 > 3 with Ru(II) (η6-p-cymene) complexes. Spectroscopic methods have been used for measuring the binding affinity of bovine serum albumin to complex. Moreover, the cytotoxic study of complexes (1-3) were evaluated against HeLa S3, A549, and IMR90 cells, resulting in complexes 1 and 2 showed promising cytotoxic activity against HeLa S3 cell with IC50 values of 24 and 26 µM, respectively. Also, the morphological changes of HeLa S3 and A549 cells were confirmed by fluorescence microscope in the presence of complexes 1 and 2 using AO (acridine orange, 200 µM) and EB (ethidium bromide, 100 µM). In addition, the docking results strongly support the protein binding studies of the complexes.Communicated by Ramaswamy H. Sarma. Show less
📄 Full text DOI: 10.1080/07391102.2020.1778531
Chen, Jincan, Deng, Yuanyuan, Wang, Jie +7 more · 2021 · JBIC Journal of Biological Inorganic Chemistry
Chen, Jincan, Deng, Yuanyuan, Wang, Jie, Chen, Suxiang, Peng, Fa, He, Xuerong, Liu, Meijun, Luo, Hui, Zhang, Jingjing, Chen, Lanmei Show less
Two new cyclometalated Ru(II)-β-carboline complexes, [Ru(dmb)2(Cl-Ph-βC)](PF6) (dmb = 4,4'-dimethyl-2,2'-bipyridine; Cl-Ph-βC = Cl-phenyl-9H-pyrido[3,4-b]indole; RuβC-3) and [Ru( Show more
Two new cyclometalated Ru(II)-β-carboline complexes, [Ru(dmb)2(Cl-Ph-βC)](PF6) (dmb = 4,4'-dimethyl-2,2'-bipyridine; Cl-Ph-βC = Cl-phenyl-9H-pyrido[3,4-b]indole; RuβC-3) and [Ru(bpy)2(Cl-Ph-βC)](PF6) (bpy = 2,2'-bipyridine; RuβC-4) were synthesized and characterized. The Ru(II) complexes display high cytotoxicity against HeLa cells, the stabilized human cervical cancer cell, with IC50 values of 3.2 ± 0.4 μM (RuβC-3) and 4.1 ± 0.6 μM (RuβC-4), which were considerably lower than that of non-cyclometalated Ru(II)-β-carboline complex [Ru(bpy)2(1-Py-βC)] (PF6)2 (61.2 ± 3.9 μM) by 19- and 15-folds, respectively. The mechanism studies indicated that both Ru(II) complexes could significantly inhibit HeLa cell migration and invasion, and effectively induce G0/G1 cell cycle arrest. The new Ru(II) complexes could also trigger apoptosis through activating caspase-3 and poly (ADP-ribose) polymerase (PARP), increasing the Bax/Bcl-2 ratio, enhancing reactive oxygen species (ROS) generation, decreasing mitochondrial membrane potential (MMP), and inducing cytochrome c release from mitochondria. Further research revealed that RuβC-3 could deactivate the ERK/Akt signaling pathway thus inhibiting HeLa cell invasion and migration, and inducing apoptosis. In addition, RuβC-3-induced apoptosis in HeLa cells was closely associated with the increase of intracellular ROS levels, which may act as upstream factors to regulate ERK and Akt pathways. More importantly, RuβC-3 exhibited low toxicity on both normal BEAS-2B cells in vitro and zebrafish embryos in vivo. Consequently, the developed Ru(II) complexes have great potential on developing novel low-toxic anticancer drugs. Show less
📄 Full text DOI: 10.1007/s00775-021-01894-4
Tan, Caiping, Lai, Sensen, Wu, Shouhai +9 more · 2010 · Journal of Medicinal Chemistry
Tan, Caiping, Lai, Sensen, Wu, Shouhai, Hu, Sheng, Zhou, Lingjun, Chen, Yu, Wang, Minxu, Zhu, Yiping, Lian, Wu, Peng, Wenlie, Ji, Liangnian, Xu, Anlong Show less
The role of autophagy in cancer development and response to cancer therapy has been a subject of debate. Here we demonstrate that a series of ruthenium(II) complexes containing a β-carboline alkaloid Show more
