Publications by authors named "Raoni S Goncalves"

Repurposing of drugs to treat tuberculosis (TB) has been considered an alternative to overcome the global TB epidemic, especially to combat drug-resistant forms of the disease. Mefloquine has been reported as a potent drug to kill drug-resistant strains of Mycobacterium tuberculosis. In addition, mefloquine-derived molecules have been synthesised and their effectiveness against mycobacteria has been assessed.

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Functionalized 3-trifluoromethyl-2-isoxazolines and 3-trifluoromethylisoxazoles were easily prepared from trifluoromethyl aldoxime 2 under mild conditions by using DIB as oxidant. Theoretical studies of the reactivity of trifluoroacetonitrile oxide 4 toward olefins and alkynes were carried out. The 3-trifluoromethyl-2-isoxazolines were ring-opened with NaBH4 and NiCl2 to yield the corresponding trifluoromethylated γ-amino alcohols.

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A series of 23 racemic mefloquine-oxazolidine derivatives, 4-[3-(aryl)hexahydro[1,3]oxazolo[3,4-a]pyridin-1-yl]-2,8-bis(trifluoromethyl)quinolines, derived from (R*, S*)-(±)-mefloquine and arenealdehydes, have been evaluated for their activity against four cancer cell lines (HCT-8, OVCAR-8, HL-60, and SF-295). Good cytotoxicities have been determined with IC50 values ranging from 0.59 to 4.

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A series of twenty-three N-acylhydrazones derived from isoniazid (INH 1-23) have been evaluated for their in vitro antibacterial activity against INH- susceptible strain of M. tuberculosis (RG500) and three INH-resistant clinical isolates (RG102, RG103 and RG113). In general, derivatives 4, 14, 15 and 16 (MIC=1.

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Article Synopsis
  • The molecule C(22)H(24)F(6)N(2)O(3) has a unique folded structure where its carboxylate group overlaps with the quinoline group, resulting in a dihedral angle of 41.64° between the two planes.
  • In the crystal structure, helical chains are formed by O-H⋯O hydrogen bonds that align along the a-axis direction.
  • Additionally, some fluorine atoms in the CF(3) group are disordered, with the predominant orientation having a site occupancy of 0.824.
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The title mol-ecule, C(25)H(22)F(6)N(2)O(3), adopts an open conformation whereby the quinoline and carboxyl-ate ester groups are orientated in opposite directions but to the same side of the piperidine ring so that the mol-ecule has an approximate U-shape. The piperidine ring adopts a distorted boat conformation. In the crystal, inversion dimers linked by pairs of O-H⋯O hydrogen bonds generate R(2) (2)(14) loops.

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Ten new mefloquine-oxazolidine derivatives, 4-[(1S,8aR)-3-(aryl)hexahydro[1,3]oxazolo[3,4-a]pyridin-1-yl]-2,8-bis(trifluoromethyl)quinoline (1: aryl=substituted phenyl) and 4-[(1S,8aR)-3-(heteroaryl)hexahydro[1,3]oxazolo[3,4-a]pyridin-1-yl]-2,8-bis(trifluoromethyl)quinoline [2: heteroaryl=5-nitrothien-2-yl (2a); 5-nitrofuran-2-yl (2b) and 4H-imidazol-2-yl) (2c)], have been synthesized and evaluated against Mycobacterium tuberculosis. Compounds 1f (aryl=3-ethoxyphenyl), 1g (Ar=3,4,5-(MeO)(3)-C(6)H(2)) and 2c were slightly more active than mefloquine (MIC=33μM) with MICs=24.5, 22.

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The title mefloquine derivative has been crystallized as its 1:1 methanol solvate, C(19)H(18)F(6)N(2)O(2)·CH(3)OH. Each of the meth-ine-hydroxyl residue [the C-C-C-O torsion angle is -16.35 (17) °] and the piperidinyl group [distorted chair conformation] lies to one side of the quinolinyl ring system.

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Article Synopsis
  • The compound discussed is a mefloquine-oxazolidine derivative with the molecular formula C(24)H(20)F(6)N(2)O(2).
  • The molecular structure includes an oxazoline ring in an envelope conformation and a piperidine ring in a chair conformation, with certain residues oriented away from the quinoline group's C(6) ring.
  • The crystal structure exhibits several types of interactions, including intramolecular hydrogen bonds and various intermolecular interactions such as C-H⋯O, C-H⋯F, and C-H⋯π bonds.
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Article Synopsis
  • The study presents 16 newly synthesized mefloquine derivatives created by reacting mefloquine with benzaldehydes.
  • These derivatives showed meaningful antitubercular activity with a minimum inhibitory concentration (MIC) of 12.6 μM.
  • Importantly, the compounds were non-cytotoxic, indicating their potential for developing new anti-TB treatments.
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Two series of N'-(E)-heteroaromatic-isonicotinohydrazide derivatives (3a-f and 4a-b) and 1-(7-chloroquinolin-4-yl)-2-[(heteroaromatic)methylene]hydrazone derivatives (5a-f and 6a-b) have been synthesized and evaluated for their in vitro antibacterial activity against Mycobacterium tuberculosis H37Rv. Several compounds were noncytotoxic and exhibited significant minimum inhibitory concentration (MIC) activity (3.12, 2.

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The carboxylic acid residue in the title compound, C(6)H(4)BrNO(2), is twisted out of the plane of the other atoms, as indicated by the (Br)C-C-C-O(carbon-yl) torsion angle of -20.1 (9)°. In the crystal, supra-molecular chains mediated by O-H⋯N hydrogen bonds are formed with base vector [201] and C-H⋯O inter-actions reinforce the packing.

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