Publications by authors named "Quirante J"

The relevance of the asymmetric Biginelli reaction (ABR) has been increased in this century, due to the pharmacological application of its products. This review focuses predominantly on articles published in the period from 2015 to 2024 on asymmetric synthetic advances in the formation of dihydropyrimidinones (DHPMs), dihydropyrimidinethiones (DHPMTs), and related compounds. The relevant bibliography on general processes in the Biginelli reaction and some methods of separation of isomers have also been referenced.

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COVID-19 is a persistent public health concern due to the emergence of more virulent and contagious variants resulting from mutations in the spike protein. The spike protein in newer variants, including Delta and Omicron, may be less sensitive to neutralizing antibodies and have a more favorable binding environment to the human ACE2 receptor. In the interest of identifying anti-COVID-19 allosteric drugs, a network-based approach based on coarse-grained molecular dynamics (CGMD) simulations, in complement to pocket-based analysis, is used to identify the possible allosteric pathways of the wild-type, Delta, and Omicron BA.

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This study aims to investigate the effect of the menstrual cycle (MC) on exercise performance across the power-duration relationship (PDR). We hypothesized females would exhibit greater variability in the PDR across the MC than males across a similar timespan, with critical power (CP) and work-prime (') being lower during the early follicular phase than the late follicular and midluteal phases. Seven eumenorrheic, endurance-trained female adults performed multiple constant-load-to-task-failure and maximum-power tests at three timepoints across the MC (early follicular, late follicular, and midluteal phases).

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Platinum-based chemotherapy persists to be the only effective therapeutic option against a wide variety of tumours. Nevertheless, the acquisition of platinum resistance is utterly common, ultimately cornering conventional platinum drugs to only palliative in many patients. Thus, encountering alternatives that are both effective and non-cross-resistant is urgent.

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The synthesis of three new cyclometallated platinum(ii) compounds containing a para-tolyl ligand and a tridentate [C,N,N'] (cm1) or a bidentate [C,N] ligand and an additional ligand such as SEt2 (cm2) or PPh3 (cm3) is reported. The X-ray molecular structure of platinum(ii) compound cm3 is also presented. Intermolecular oxidative addition of methyl iodide or iodine upon cm1, cm2 and cm3 produced six novel cyclometallated platinum(iv) compounds.

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The regioselectivity of the dinuclear-Cu(I)-catalyzed version of the Huisgen reaction, abbreviated in this paper to CuAAC, was analyzed using quantum topological methods in order to study how the electronic charge distribution evolved along different reaction paths. Electronic densities were computed at the LC-wPBE/6-311++G(2d,2p)//LC-wPBE/6-311++G(d,p) level. The presence of two copper ions in the catalyst was found to lead to an electrophilic site in the external alkyne carbon that, in a generalized Sharpless-type mechanism, undergoes an initial donor-acceptor interaction with the azide molecule, but with an inverted electrophile-nucleophile pattern when compared with the corresponding mononuclear process (CuAAC).

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The synthesis of six novel cyclometallated platinum(iv) iodido complexes is accomplished by intermolecular oxidative addition of methyl iodide (compounds 2a-2c) or iodine (compounds 3a-3c) upon cyclometallated platinum(ii) compounds [PtX{(CH)N(CH)NCH(4-ClCH)}] (1a-1c: X = Cl, CH or I). The X-ray molecular structures of platinum(ii) compound 1c and platinum(iv) compounds 3b and 3a' (an isomer of 3a) are reported. The cytotoxic activity against a panel of human adenocarcinoma cell lines (A-549 lung, MDA-MB-231 and MCF-7 breast, and HCT-116 colon), DNA interaction, topoisomerase I, IIα, and cathepsin B inhibition, and cell cycle arrest, apoptosis and ROS generation of the investigated complexes are presented.