The role of autophagy in cancer development and response to cancer therapy has been a subject of debate. Here we demonstrate that a series of ruthenium(II) complexes containing a β-carboline alkaloid as ligand can simultaneously induce autophagy and apoptosis in tumor cells. These Ru(II) complexes are nuclear permeable and highly active against a panel of human cancer cell lines, with complex 3 displaying activities greater than those of cisplatin. The antiproliferative potentialities of 1-3 are in accordance with their relative lipophilicities, cell membrane penetration abilities, and in vitro DNA binding affinities. Complexes 1-3 trigger release of reactive oxygen species (ROS) and attenuation of ROS by scavengers reduced the sub-G1 population, suggesting ROS-dependent apoptosis. Inhibition of ROS generation also reduces autophagy, indicating that ROS triggers autophagy. Further studies show that suppression of autophagy using pharmacological inhibitors (3-methyladenine and chloroquine) enhances apoptotic cell death. Show less
📄 Full text DOI: 10.1021/jm1009296
De, Sourav, Ashok Kumar, S.K. · 2020 · Inorganica Chimica Acta
📄 Full text DOI: 10.1016/j.ica.2020.119641
Curley, Rhianne C., Burke, Christopher S., Gkika, Karmel S. +3 more · 2023 · Inorganic Chemistry
Curley, Rhianne C., Burke, Christopher S., Gkika, Karmel S., Noorani, Sara, Walsh, Naomi, Keyes, Tia E. Show less
Tridentate ligand-coordinated ruthenium (II) polypyridyl complexes with large N-Ru-N bite angles have been shown to promote ligand field splitting and reduce singlet-triplet state mixing leading to dr Show more
Tridentate ligand-coordinated ruthenium (II) polypyridyl complexes with large N-Ru-N bite angles have been shown to promote ligand field splitting and reduce singlet-triplet state mixing leading to dramatically extended emission quantum yields and lifetimes under ambient conditions. These effects are anticipated to enhance their photoinduced singlet oxygen production, promoting prospects for such complexes as type II phototherapeutics. In this contribution, we examined this putative effect for [Ru(bqp)(bqpCOOEt)]2+, Ru-bqp-ester, a heteroleptic complex containing bqp = [2,6-bi(quinolin-8-yl)pyridine], a well-established large bite angle tridentate ligand, as well as its peptide conjugates [Ru(bqp)(bqpCONH-ahx-FrFKFrFK(Ac)-CONH2)]5+ (Ru-bqp-MPP) and [Ru(bqp) (bqp)(CONH-ahx-RRRRRRRR-CONH2)]10+ (Ru-bqp-R8) that were prepared in an effort to promote live cell/tissue permeability and targeting of the parent. Membrane permeability of both parent and peptide conjugates were compared across 2D cell monolayers; A549, Chinese hamster ovary, human pancreatic cancer (HPAC), and 3D HPAC multicellular tumor spheroids (MCTS) using confocal microscopy. Both the parent complex and peptide conjugates showed exceptional permeability with rapid uptake in both 2D and 3D cell models but with little distinction in permeability or distribution in cells between the parent or peptide conjugates. Unexpectedly, the uptake was temperature independent and so attributed to passive permeation. Both dark and photo-toxicity of the Ru(II) complexes were assessed across cell types, and the parent showed notably low dark toxicity. In contrast, the parent and conjugates were found to be highly phototoxic, with impressive phototoxic indices (PIs) toward HPAC cell monolayers in particular, with PI values ranging from ∼580 to 760. Overall, our data indicate that the Ru(II) parent complex and its peptide conjugates show promise at both cell monolayers and 3D MCTS as photosensitizers for photodynamic therapy. Show less
📄 Full text DOI: 10.1021/acs.inorgchem.3c01982
Nikolić, Stefan, Mihajlović-Lalić, Ljiljana E., Vidosavljević, Marija +3 more · 2019 · Journal of Organometallic Chemistry
Nikolić, Stefan, Mihajlović-Lalić, Ljiljana E., Vidosavljević, Marija, Aranđelović, Sandra, Radulović, Siniša, Grgurić-Šipka, Sanja Show less
📄 Full text DOI: 10.1016/j.jorganchem.2019.120966
Rana, Bidyut K., Roymahapatra, Gourisankar, Das, Himadri Sekhar +8 more · 2021 · Journal of Molecular Structure
