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Determination of some antimalarial aminoquinolines by vanadium(V) titration . Jamaluddin, S. Ahmad, I. C. Shukla
, Analyst
, 1984
, 109
, 1103
Site-selective C5–H and N –H alkylation of unprotected 8-aminoquinolines . Ozge Turbedaroglu, Ferruh Lafzi, Haydar Kilic
, Chem. Commun.
, 2022
, 58
, 4893
Antimalarial 2-alkoxy-6-chloro-9-dialkylaminoalkylamino-1 : 10-diaza-anthracenes . D. M. Besly, A. A. Goldberg
, J. Chem. Soc.
, 1954
, 2448
The direct C–H alkenylation of quinoline N -oxides as a suitable strategy for the synthesis of promising antiparasitic drugs . Vladimir V. Kouznetsov, Leonor Y. Vargas Méndez, Carlos E. Puerto Galvis, Marlyn C. Ortiz Villamizar
, New J. Chem.
, 2020
, 44
, 12
Visible-light-mediated synthesis of quinolines . Ajay Kumar Dhiya, Aparna Monga, Anuj Sharma
, Org. Chem. Front.
, 2021
, 8
, 1657
Triazine–pyrimidine based molecular hybrids: synthesis, docking studies and evaluation of antimalarial activity . Deepak Kumar, Shabana I. Khan, Prija Ponnan, Diwan S. Rawat
, New J. Chem.
, 2014
, 38
, 5087
Promising nanomaterials in the fight against malaria . Livia Neves Borgheti-Cardoso, María San Anselmo, Elena Lantero, Alexandre Lancelot, José Luis Serrano, Silvia Hernández-Ainsa, Xavier Fernàndez-Busquets, Teresa Sierra
, J. Mater. Chem. B
, 2020
, 8
, 9428
Iodine-mediated C–N and N–N bond formation: a facile one-pot synthetic approach to 1,2,3-triazoles under metal-free and azide-free conditions . Geeta Sai Mani, Kavitha Donthiboina, Siddiq Pasha Shaik, Nagula Shankaraiah, Ahmed Kamal
, RSC Adv.
, 2019
, 9
, 27021
Pyrimidine-based antimalarials: design strategies and antiplasmodial effects . Kamaljit Singh, Tavleen Kaur
, Med. Chem. Commun.
, 2016
, 7
, 749
Synthesis, antimalarial activity, heme binding and docking studies of 4-aminoquinoline–pyrimidine based molecular hybrids . Deepak Kumar, Shabana I. Khan, Babu L. Tekwani, Prija Ponnan, Diwan S. Rawat
, RSC Adv.
, 2014
, 4
, 63655