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A series of cyclometallated platinum(IV) compounds (3a, 3a' and 3b') with a meridional [C,N,N'] terdentate ligand, featuring an halido and an aryl group in the axial positions has been evaluated for electrochemical reduction and preliminary biological behavior against a panel of human adenocarcinoma (A-549 lung, HCT-116 colon, and MCF-7 breast) cell lines and the normal bronquial epithelial BEAS-2B cells. Cathodic reduction potentials (shifting from -1.463 to -1.

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The synthesis and preliminary biological evaluation of neutral and cationic platinum derivatives of chiral 1-(1-naphthyl)ethylamine are reported, namely cycloplatinated neutral complexes [PtCl{(R or S)-NH(2)CH(CH(3))C(10)H(6)}(L)] [L = SOMe(2) ( 1-R or 1-S ), L = PPh(3) (2-R or 2-S), L = P(4-FC(6)H(4))(3) (3-R), L = P(CH(2))(3)N(3)(CH(2))(3) (4-R)], cycloplatinated cationic complexes [Pt{(R)-NH(2)CH(CH(3))C(10)H(6)}{L}]Cl [L = Ph(2)PCH(2)CH(2)PPh(2) (5-R), L = (C(6)F(5))(2)PCH(2)CH(2)P(C(6)F(5))(2) (6-R)] and the Pt(ii) coordination compound trans-[PtCl(2){(R)-NH(2)CH(CH(3))C(10)H(6)}(2)] (7-R). The X-ray molecular structure of 7-R is reported. The cytotoxic activity against a panel of human adenocarcinoma cell lines (A-549 lung, MDA-MB-231 and MCF-7 breast, and HCT-116 colon), cell cycle arrest and apoptosis, DNA interaction, topoisomerase I and cathepsin B inhibition, and Pt cell uptake of the studied compounds are presented.

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The distinct role of the Cu(I) in the Huisgen dipolar cycloaddition of azides to alkynes (denoted as CuAAC) is disclosed by following the evolution of the topology of the Laplacian of the electronic charge density, ∇(2)ρ(r), and its gradient vector field, ∇∇(2)ρ(r), along the reaction coordinate with several density functionals (wB97XD, LCwPBE, M06-2X, M06-L, B3LYP) and the 6-311++G(d,p) basis set. Remarkably, in view of the topology of ∇(2)ρ(r) and ∇∇(2)ρ(r), the mechanism appears to be diverse (asynchronous concerted or stepwise) depending on the reaction conditions. Overall, the catalyst orchestrates first the formation of the external N-C and subsequently the internal one by following alternatively a pericyclic-like or a pseudopericyclic-like mechanism.

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Twelve cyclometallated palladium(II) complexes containing primary aromatic amines [benzylamine (a), (R)-1-(1-naphthyl)ethylamine (b) and 2-phenylaniline (c)] as anionic bidentate (C,N)(-) ligands have been evaluated against a panel of human adenocarcinoma cell lines (A549 lung, MDA-MB231 and MCF7 breast, and the cisplatin resistant HCT116 colon). The results revealed a remarkable antiproliferative activity of the triphenylphosphane mononuclear compounds 3-4 (series a, b, c) and the best inhibition was provided for 3c and 4c with the 2-phenylaniline ligand and a six membered chelate ring. Interestingly, 3c and 4c were 14 and 19 times more potent than cisplatin for the inhibition of the cisplatin resistant HCT116 human adenocarcinoma cell line, respectively.

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Article Synopsis
  • The study explores the properties of new cyclo-ortho-palladated and -platinated compounds, including their anticancer, antibacterial, and antioxidant activities.
  • Compounds 3, 4, and 5 showed remarkable cytotoxicity, being four times more effective than cisplatin against specific cancer cell lines.
  • Additionally, all the compounds impact DNA structure similarly to cisplatin but are less effective as cathepsin B inhibitors.
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New density functional theory (DFT) calculations show that the nature of the mechanism for the classical copper-catalyzed cycloaddition of azide to terminal alkynes--widely known as the CuAAC reaction--also depends on the ligands attached to Cu(I). Further, the topological evolution of the charge density, ρ (r), the laplacian of ρ (r), ∇²ρ(r), and its gradient field along the reaction coordinate shed light on the regioselectivity of the process. The performance of most suitable functionals for DFT calculations in this kind of system was tested.