Rana, Bidyut K., Roymahapatra, Gourisankar, Das, Himadri Sekhar, Giri, Santanab, Cardoso, Marlon H., Franco, Octávio L., Nakka, Kiran K., Santra, Manas K., Bag, Partha Pratim, Bertolasi, Valerio, Dinda, Joydev Show less
📄 Full text DOI: 10.1016/j.molstruc.2021.130939
Muralisankar, Mathiyan, Chen, Jun-Ru, Haribabu, Jebiti +1 more · 2023 · International Journal of Molecular Sciences
Muralisankar, Mathiyan, Chen, Jun-Ru, Haribabu, Jebiti, Ke, Shyue-Chu Show less
Cisplatin-based chemotherapy is a common regimen for bladder cancer, a life-threatening cancer with more than 500,000 new cases worldwide annually. Like many other metallodrugs, cisplatin causes sever Show more
Cisplatin-based chemotherapy is a common regimen for bladder cancer, a life-threatening cancer with more than 500,000 new cases worldwide annually. Like many other metallodrugs, cisplatin causes severe side effects for its general toxicity. Organoruthenium is known for its structural stability, good anticancer activity, and possible low general toxicity. Here, we have prepared and characterized a series of water-soluble ruthenium-arene complexes with N,N'-chelating ligands: [Ru(II)-η6-arene-(4,4'-(X)2-2,2'-bipyridine)Cl]Cl (arene = p-cymene, X = C4H9 (1), COOH (2), COOCH3 (3), COOC2H5 (4); arene = benzene, X = C4H9 (5), COOCH3 (6), COOC2H5 (7)). These complexes are carefully characterized using single-crystal X-ray diffraction, UV-vis, IR, 1H NMR, and MALDI-TOF MS spectroscopy. Their DFT-calculated structural and thermodynamic properties are consistent with the experimental observations. Biophysicochemical studies of complex interaction with CTDNA and BSA supported by molecular docking simulations reveal suitable properties of 1-7 as anticancer agents. Cytotoxicities of 1-7 are evaluated on healthy human MCF-10a-breast epithelial and African green monkey Vero cells, and carcinoma human HepG-2-hepatic, T24-bladder, and EAhy-926-endothelial cells. All complexes exhibit much higher cytotoxicity for T24 than cisplatin. Particularly, 1 and 2 are also highly selective toward T24. Fluorescence imaging and flow cytometry demonstrate that 1 and 2 penetrate T24 cell membrane and induce early apoptosis at their respective IC50 concentrations, which ultimately lead to cell death. Statistical analysis suggests that the order of importance for T24 cell antiproliferation is protein binding, Log p, Ru-Cl bond length, while DNA binding is the least important. This study is the first to report the anti-bladder cancer efficacy of Ru-arene-2,2'-bipyridine complexes, and may provide insights for rational design of organoruthenium drugs in the enduring search for new chemotherapeutic agents. Show less
📄 Full text DOI: 10.3390/ijms241511896
Qian, Jiayi, Liu, Ruotong, Liu, Ningzhi +5 more · 2022 · Molecules
Qian, Jiayi, Liu, Ruotong, Liu, Ningzhi, Yuan, Chanling, Wu, Qiong, Chen, Yanhua, Tan, Weijun, Mei, Wenjie Show less
A series of arene Ru(II) complexes, [(η6-MeC6H5)Ru(L)Cl]Cl, (L=o-ClPIP, 1; m-ClPIP, 2 and p-ClPIP, 3) (o-ClPIP= Show more
A series of arene Ru(II) complexes, [(η6-MeC6H5)Ru(L)Cl]Cl, (L=o-ClPIP, 1; m-ClPIP, 2 and p-ClPIP, 3) (o-ClPIP=2-(2-chlorophenyl)imidazo[4,5-f][1,10]phenanthroline; m-ClPIP=2-(3-chlorophenyl)imidazo[4,5-f][1,10]phenanthroline; p-ClPIP=2-(4-chlorophenyl)imidazo[4,5-f][1,10]phenanthroline) was synthesized and investigated as a potential apoptosis inducer in chemotherapy. Spectroscopy and molecular docking simulations show that 1 exhibits moderated binding affinity to KRAS G-quadruplex DNA by groove mode. Further, in vitro studies reveal that 1 displays inhibitory activity against MCF-7 growth with IC50 = 3.7 ± 0.2 μM. Flow cytometric analysis, comet assay, and immunofluorescence confirm that 1 can induce the apoptosis of MCF-7 cells and G0/G1 phase arrest through DNA damage. In summary, the prepared arene Ru(II) complexes can be developed as a promising candidate for targeting G-quadruplex structure to induce the apoptosis of breast cancer cells via binding and stabilizing KRAS G-quadruplex conformation on oncogene promoter. Show less
