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R R Costa

Showing results (81-90 of 96) with videos related to

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Anti-Cancer Agents in Medicinal Chemistry|June 23, 2012
The therapeutical potential of a novel pterocarpanquinone LQB-118 to target inhibitor of apoptosis proteins in acute myeloid leukemia cellsFlaviana R de Souza Reis, Fernanda C Casal de Faria, Carolina P Castro, et al.
Bioorganic & Medicinal Chemistry|October 18, 2011
Pterocarpanquinones, aza-pterocarpanquinone and derivatives: synthesis, antineoplasic activity on human malignant cell lines and antileishmanial activity on Leishmania amazonensisCamilla D Buarque, Gardenia C G Militão, Daisy J B Lima, et al.
Investigational New Drugs|May 26, 2010
LQB-118, a pterocarpanquinone structurally related to lapachol [2-hydroxy-3-(3-methyl-2-butenyl)-1,4-naphthoquinone]: a novel class of agent with high apoptotic effect in chronic myeloid leukemia cellsRaquel C Maia, Flavia C Vasconcelos, Thiago de Sá Bacelar, et al.
International Journal of Biological Macromolecules|December 19, 2016
Interaction between bioactive compound 11a-N-tosyl-5-deoxi-pterocarpan (LQB-223) and Calf thymus DNA: Spectroscopic approach, electrophoresis and theoretical studiesMarina M Silva, Eduarda O O Nascimento, Edeíldo F Silva, et al.
International Journal of Molecular Sciences|May 14, 2025
Plant-Derived Lapachol Analogs as Selective Metalloprotease Inhibitors Against <i>Bothrops</i> Venom: A ReviewPaulo A Melo, Pâmella Dourila Nogueira-Souza, Mayara Amorim Romanelli, et al.
The Journal of Venomous Animals and Toxins Including Tropical Diseases|December 7, 2018
Second-generation pterocarpanquinones: synthesis and antileishmanial activityViviane Dos Santos Faiões, Lívia C R M da Frota, Edézio Ferreira Cunha-Junior, et al.
Chemmedchem|May 12, 2025
Intracellular and Extracellular Efficacy of Homoisoflavone Derivatives Against Mycobacterium Tuberculosis: Progress Toward Novel Antitubercular AgentsSanderson D Calixto, Juliane S Falcão, Stella S Antunes, et al.
ACS Medicinal Chemistry Letters|September 17, 2021
Monocyclic Nitro-heteroaryl Nitrones with Dual Mechanism of Activation: Synthesis and Antileishmanial ActivityJuliana da Silva Pacheco, Débora de Souza Costa, Edézio Ferreira Cunha-Júnior, et al.
Emerging Infectious Diseases|February 24, 2021
Implementation of an Animal Sporotrichosis Surveillance and Control Program, Southeastern BrazilSimone M Moreira, Elisa H P Andrade, Marcelo T Paiva, et al.
ACS Omega|September 2, 2025
<i>In Vitro</i> Activity of Pterocarpanquinone LQB-118 on <i>Trypanosoma cruzi</i> and Its Impact on Parasite BioenergeticsBruno F Azevedo, Andréia C S Brito, Johnata A Vilarim, et al.
Pageof 10

Showing results (81-90 of 96) with videos related to

Sort By:
Pageof 10
Anti-Cancer Agents in Medicinal Chemistry|June 23, 2012
The therapeutical potential of a novel pterocarpanquinone LQB-118 to target inhibitor of apoptosis proteins in acute myeloid leukemia cellsFlaviana R de Souza Reis, Fernanda C Casal de Faria, Carolina P Castro, et al.
Bioorganic & Medicinal Chemistry|October 18, 2011
Pterocarpanquinones, aza-pterocarpanquinone and derivatives: synthesis, antineoplasic activity on human malignant cell lines and antileishmanial activity on Leishmania amazonensisCamilla D Buarque, Gardenia C G Militão, Daisy J B Lima, et al.
Investigational New Drugs|May 26, 2010
LQB-118, a pterocarpanquinone structurally related to lapachol [2-hydroxy-3-(3-methyl-2-butenyl)-1,4-naphthoquinone]: a novel class of agent with high apoptotic effect in chronic myeloid leukemia cellsRaquel C Maia, Flavia C Vasconcelos, Thiago de Sá Bacelar, et al.
International Journal of Biological Macromolecules|December 19, 2016
Interaction between bioactive compound 11a-N-tosyl-5-deoxi-pterocarpan (LQB-223) and Calf thymus DNA: Spectroscopic approach, electrophoresis and theoretical studiesMarina M Silva, Eduarda O O Nascimento, Edeíldo F Silva, et al.
International Journal of Molecular Sciences|May 14, 2025
Plant-Derived Lapachol Analogs as Selective Metalloprotease Inhibitors Against <i>Bothrops</i> Venom: A ReviewPaulo A Melo, Pâmella Dourila Nogueira-Souza, Mayara Amorim Romanelli, et al.
The Journal of Venomous Animals and Toxins Including Tropical Diseases|December 7, 2018
Second-generation pterocarpanquinones: synthesis and antileishmanial activityViviane Dos Santos Faiões, Lívia C R M da Frota, Edézio Ferreira Cunha-Junior, et al.
Chemmedchem|May 12, 2025
Intracellular and Extracellular Efficacy of Homoisoflavone Derivatives Against Mycobacterium Tuberculosis: Progress Toward Novel Antitubercular AgentsSanderson D Calixto, Juliane S Falcão, Stella S Antunes, et al.
ACS Medicinal Chemistry Letters|September 17, 2021
Monocyclic Nitro-heteroaryl Nitrones with Dual Mechanism of Activation: Synthesis and Antileishmanial ActivityJuliana da Silva Pacheco, Débora de Souza Costa, Edézio Ferreira Cunha-Júnior, et al.
Emerging Infectious Diseases|February 24, 2021
Implementation of an Animal Sporotrichosis Surveillance and Control Program, Southeastern BrazilSimone M Moreira, Elisa H P Andrade, Marcelo T Paiva, et al.
ACS Omega|September 2, 2025
<i>In Vitro</i> Activity of Pterocarpanquinone LQB-118 on <i>Trypanosoma cruzi</i> and Its Impact on Parasite BioenergeticsBruno F Azevedo, Andréia C S Brito, Johnata A Vilarim, et al.
Pageof 10