SwePub
Sök i SwePub databas

  Utökad sökning

Träfflista för sökning "WFRF:(Tavella Tatyana Almeida) "

Sökning: WFRF:(Tavella Tatyana Almeida)

  • Resultat 1-4 av 4
Sortera/gruppera träfflistan
   
NumreringReferensOmslagsbildHitta
1.
  • Ferreira, Letícia Tiburcio, et al. (författare)
  • Computational Chemogenomics Drug Repositioning Strategy Enables the Discovery of Epirubicin as a New Repurposed Hit for Plasmodium falciparum and P. vivax.
  • 2020
  • Ingår i: Antimicrobial Agents and Chemotherapy. - 1098-6596. ; 64:9
  • Tidskriftsartikel (refereegranskat)abstract
    • Widespread resistance against antimalarial drugs thwarts current efforts for controlling the disease and urges the discovery of new effective treatments. Drug repositioning is increasingly becoming an attractive strategy since it can reduce costs, risks, and time-to-market. Herein, we have used this strategy to identify novel antimalarial hits. We used a comparative in silico chemogenomics approach to select Plasmodium falciparum and Plasmodium vivax proteins as potential drug targets and analyzed them using a computer-assisted drug repositioning pipeline to identify approved drugs with potential antimalarial activity. Among the seven drugs identified as promising antimalarial candidates, the anthracycline epirubicin was selected for further experimental validation. Epirubicin was shown to be potent in vitro against sensitive and multidrug-resistant P. falciparum strains and P. vivax field isolates in the nanomolar range, as well as being effective against an in vivo murine model of Plasmodium yoelii Transmission-blocking activity was observed for epirubicin in vitro and in vivo Finally, using yeast-based haploinsufficiency chemical genomic profiling, we aimed to get insights into the mechanism of action of epirubicin. Beyond the target predicted in silico (a DNA gyrase in the apicoplast), functional assays suggested a GlcNac-1-P-transferase (GPT) enzyme as a potential target. Docking calculations predicted the binding mode of epirubicin with DNA gyrase and GPT proteins. Epirubicin is originally an antitumoral agent and presents associated toxicity. However, its antiplasmodial activity against not only P. falciparum but also P. vivax in different stages of the parasite life cycle supports the use of this drug as a scaffold for hit-to-lead optimization in malaria drug discovery.
  •  
2.
  • Tavella, Tatyana Almeida, et al. (författare)
  • Violacein-Induced Chaperone System Collapse Underlies Multistage Antiplasmodial Activity.
  • 2021
  • Ingår i: ACS Infectious Diseases. - : American Chemical Society (ACS). - 2373-8227. ; 7:4, s. 759-776
  • Tidskriftsartikel (refereegranskat)abstract
    • Antimalarial drugs with novel modes of action and wide therapeutic potential are needed to pave the way for malaria eradication. Violacein is a natural compound known for its biological activity against cancer cells and several pathogens, including the malaria parasite, Plasmodium falciparum (Pf). Herein, using chemical genomic profiling (CGP), we found that violacein affects protein homeostasis. Mechanistically, violacein binds Pf chaperones, PfHsp90 and PfHsp70-1, compromising the latter's ATPase and chaperone activities. Additionally, violacein-treated parasites exhibited increased protein unfolding and proteasomal degradation. The uncoupling of the parasite stress response reflects the multistage growth inhibitory effect promoted by violacein. Despite evidence of proteotoxic stress, violacein did not inhibit global protein synthesis via UPR activation-a process that is highly dependent on chaperones, in agreement with the notion of a violacein-induced proteostasis collapse. Our data highlight the importance of a functioning chaperone-proteasome system for parasite development and differentiation. Thus, a violacein-like small molecule might provide a good scaffold for development of a novel probe for examining the molecular chaperone network and/or antiplasmodial drug design.
  •  
3.
  • Ferreira, Letícia T, et al. (författare)
  • Chemical Genomic Profiling Unveils the in Vitro and in Vivo Antiplasmodial Mechanism of Açaí (Euterpe oleracea Mart.) Polyphenols.
  • 2019
  • Ingår i: ACS Omega. - : American Chemical Society (ACS). - 2470-1343. ; 4:13, s. 15628-15635
  • Tidskriftsartikel (refereegranskat)abstract