📄 Full text DOI: 10.3390/molecules27103046
Roy, Nilmadhab, Sen‡, Utsav, Moharana‡, Prithvi +6 more · 2021 · Dalton Transactions
Roy, Nilmadhab, Sen‡, Utsav, Moharana‡, Prithvi, Babu, Lavanya Thilak, Kar, Binoy, Vardhan, Seshu, Sahoo, Suban K., Bose, Bipasha, Paira, Priyankar Show less
To unearth suitable complexes that are capable of inhibiting the growth of MDA-MB-468 and Caco-2 cells, 2,2'-bipyrimidine-based luminescent Ru(ii)/Ir(iii)-arene monometallic and homo- and hetero-bimet Show more
To unearth suitable complexes that are capable of inhibiting the growth of MDA-MB-468 and Caco-2 cells, 2,2'-bipyrimidine-based luminescent Ru(ii)/Ir(iii)-arene monometallic and homo- and hetero-bimetallic complexes were synthesized. The complex [(η6-p-cymene)(η5-Cp*)RuIIIrIIICl2(K2-N,N-bipyrimidine)](PF6)2 [LRuIr] exhibited the best potency in both cells along with good GSH stability and strong binding efficacy with the biomolecules. The apoptotic event occurred in MDA-MB-468 cancer cells via cell cycle arrest. Show less
📄 Full text DOI: 10.1039/d1dt01556g
Nikolić, Stefan, Arakelyan, Jemma, Kushnarev, Vladimir +5 more · 2023 · Inorganic Chemistry
Nikolić, Stefan, Arakelyan, Jemma, Kushnarev, Vladimir, Mutasim Alfadul, Samah, Stanković, Dalibor, Kraynik, Yaroslav I., Grgurić-Šipka, Sanja, Babak, Maria V. Show less
Title: Coordination of Ru(II)-Arene Fragments to Dipyridophenazine Ligands Leads to the Modulation of Their In Vitro and In Vivo Anticancer Activity. Abstract: Despite extensive research on the antic Show more
Title: Coordination of Ru(II)-Arene Fragments to Dipyridophenazine Ligands Leads to the Modulation of Their In Vitro and In Vivo Anticancer Activity. Abstract: Despite extensive research on the anticancer properties of Ru complexes with dipyrido[3,2-a:2',3'-c]phenazine (dppz) ligands, their in vivo efficacy is rarely investigated. Aiming to understand whether the coordination of certain half-sandwich Ru(II)-arene fragments might improve the therapeutic potential of dppz ligands, we prepared a series of Ru(II)-arene complexes with the general formula [(η6-arene)Ru(dppz-R)Cl]PF6, where the arene fragment was benzene, toluene, or p-cymene and R was -NO2, -Me, or -COOMe. All compounds were fully characterized by 1H and 13C NMR spectroscopy and high-resolution ESI mass-spectrometry, and their purity was verified by elemental analysis. The electrochemical activity was investigated using cyclic voltammetry. The anticancer activity of dppz ligands and their respective Ru complexes was assessed against several cancer cell lines, and their selectivity toward cancer cells was assessed using healthy MRC5 lung fibroblasts. The substitution of benzene with a p-cymene fragment resulted in a more than 17-fold increase of anticancer activity and selectivity of Ru complexes and significantly enhanced DNA degradation in HCT116 cells. All Ru complexes were electrochemically active in the biologically accessible redox window and were shown to markedly induce the production of ROS in mitochondria. The lead Ru-dppz complex significantly reduced tumor burden in mice with colorectal cancers without inducing liver and kidney toxicity. Show less
📄 Full text DOI: 10.1021/acs.inorgchem.3c00570
Mandal, Arif Ali, Singh, Virendra, Saha, Sukanta +10 more · 2024 · Inorganic Chemistry
