• DNDi_Logo_No-Tagline_Full Colour
  • Our work
    • Diseases
      • Sleeping sickness
      • Visceral leishmaniasis
      • Cutaneous leishmaniasis
      • Chagas disease
      • Parasitic worms
      • Mycetoma
      • Dengue
      • Paediatric HIV
      • Cryptococcal meningitis
      • Hepatitis C
      • Pandemic preparedness
      • Antimicrobial resistance
    • Research & development
      • R&D portfolio & list of projects
      • Drug discovery
      • Translational research
      • Clinical trials
      • Registration & access
      • Evidence for impact
      • Treatments delivered
    • Advocacy
      • Open and collaborative R&D
      • Transparency of R&D costs
      • Pro-access policies and IP
      • Children’s health
      • Gender equity
      • Climate change
      • AI and new technologies
  • Networks & partners
    • Partnerships
      • Our partners
      • Partnering with us
    • Global networks
      • Chagas Platform
      • Dengue Alliance
      • HAT Platform
      • LEAP Platform
      • redeLEISH Network
    • DNDi worldwide
      • DNDi Switzerland
      • DNDi Eastern Africa
      • DNDi Japan
      • DNDi Latin America
      • DNDi North America
      • DNDi South Asia
      • DNDi South-East Asia
      • DNDi West and Central Africa
  • News & resources
    • News & stories
      • News
      • Stories
      • Statements
      • Viewpoints
      • Social media
      • eNews Newsletter
    • Press
      • Press releases
      • In the media
      • Podcasts, radio & TV
      • Media workshops
    • Resources
      • Scientific articles
      • Our publications
      • Videos
    • Events
  • About us
    • About
      • Who we are
      • Our story
      • How we work
      • Our strategy
      • Our donors
      • Annual reports
      • Our prizes and awards
    • Our people
      • Our leadership
      • Our governance
      • Contact us
    • Work with us
      • Working at DNDi
      • Job opportunities
      • Requests for proposal
  • Donate
  • DNDi_Logo_No-Tagline_Full Colour
  • Our work
    • Diseases
      • Sleeping sickness
      • Visceral leishmaniasis
      • Cutaneous leishmaniasis
      • Chagas disease
      • Parasitic worms
      • Mycetoma
      • Dengue
      • Paediatric HIV
      • Cryptococcal meningitis
      • Hepatitis C
      • Pandemic preparedness
      • Antimicrobial resistance
    • Research & development
      • R&D portfolio & list of projects
      • Drug discovery
      • Translational research
      • Clinical trials
      • Registration & access
      • Evidence for impact
      • Treatments delivered
    • Advocacy
      • Open and collaborative R&D
      • Transparency of R&D costs
      • Pro-access policies and IP
      • Children’s health
      • Gender equity
      • Climate change
      • AI and new technologies
  • Networks & partners
    • Partnerships
      • Our partners
      • Partnering with us
    • Global networks
      • Chagas Platform
      • Dengue Alliance
      • HAT Platform
      • LEAP Platform
      • redeLEISH Network
    • DNDi worldwide
      • DNDi Switzerland
      • DNDi Eastern Africa
      • DNDi Japan
      • DNDi Latin America
      • DNDi North America
      • DNDi South Asia
      • DNDi South-East Asia
      • DNDi West and Central Africa
  • News & resources
    • News & stories
      • News
      • Stories
      • Statements
      • Viewpoints
      • Social media
      • eNews Newsletter
    • Press
      • Press releases
      • In the media
      • Podcasts, radio & TV
      • Media workshops
    • Resources
      • Scientific articles
      • Our publications
      • Videos
    • Events
  • About us
    • About
      • Who we are
      • Our story
      • How we work
      • Our strategy
      • Our donors
      • Annual reports
      • Our prizes and awards
    • Our people
      • Our leadership
      • Our governance
      • Contact us
    • Work with us
      • Working at DNDi
      • Job opportunities
      • Requests for proposal
  • Donate
Home > Scientific articles > Identification of new Trypanosoma cruzi-specific protein synthesis inhibitors by using a developed high-throughput in vitro translation assay > Page 2
Aug 2026

Identification of new Trypanosoma cruzi-specific protein synthesis inhibitors by using a developed high-throughput in vitro translation assay

International Journal for Parasitology: Drugs and Drug Resistance

by Mantovani CC, Freitas FRN, Moraes CB, Dos Santos GRR, Cruz LR, Kratz JM, Aktas BH, Schenkman S. International Journal for Parasitology: Drugs and Drug Resistance 2026:32:100667. doi:10.1016/j.ijpddr.2026.100667

Summary: Since there are significant differences between the protein synthesis machinery of Trypanosoma cruzi, the causative agent of Chagas disease, and that of humans, it is likely that T. cruzi-specific protein synthesis inhibitors could be employed for the treatment of Chagas disease. The authors of this manuscript demonstrated that extracts derived from a T. cruzi strain deficient for hemin accumulation could be used to screen chemical libraries in a first-of-its-kind T. cruzi in vitro translation system. They optimized assay conditions, adapted them to a 384-well format, and miniaturized this assay to a 5 μL volume for use in ultra-high throughput screening. In a proof-of-principle pilot study, they identified quinazoline compounds that inhibit translation of reporter mRNAs by T. cruzi extracts.

Access article

Drug discovery Chagas disease

Latest scientific articles

Loading...
Scientific articles
22 Jun 2026

What Is in a Structure? Cell Permeability and Solubility of Series of Macrocycles and Linear Matched Pairs

Journal of Medicinal Chemistry
Scientific articles
24 Jun 2026

Inspiring, shaping and sustaining an African research & development agenda

Nature Medicine
Scientific articles
17 Jun 2026

Advancing diagnostics for Chagas disease: key product characteristics and harmonized evaluation strategies – an expert meeting report

BMC Infectious Diseases
Scientific articles
8 Jun 2026

Screening strategies for Chagas Disease: evaluation of a diagnostic algorithm in the field in Santiago del Estero

Revista de la Facultad de Ciencias Médicas de Córdoba
VIEW ALL

Stay connected

Get our latest news, personal stories, research articles, and job opportunities. 

Linkedin-in Instagram Youtube Tiktok Facebook-f
International non-profit developing safe, effective, and affordable treatments for the most neglected patients.

Learn more

  • Diseases
  • Neglected tropical diseases
  • R&D portfolio
  • Policy advocacy

Get in touch

  • Our offices
  • Contact us
  • Integrity Line

Support us

  • Donate
  • Subscribe to eNews

Work with us

  • Join research networks
  • Jobs
  • RFPs
  • Terms of Use   
  •   Acceptable Use Policy   
  •   Privacy Policy   
  •   Cookie Policy   
  •   Our policies   

  • Except for images, films, and trademarks which are subject to DNDi’s Terms of Use, content on this site is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International license