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Master's Dissertation
DOI
https://doi.org/10.11606/D.9.2017.tde-16112017-110816
Document
Author
Full name
Vanessa Almeida Otelo
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2008
Supervisor
Committee
Menezes, Carla Maria de Souza (President)
Ribeiro, Mauro Carlos Costa
Sant'Anna, Carlos Maurício Rabello de
Title in Portuguese
Emprego da modelagem molecular no planejamento de novos compostos heterocíclicos úteis contra malária resistente
Keywords in Portuguese
Antimaláricos (Desenvolvimento)
Compostos heterocíclicos (Aplicações terapêuticas)
Malária (Tratamento)
Modelagem molecular
Planejamento de fármacos
Planejamento racional
Abstract in Portuguese
A maioria das cepas de Plasmodium falciparum mostra-se resistente à cloroquina (CQ), considerado o antimalárico ideal. A busca por novos agentes terapêuticos bem como a restauração do efeito antimalárico de fármacos disponíveis, através da associação a agentes moduladores da resistência (AMR), vem sendo enfatizada. Entretanto, ausência de efeito modulador da resistência e efeito antiplasmódico intrínseco foram observados quando AMR clássicos, como o fenotiazínico clorpromazina e o iminodibenzílico desipramina, foram ensaiados in vitro em isolados brasileiros de P. falciparum resistentes à CQ. Sabe-se que a ação antiparasitária de compostos de natureza tricíclica, como os fenotiazínicos, foi descrita há mais de um século e continua a ser de interesse. Em adição, vale notar a ocorrência de farmacóforo comum, formado por sistema heteroaromático, ligado a átomo de nitrogênio, secundário ou terciário, por cadeia lateral de três a quatro átomos de carbono, entre compostos quinolínicos antimaláricos, fármacos psicotrópicos e AMR. Este trabalho teve como objetivo estudar, por emprego da modelagem molecular, características estereo-eletrônicas e lipofílicas e a interação a nível molecular de compostos de natureza tricíclica (fenotiazínicos e iminodibenzílicos) com a hematina (provável sítio de ação da CQ) comparando ao antimalárico CQ. Semelhanças estéreo-eletrônicas e lipofílicas puderam ser visualizadas entre as moléculas da CQ e dos compostos tricíclicos. No entanto, algumas distinções ausência de planaridade e maior densidade eletrônica sobre os anéis tricíclicos dos anéis heterocíclicos quando comparadas à CQ. Tais características se fizeram refletir na interação com a hematina, como demonstrado nos estudos de ancoramento como também nos estudos de UV-VIS e de Raman Ressonante.
Title in English
Using of molecular modeling in the planning of new useful heterocyclic compounds against resistant malaria
Keywords in English
Antimalarials (Development)
Heterocyclic compounds (Therapeutic applications)
Malaria (Treatment)
Molecular modeling
Rational planning
Abstract in English
The most Plasmodium falciparum strains show resistance to chloroquine (CQ), yet considered the ideal antimalaric agent. The search for new therapeutic compounds and the restoration of the antimalarial effect of available drugs through the association with modulating agents has been emphasized. However, lack of modulating effect and intrinsic antiplasmodial activity were observed when classic modulating agents, such phenothiazine chlorpromazine and iminodibenzylic desipramine, were tested in vitro against Brazilian isolated resistant of P. falciparum to CQ. The antiparasitic action of tricyclic compounds as the phenotiazine class has been described for more than a century and continues to be of interest. In addition, it was noted the occurrence of common pharmacophore, formed by a heteroaromatic system, a secondary or tertiary nitrogen atom, linked by a side chain of three to four carbon atoms, present among the quinoline antimalarials, the psychotropic drugs and the modulating agents of chloroquine resistance. The goal of this work was by using molecular modeling to study stereo-electronic features and lipophilic characteristics and the interaction on molecular level of tricyclic compounds (phenothiazines and iminodibenzylics) with hematin (probable site of action of CQ) in comparison to antimalaric CQ. In results, similarities stereo-electronic and lipophilic could be viewed between the molecules of CQ and tricyclic compounds. However different features could be noticed such as absence of planarity and a higher electronic density on the tricyclic rings when compared to CQ. These features shown to be relevant to interaction with the µ-oxo dimer of hematin, as observed in docking studies and UV-VIS and Resonance Raman.
 
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Publishing Date
2017-11-16
 
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