Mandal, Arif Ali, Singh, Virendra, Saha, Sukanta, Peters, Silda, Sadhukhan, Tumpa, Kushwaha, Rajesh, Yadav, Ashish Kumar, Mandal, Apurba, Upadhyay, Aarti, Bera, Arpan, Dutta, Arnab, Koch, Biplob, Banerjee, Samya Show less
Title: Green Light-Triggered Photocatalytic Anticancer Activity of Terpyridine-Based Ru(II) Photocatalysts. Abstract: The relentless increase in drug resistance of platinum-based chemotherapeutics ha Show more
Title: Green Light-Triggered Photocatalytic Anticancer Activity of Terpyridine-Based Ru(II) Photocatalysts. Abstract: The relentless increase in drug resistance of platinum-based chemotherapeutics has opened the scope for other new cancer therapies with novel mechanisms of action (MoA). Recently, photocatalytic cancer therapy, an intrusive catalytic treatment, is receiving significant interest due to its multitargeting cell death mechanism with high selectivity. Here, we report the synthesis and characterization of three photoresponsive Ru(II) complexes, viz., [Ru(ph-tpy)(bpy)Cl]PF6 (Ru1), [Ru(ph-tpy)(phen)Cl]PF6 (Ru2), and [Ru(ph-tpy)(aip)Cl]PF6 (Ru3), where, ph-tpy = 4'-phenyl-2,2':6',2″-terpyridine, bpy = 2,2'-bipyridine, phen = 1,10-phenanthroline, and aip = 2-(anthracen-9-yl)-1H-imidazo[4,5-f][1,10] phenanthroline, showing photocatalytic anticancer activity. The X-ray crystal structures of Ru1 and Ru2 revealed a distorted octahedral geometry with a RuN5Cl core. The complexes showed an intense absorption band in the 440-600 nm range corresponding to the metal-to-ligand charge transfer (MLCT) that was further used to achieve the green light-induced photocatalytic anticancer effect. The mitochondria-targeting photostable complex Ru3 induced phototoxicity with IC50 and PI values of ca. 0.7 μM and 88, respectively, under white light irradiation and ca. 1.9 μM and 35 under green light irradiation against HeLa cells. The complexes (Ru1-Ru3) showed negligible dark cytotoxicity toward normal splenocytes (IC50s > 50 μM). The cell death mechanistic study revealed that Ru3 induced ROS-mediated apoptosis in HeLa cells via mitochondrial depolarization under white or green light exposure. Interestingly, Ru3 also acted as a highly potent catalyst for NADH photo-oxidation under green light. This NADH photo-oxidation process also contributed to the photocytotoxicity of the complexes. Overall, Ru3 presented multitargeting synergistic type I and type II photochemotherapeutic effects. Show less
📄 Full text DOI: 10.1021/acs.inorgchem.4c00650
Zhu, Li-Gang, Wang, Zhen-Feng, Gao, Yue +5 more · 2019 · Inorganic Chemistry Communications
Zhu, Li-Gang, Wang, Zhen-Feng, Gao, Yue, Qin, Qi-Pin, Huang, Xiao-Ling, Tan, Ming-Xiong, Zeng, Chu-Jie, Zou, Bi-Qun Show less
📄 Full text DOI: 10.1016/j.inoche.2019.107537
Sun, Jing, Chen, Wen-Xiu, Song, Xing-Dong +5 more · 2018 · Anti-Cancer Agents in Medicinal Chemistry
Sun, Jing, Chen, Wen-Xiu, Song, Xing-Dong, He, Shu-Fen, Chen, Jia-Xi, Mei, Jun, Zhu, Xiao-Xian, Wu, Tie Show less

Description

Two new ruthenium(II) complexes containing guanidinium as ligands, [Ru(dip)2 (L1)]3+ (Ru1) and [Ru(dip)2(L2)]3+ (Ru2) (dip=4,7-diphenyl-1,10-phenanthroline; L1=1-(4-(1H-imidazo[4,5 Show more

Description

Two new ruthenium(II) complexes containing guanidinium as ligands, [Ru(dip)2 (L1)]3+ (Ru1) and [Ru(dip)2(L2)]3+ (Ru2) (dip=4,7-diphenyl-1,10-phenanthroline; L1=1-(4-(1H-imidazo[4,5- f][1,10]phenanthrolin-2-yl)phenyl)guanidine cation; L2 = 1-(3-(1H-imidazo[4,5-f][1,10]phenanthrolin-2-yl) phenyl)guanidine cation) have been synthesized and characterized. Both complexes display higher cytotoxicity against several cancer cell lines compared to cisplatin and are less cytotoxic on the nontumorigenic cell line LO2. Intracellular distribution studies show that these complexes are selectively localized in the cytoplasm.