    • Malaria remains a major detrimental parasitic disease in the developing world, with more than 200 million cases annually. Widespread drug-resistant parasite strains push for the development of novel antimalarial drugs. Plant-derived natural products are key sources of antimalarial molecules. Euterpe oleracea Martius ("açaí") originates from Brazil and has anti-inflammatory and antineoplasic properties. Here, we evaluated the antimalarial efficacy of three phenolic fractions of açaí; total phenolics (1), nonanthocyanin phenolics (2), and total anthocyanins (3). In vitro, fraction 2 moderately inhibited parasite growth in chloroquine-sensitive (HB3) and multiresistant (Dd2) Plasmodium falciparum strains, while none of the fractions was toxic to noncancer cells. Despite the limited activity in vitro, the oral treatment with 20 mg/kg of fraction 1 reduced parasitemia by 89.4% in Plasmodium chabaudi-infected mice and prolonged survival. Contrasting in vitro and in vivo activities of 1 suggest key antiplasmodial roles for polyphenol metabolites rather than the fraction itself. Finally, we performed haploinsufficiency chemical genomic profiling (HIP) utilizing heterozygous Saccharomyces cerevisiae deletion mutants to identify molecular mechanisms of açaí fractions. HIP results indicate proteostasis as the main cellular pathway affected by fraction 2. These results open avenues to develop açaí polyphenols as potential new antimalarial candidates.
  •  
4.
  • Tomaz, Kaira C P, et al. (författare)
  • Identification of potential inhibitors of casein kinase 2 alpha of Plasmodium falciparum with potent in vitro activity.
  • 2023
  • Ingår i: Antimicrobial Agents and Chemotherapy. - 0066-4804. ; 67:11
  • Tidskriftsartikel (refereegranskat)abstract
    • Drug resistance to commercially available antimalarials is a major obstacle in malaria control and elimination, creating the need to find new antiparasitic compounds with novel mechanisms of action. The success of kinase inhibitors for oncological treatments has paved the way for the exploitation of protein kinases as drug targets in various diseases, including malaria. Casein kinases are ubiquitous serine/threonine kinases involved in a wide range of cellular processes such as mitotic checkpoint signaling, DNA damage response, and circadian rhythm. In Plasmodium, it is suggested that these protein kinases are essential for both asexual and sexual blood-stage parasites, reinforcing their potential as targets for multi-stage antimalarials. To identify new putative PfCK2α inhibitors, we utilized an in silico chemogenomic strategy involving virtual screening with docking simulations and quantitative structure-activity relationship predictions. Our investigation resulted in the discovery of a new quinazoline molecule (542), which exhibited potent activity against asexual blood stages and a high selectivity index (>100). Subsequently, we conducted chemical-genetic interaction analysis on yeasts with mutations in casein kinases. Our chemical-genetic interaction results are consistent with the hypothesis that 542 inhibits yeast Cka1, which has a hinge region with high similarity to PfCK2α. This finding is in agreement with our in silico results suggesting that 542 inhibits PfCK2α via hinge region interaction.
  •  
Skapa referenser, mejla, bekava och länka
  • Resultat 1-4 av 4
Typ av publikation
tidskriftsartikel (4)
Typ av innehåll
refereegranskat (4)
Författare/redaktör
Sunnerhagen, Per, 19 ... (4)
Bilsland, Elizabeth (4)
Costa, Fabio T M (2)
Tavella, Tatyana A (2)
Ferreira, Letícia Ti ... (2)
Cassiano, Gustavo Ca ... (2)
visa fler...
Tavella, Tatyana Alm ... (2)
Mottin, Melina (2)
Almeida, Ludimila Di ... (2)
Bargieri, Daniel You ... (2)
Neves, Bruno Junior (2)
Andrade, Carolina Ho ... (2)
Bourgard, Catarina, ... (1)
Ferreira, Letícia T (1)
Venancio, Vinícius P (1)
Kawano, Taila (1)
Abrão, Lailah C C (1)
Almeida, Ludimila D (1)
Pires, Gabriel S (1)
Azevedo, Luciana (1)
Talcott, Stephen T (1)
Mertens-Talcott, Sus ... (1)
Rodrigues, Juliana (1)
Tomaz, Kaira Cristin ... (1)
Baia-da-Silva, Djane ... (1)
Souza, Macejane Ferr ... (1)
Lima, Marilia Nunes ... (1)
Calit, Juliana (1)
Puça, Maria Carolina ... (1)
Melo, Gisely Cardoso (1)
Lopes, Stefanie Cost ... (1)
Lacerda, Marcus Vini ... (1)
Cravo, Pedro Vitor L ... (1)
Costa, Fabio Trindad ... (1)
Andrade, Carolina H. (1)
Fontinha, Diana (1)
Prudencio, Miguel (1)
Cassiano, Gustavo C. (1)
da Silva, Noeli Soar ... (1)
Spillman, Natalie (1)
Kayano, Ana Carolina ... (1)
Vasconcelos, Adriell ... (1)
Camargo, Antônio Ped ... (1)
da Silva, Djane Clar ... (1)
Salazar Alvarez, Lui ... (1)
Peralis Tomaz, Kaira ... (1)
Lacerda, Marcus Vini ... (1)
Lemos Cravo, Pedro V ... (1)
Pinto Lopes, Stefani ... (1)
Carazzolle, Marcelo ... (1)
visa färre...
Lärosäte
Göteborgs universitet (4)
Språk
Engelska (4)
Forskningsämne (UKÄ/SCB)
Naturvetenskap (4)
Medicin och hälsovetenskap (4)

År

Kungliga biblioteket hanterar dina personuppgifter i enlighet med EU:s dataskyddsförordning (2018), GDPR. Läs mer om hur det funkar här.
Så här hanterar KB dina uppgifter vid användning av denna tjänst.

 
pil uppåt Stäng

Kopiera och spara länken för att återkomma till aktuell vy