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Cisplatin is a platinum-based compound that acts as an alkylating agent and is used to treat a variety of malignant tumors including lung cancer. As cisplatin has significant limitations in the clinic, alternative platinum compounds such as cycloplatinated complexes have been considered as attractive anti-tumor agents. Here, we report the antiproliferative activity of a novel diastereomerically pure cycloplatinated complex (Sp,1S,2R)-[Pt{(κ(2)-C,N)[(η(5)-C5H3)-CH[double bond, length as m-dash]N-CH(Me)-CH(OH)-C6H5]Fe(η(5)-C5H5)}Cl(DMSO)] 6a, against A549 non-small cell lung cancer.

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The cytotoxic activity of two series of platinum(II) complexes containing the polyfunctional imines R(1)-CHN-R(2) [R(1)=phenyl or ferrocenyl unit and R(2)=(CH2)n-CH2-NMe2 where n=1 or 2) (1 and 2) or C6H4-2-SMe (3)] acting as a bidentate (N,N') (4-7) or terdentate [C(phenyl or ferrocenyl),N,N'](-) (8-10) or [C(ferrocenyl),N,S](-) ligand (11) in front of A549 lung, MDA-MB231 breast and HCT116 colon human adenocarcinoma cell lines is reported. The results reveal that most of the platinum(II) complexes are active against the three assayed lines and compounds 6, 7 and the platinacycles 10 and 11 exhibit a remarkable antiproliferative activity, even greater than cisplatin itself, in the cisplatin resistant HCT116 human cancer cell line. Electrophoretic DNA migration studies showed that most of them modify the DNA tertiary structure in a similar way as the reference cisplatin.

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The study of the reactivity of (1S,2R) [(η(5)-C(5)H(5))Fe{[(η(5)-C(5)H(4)) CHNCH(Me)CH(OH)C(6)H(5)}] (1a) with cis-[PtCl(2)(DMSO)(2)] under different experimental conditions has allowed to isolate and characterize three pairs of isomeric and diastereomerically pure platinum(II) complexes. Two of the pairs are the trans- and cis- isomers of (1S,2R)[Pt{(η(5)-C(5)H(5))Fe[(η(5)-C(5)H(4))CHNCH(Me)CH(OH)C(6)H(5)]}Cl(2)(DMSO)] [trans-(2a) and cis-(3a), respectively], and of (1S,2R) [Pt{(κ(2)-N,O)(η(5)-C(5)H(5))Fe[(η(5)-C(5)H(4))CHNCH(Me)CH(O)C(6)H(5)]}Cl(DMSO)], {trans-(Cl, N) in (4a)} or a cis-(Cl, N) {in (5a)}; while the third one is formed by platinacycles: [Pt{(κ(2)-C,N[(η(5)-C(5)H(3))]CHN-CH(Me)CH(OH)C(6)H(5)]Fe(η(5)-C(5)H(5))}Cl(DMSO)] with different planar chirality [S(p) (in 6a) or R(p) (in 7a)]. The crystal structures of compounds 2a, 3a, 5a and 6a are also reported.

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A series of seven-membered cyclometallated Pt(II) complexes containing a terdentate [C,N,N'] ligand (1a-1c and 2a-2c) have been developed as potential monofunctional DNA binding agents. By reactions of cis-[Pt(4-C(6)H(4)Me)(2)(μ-SEt(2))](2) or cis-[Pt(C(6)H(5))(2)(SMe(2))(2)] with imines 2-ClC(6)H(4)CHNCH(2)CH(2)NMe(2) (b) or 2-F,6-ClC(6)H(3)CH=NCH(2)CH(2)NMe(2) (c) the new compounds 1b, 1c and 2c were synthesized and characterized. Complex 1b and 1c were further characterized by X-ray crystallography.