Findings

Further analysis revealed that Ru1 and Ru2 had no obvious effects on the cell cycle and induced apoptosis in HeLa cells via the mitochondrial pathway, which involved reactive oxygen species (ROS) accumulation, mitochondrial dysfunction, and Bcl-2 family member activation. Taken together, the two complexes have the potential to be utilized as anticancer agents. Show less
📄 Full text DOI: 10.2174/1871520617666170419122056
Carvalho, Diogo E. L., Oliveira, Katia M., Bomfim, Larissa M. +4 more · 2020 · ACS Omega
Carvalho, Diogo E. L., Oliveira, Katia M., Bomfim, Larissa M., Soares, Milena B. P., Bezerra, Daniel P., Batista, Alzir A., Correa, Rodrigo S. Show less
Two new Ru(II)-based complexes containing 2-thiouracil derivatives, known as 2-thiouracil (2TU) and 6-methyl-2-thiouracil (6m2TU), were synthesized using cis,trans-[RuCl2(PPh3Show more
Two new Ru(II)-based complexes containing 2-thiouracil derivatives, known as 2-thiouracil (2TU) and 6-methyl-2-thiouracil (6m2TU), were synthesized using cis,trans-[RuCl2(PPh3)2(bipy)] as a precursor. The obtained compounds with a general formula trans-[Ru(2TU)(PPh3)2(bipy)]PF6 (1) and trans-[Ru(6m2TU)(PPh3)2(bipy)]PF6 (2) were characterized by analytical techniques such as NMR, UV-vis, and IR spectroscopies, elementary analysis, mass spectrometry, and single-crystal X-ray diffraction. Moreover, the investigation of the complexes-DNA interaction were carried out using spectrophotometric titrations and showed that the complexes present a weak interaction with this biomolecule. The compounds were evaluated against HL-60, K-562, HepG2, and B16-F10 cancer cells and against noncancer cells (PBMCs). The results of the biological assay revealed that complex 2 is more promising than complex 1. Finally, the present study suggests that complexes 1 and 2 causes cell death by apoptosis, significantly increasing the percentage of apoptotic HL-60 cells, in which the compounds altered the cell cycle, reducing the cells in G1/G0, G2/M, and S phases. Show less
📄 Full text DOI: 10.1021/acsomega.9b01921
Ohorodnik, Yulia M., Alexander, Sikalov A., Khomenko, Dmytro M. +5 more · 2022 · Transition Metal Chemistry
Ohorodnik, Yulia M., Alexander, Sikalov A., Khomenko, Dmytro M., Doroshchuk, Roman O., Raspertova, Ilona V., Shova, Sergiu, Babak, Maria V., Lampeka, Rostyslav D. Show less
📄 Full text DOI: 10.1007/s11243-022-00503-w
Purkait, Kallol, Mukherjee, Arindam · 2020 · Inorganica Chimica Acta
📄 Full text DOI: 10.1016/j.ica.2019.119361
Rana, Bidyut K., Roymahapatra, Gourisankar, Das, Himadri Sekhar +8 more · 2021 · Journal of Molecular Structure
Rana, Bidyut K., Roymahapatra, Gourisankar, Das, Himadri Sekhar, Giri, Santanab, Cardoso, Marlon H., Franco, Octávio L., Kiran, N.K., Santra, Manas K., Bag, Partha Pratim, Bertolasi, Valerio, Dinda, Joydev Show less
📄 Full text DOI: 10.1016/j.molstruc.2020.129822
Yang, Yuliang, Gao, Ya, Sun, Yanyan +2 more · 2023 · Journal of Medicinal Chemistry
Yang, Yuliang, Gao, Ya, Sun, Yanyan, Zhao, Jian, Gou, Shaohua Show less
A series of novel ruthenium(II) and iridium(III) complexes (Ru1-Ru3 and Ir1-Ir3) with different ancillary ligands and a PARP-1-inhibitory chelating ligand 2-(2,3-dibromo-4, Show more
