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1.
Trop Med Infect Dis ; 8(1)2022 Dec 27.
Article de Anglais | MEDLINE | ID: mdl-36668925

RÉSUMÉ

High IL-10 levels are pivotal to parasite survival in visceral leishmaniasis (VL). Antigenic stimuli induce IL-10 expression and release of adenosine by CD39/CD73. Due their intrinsic ability to express IL-10 and produce adenosine from extracellular ATP, we evaluated the IL-10, CD39, and CD73 expression by Regulatory T cells (Treg) correlated with VL pathology. Using flow cytometry, Treg cells was analyzed in peripheral blood samples from VL patients (in the presence and absence of Leishmania infantum soluble antigen (SLA)) and healthy individuals (negative endemic control-NEC group), without any treatment. Additionally, IL-10 levels in leukocytes culture supernatant were measured in all groups by ELISA assay. VL patients presented more Treg frequency than NEC group, independently of stimulation. ELISA results demonstrated that SLA induced higher IL-10 expression in the VL group. However, the NEC group had a higher Treg IL-10+ compared to the VL group without stimulation and SLA restored the IL-10 in Treg. Additionally, an increase in Treg CD73+ in the VL group independently of stimuli compared to that in the NEC group was observed. We suggest that Treg are not the main source of IL-10, while the CD73 pathway may be an attempt to modulate the exacerbation of immune response in VL disease.

2.
Bioorg Med Chem Lett ; 49: 128289, 2021 10 01.
Article de Anglais | MEDLINE | ID: mdl-34311084

RÉSUMÉ

Leishmaniasis is an infectious disease with several limitations regarding treatment schemes. This work reports the anti-Leishmania activity of spiroacridine compounds against the promastigote (IC50 = 1.1 to 6.0 µg / mL) and amastigote forms of the best compounds (EC50 = 4.9 and 0.9 µg / mL) inLeishmania (L.) infantumand proposes an in-silico study with possible selective therapeutic targets for L. infantum. The substituted dimethyl-amine compound (AMTAC 11) showed the best leishmanicidal activity in vitro, and was found to interact with TryRandLdTopoI. comparisons with standard inhibitors were performed, and its main interactions were elucidated. Based on the biological assessment and the structure-activity relationship study, the spiroacridine compounds appear to be promisinganti-leishmaniachemotherapeutic agents to be explored.


Sujet(s)
Acridines/pharmacologie , Spiranes/pharmacologie , Trypanocides/pharmacologie , Acridines/synthèse chimique , Acridines/métabolisme , Acridines/toxicité , ADN topoisomérases de type I/métabolisme , Érythrocytes/effets des médicaments et des substances chimiques , Leishmania infantum/effets des médicaments et des substances chimiques , Ligands , Simulation de docking moléculaire , Structure moléculaire , NADH, NADPH oxidoreductases/métabolisme , Tests de sensibilité parasitaire , Liaison aux protéines , Protéines de protozoaire/métabolisme , Spiranes/synthèse chimique , Spiranes/métabolisme , Spiranes/toxicité , Relation structure-activité , Trypanocides/synthèse chimique , Trypanocides/métabolisme , Trypanocides/toxicité
3.
Bioorg Med Chem Lett ; 26(18): 4523-4526, 2016 09 15.
Article de Anglais | MEDLINE | ID: mdl-27520941

RÉSUMÉ

It is reported here the synthesis of novel Homodimers 12-19 of Morita-Baylis-Hillman adducts (MBHA) from one-pot Morita-Baylis-Hillman Reaction (MBHR) between aromatic aldehydes as eletrophiles and ethylene glycol diacrylate as Michael acceptor (35-94% yields) using cheap and green conditions. The bioactivities were evaluated against promastigote form of Leishmania donovani. All homodimers showed to be more potent than corresponding monomers. It is worth highlighting that the halogenated homodimers 17 and 18 (0.50µM) is almost 400 times more active than the corresponding monomer 10 and 1.24 times more potent than the second-line drug amphotericin B (0.62µM). Moreover, the selectivity index to 18 is very high (SIrb>400) far better than amphotericin B (SIrb=18.73). This is the first report of twin drugs strategy applied on Morita-Baylis-Hillman adducts.


Sujet(s)
Antiprotozoaires/synthèse chimique , Antiprotozoaires/pharmacologie , Leishmania donovani/effets des médicaments et des substances chimiques , Animaux , Antiprotozoaires/composition chimique , Dimérisation , Hémolyse/effets des médicaments et des substances chimiques , Humains
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