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The study of the reactivity of three 1-(2-dimethylaminoethyl)-1H-pyrazole derivatives of general formula [1-(CH(2))(2)NMe(2)}-3,5-R(2)-pzol] {where pzol represents pyrazole and R=H (1a), Me (1b) or Ph (1c)} with [MCl(2)(DMSO)(2)] (M=Pt or Pd) under different experimental conditions allowed us to isolate and characterize cis-[M{κ(2)-N,N'-{[1-(CH(2))(2)NMe(2)}-3,5-R(2)-pzol])}Cl(2)] {MM=PtPt (2a-2c) or Pd (3a-3c)} and two cyclometallated complexes [M{κ(3)-C,N,N'-{[1-(CH(2))(2)NMe(2)}-3-(C(5)H(4))-5-Ph-pzol])}Cl] {M=Pt(II) (4c) or Pd(II) (5c)}. Compounds 4c and 5c arise from the orthometallation of the 3-phenyl ring of ligand 1c. Complex 2a has been further characterized by X-ray crystallography.

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The isatin core structure was found to be a novel chemical scaffold in transthyretin (TTR) fibrillogenesis inhibitor design. Among the series of isatin analogues prepared and tested, the nitro compound 1,3-dihydro-3-[(4-nitrophenyl)imino]-2H-indol-2-one (2r) is as potent as triiodophenol, which is one of the most active known TTR inhibitors. The E/Z stereochemistry of these molecules in solution, elucidated by (1)H NMR, does not influence their biological activity.

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Indazolium-3-carboxylate is a molecule that can be found as the nucleus of several pseudo-cross-conjugated mesomeric betaines, such as the alkaloid nigellicine. From a chemical point of view, one of the more interesting properties of this class of molecules is the possibility of forming an N-heterocyclic carbene by thermal decarboxylation. In this paper we have studied the carbene generation by decarboxylation of 1,2-dimethyl indazolium-3-carboxylate, using vibrational (infrared and Raman) spectroscopy and quantum chemistry calculations.

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The vibrational Raman spectra of a decathiophene are provided in three relevant oxidations states: for the radical cation, its class III mixed valence system and its "frozen, -170 degrees C" class II MV analogue; for the dication, its singlet biradical pi-dimer and its "hot, +70 degrees C" magnetically active triplet excited state. Everything is compatible with interpentathiophene charge delocalization occurring at distances of 4-5 A similar to those found in the crystals of pi-stacked oligothiophenes. This stresses the interest of this spectroscopic tool for the analyses of electronic processes in crystals or in thin films of conjugated organic molecules.

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Synthesis of the tricyclic core of madangamine alkaloids has been achieved in a 10-step sequence starting from a 4-(aminomethyl)anisole derivative. A Birch reduction and acylation with cyanoacetic acid followed by an intramolecular Michael process renders a polyfunctionalized cis-perhydroisoquinoline. A diastereoselective allylation and reduction of amide, nitrile, and ketone groups leads to a bicyclic alcohol, which undergoes aminocyclization through the nosyl derivative to the diazatricyclic ring.

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The 1H and 13C NMR spectra of six 5-substituted 2-azabicyclo[2.2.2]octane derivatives were fully assigned by COSY and HSQC experiments.

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A series of cis and trans 3beta-aryl-2-carbomethoxy-6-azabicyclo[3.2.1]octanes, with different substitution at the para-position of the aryl group, were synthesized and examined for reuptake inhibition at the dopamine transporter (DAT).

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alpha-Amino selenoester-tethered electronically poor alkenes on treatment with tributyltin hydride or TTMSS undergo intramolecular radical cyclization to provide 6-azabicyclo[3.2.1]octanes through 1-aminomethyl radical intermediates.

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