A series of novel ruthenium(II) and iridium(III) complexes (Ru1-Ru3 and Ir1-Ir3) with different ancillary ligands and a PARP-1-inhibitory chelating ligand 2-(2,3-dibromo-4,5-dimethoxybenzylidene)hydrazine-1-carbothioamide (L1) were designed and prepared. The target complexes were structurally characterized by NMR and ESI-MS techniques. Among them, the crystal and molecular structures of Ir1 and Ir2 were also determined by X-ray crystallography. These complexes retained the PARP-1 enzyme inhibitory effect of L1 and showed potent antiproliferative activity on the tested cancer cell lines. The ruthenium(II) complexes Ru1-Ru3 were found to be more cytotoxic than the iridium(III) complexes Ir1-Ir3. Further investigations revealed that the most active complex Ru3 induced apoptosis in MCF-7 cells by multiple modes, inclusive of inducing DNA damage, suppressing DNA damage repair, disturbing cell cycle distribution, decreasing the mitochondrial membrane potential, and increasing the intracellular reactive oxygen species levels. Show less
📄 Full text DOI: 10.1021/acs.jmedchem.3c01156
He, Shu-Fen, Chen, Bing-Bing, Hao, Ye-Hua +5 more · 2018 · Inorganica Chimica Acta
He, Shu-Fen, Chen, Bing-Bing, Hao, Ye-Hua, Chen, Jia-Xi, Song, Xing-Dong, Mei, Jun, Chen, Wen-Xiu, Sun, Jing Show less
📄 Full text DOI: 10.1016/j.ica.2018.05.006
Shridhar, P., Purushothaman, S., Ganeshpandian, M. · 2020 · Russian Journal of General Chemistry
📄 Full text DOI: 10.1134/S1070363220110249
Mukherjee, Arpan, Koley, Tuhin Subhra, Chakraborty, Ayan +2 more · 2021 · Chemistry – An Asian Journal
Mukherjee, Arpan, Koley, Tuhin Subhra, Chakraborty, Ayan, Purkait, Kallol, Mukherjee, Arindam Show less
Half-sandwich RuII complexes, [(YZ)RuII6 -arene)(X)]+, (YZ=chelating bidentate ligand, X=halide), with N,N and N,O coordination (1-9) show significant antiprolifera Show more
Half-sandwich RuII complexes, [(YZ)RuII6 -arene)(X)]+, (YZ=chelating bidentate ligand, X=halide), with N,N and N,O coordination (1-9) show significant antiproliferative activity against the metastatic triple-negative breast carcinoma (MDA-MB-231). 3-aminobenzoic acid or its methyl ester is used in all the ligands while varying the aldehyde for N,N and N,O coordination. In the N,N coordinated complex the coordinated halide(X) is varied for enhancing stability in solution (X=Cl, I). Rapid aquation and halide exchange of the pyridine analogues, 2 and 3, in solution are a major bane towards their antiproliferative activity. Presence of free -COOH group (1 and 4) make complexes hydrophilic and reduces toxicity. The imidazolyl 3-aminobenzoate based N,N coordinated 5 and 6 display better solution stability and efficient antiproliferative activity (IC50 ca. 2.3-2.5 μM) compared to the pyridine based 2 and 3 (IC50 >100 μM) or the N,O coordinated complexes (7-9) (IC50 ca. 7-10 μM). The iodido coordinated, 6, is resistant towards aquation and halide exchange. The N,O coordinated 7-9 underwent instantaneous aquation at pH 7.4 generating monoaquated complexes stable for at least 6 h. Complexes 5 and 6, bind to 9-ethylguanine (9-EtG) showing propensity to interact with DNA bases. The complexes may kill via apoptosis as displayed from the study of 8. The change in coordination mode and the aldehyde affected the solution stability, antiproliferative activity and mechanistic pathways. The N,N coordinated (5 and 6) exhibit arrest in the G2/M phase while the N,O coordinated 8 showed arrest in the G0/G1 phase. Show less
📄 Full text DOI: 10.1002/asia.202100917
Tsovaltzi, E., Malamidou-Xenikaki, E., Dalezis, P. +4 more · 2017 · New Journal of Chemistry
Tsovaltzi, E., Malamidou-Xenikaki, E., Dalezis, P., Hatzidimitriou, A., Lazarides, T., Trafalis, D., Sarli, V. Show less
📄 Full text DOI: 10.1039/c7nj02162c
Shutkov, Ilya A., Okulova, Yulia N., Mazur, Dmitrii M. +6 more · 2023 · Pharmaceutics
Shutkov, Ilya A., Okulova, Yulia N., Mazur, Dmitrii M., Melnichuk, Nikolai A., Babkov, Denis A., Sokolova, Elena V., Spasov, Alexander A., Milaeva, Elena R., Nazarov, Alexey A. Show less
The combination of one molecule of organic and metal-based fragments that exhibit antitumor activity is a modern approach in the search for new promising drugs. In this work, biologically active ligan Show more
The combination of one molecule of organic and metal-based fragments that exhibit antitumor activity is a modern approach in the search for new promising drugs. In this work, biologically active ligands based on lonidamine (a selective inhibitor of aerobic glycolysis used in clinical practice) were introduced into the structure of an antitumor organometallic ruthenium scaffold. Resistant to ligand exchange reactions, compounds were prepared by replacing labile ligands with stable ones. Moreover, cationic complexes containing two lonidamine-based ligands were obtained. Antiproliferative activity was studied in vitro by MTT assays. It was shown that the increase in the stability in ligand exchange reactions does not influence cytotoxicity. At the same time, the introduction of the second lonidamine fragment approximately doubles the cytotoxicity of studied complexes. The ability to induce apoptosis and caspase activation in tumour cell MCF7 was studied by employing flow cytometry. Show less
📄 Full text DOI: 10.3390/pharmaceutics15051366
del Pino, José Manuel Veiga, Scalambra, Franco, Bermejo-Casadesús, Cristina +3 more · 2023 · Journal of Inorganic Biochemistry
del Pino, José Manuel Veiga, Scalambra, Franco, Bermejo-Casadesús, Cristina, Massaguer, Anna, García-Maroto, Federico, Romerosa, Antonio Show less
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) ha Show more
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. Show less
📄 Full text DOI: 10.1016/j.jinorgbio.2023.112291
Dao, Anyi, Wu, Haorui, Wei, Siqi +1 more · 2023 · Physical Chemistry Chemical Physics
Dao, Anyi, Wu, Haorui, Wei, Siqi, Huang, Huaiyi Show less
Title: Novel Ru(II) complexes with multiple anticancer photoreactivity: ligand exchange, photoredox catalysis, reactive oxygen generation and endoperoxide formation. Abstract: The hypoxic microenviro Show more
Title: Novel Ru(II) complexes with multiple anticancer photoreactivity: ligand exchange, photoredox catalysis, reactive oxygen generation and endoperoxide formation. Abstract: The hypoxic microenvironment and drug resistance of cancer cells have become a huge threat for clinical anticancer therapy. Anticancer phototherapy providing spatial and temporal control over drug activation may conquer this problem. Herein, we report a novel photoactivated Ru(II) complex (Ru2) with multiple activities including photochemotherapy, photodynamic and photocatalytic therapy, and endoperoxide formation. Upon white light irradiation, Ru2 can dissociate the coordinating ligands and form endoperoxides, produce diverse reactive oxygen species and catalytically oxidize cellular coenzymes. As a result, Ru2 shows promising antiproliferation activity toward cisplatin and 5-fluorouracil resistant tumor cell lines under normoxia and hypoxia. The multifunctional design strategy of metal-based anticancer drugs offers novel efficient therapeutics to combat drug-resistant cancer cells under hypoxia. Show less
📄 Full text DOI: 10.1039/d3cp02346j