(en) R. L. Krauth-Siegel, S. K. Meiering et H. Schmidt, «The Parasite-Specific Trypanothione Metabolism of Trypanosoma and Leishmania», Biological Chemistry, vol.384, no4, , p.539-549 (PMID12751784, DOI10.1515/BC.2003.062, lire en ligne)
(en) A. H. Fairlamb, P. Blackburn, P. Ulrich, B. T. Chait et A. Cerami, «Trypanothione: a novel bis(glutathionyl)spermidine cofactor for glutathione reductase in trypanosomatids», Science, vol.227, no4693, , p.1485-1487 (PMID3883489, DOI10.1126/science.3883489, lire en ligne)
(en) Mark R. Ariyanayagam et Alan H. Fairlamb, «Entamoeba histolytica lacks trypanothione metabolism», Molecular and Biochemical Parasitology, vol.103, no1, , p.61-69 (PMID10514081, DOI10.1016/S0166-6851(99)00118-8, lire en ligne)
(en) R. L. Krauth-Siegel, S. K. Meiering et H. Schmidt, «The Parasite-Specific Trypanothione Metabolism of Trypanosoma and Leishmania», Biological Chemistry, vol.384, no4, , p.539-549 (PMID12751784, DOI10.1515/BC.2003.062, lire en ligne)
(en) Armin Schmidt et R. Luise Krauth-Siegel, «Enzymes of the Trypanothione Metabolism as Targets for Antitrypanosomal Drug Development», Current Topics in Medicinal Chemistry, vol.2, no11, , p.1239–1259 (DOI10.2174/1568026023393048, lire en ligne, consulté le )
(en) Jorge Tovar, Shane Wilkinson, Jeremy C. Mottram et Alan H. Fairlamb, «Evidence that trypanothione reductase is an essential enzyme in Leishmania by targeted replacement of the tryA gene locus», Molecular Microbiology, vol.29, no2, , p.653-660 (PMID9720880, DOI10.1046/j.1365-2958.1998.00968.x, lire en ligne)
(en) Sandra L. Oza, Matthew P. Shaw, Susan Wyllie et Alan H. Fairlamb, «Trypanothione biosynthesis in Leishmania major», Molecular and Biochemical Parasitology, vol.139, no1, , p.107–116 (DOI10.1016/j.molbiopara.2004.10.004, lire en ligne, consulté le )
(en) Sandra L. Oza, Matthew P. Shaw, Susan Wyllie et Alan H. Fairlamb, «Trypanothione biosynthesis in Leishmania major», Molecular and Biochemical Parasitology, vol.139, no1, , p.107–116 (DOI10.1016/j.molbiopara.2004.10.004, lire en ligne, consulté le )
(en) Armin Schmidt et R. Luise Krauth-Siegel, «Enzymes of the Trypanothione Metabolism as Targets for Antitrypanosomal Drug Development», Current Topics in Medicinal Chemistry, vol.2, no11, , p.1239–1259 (DOI10.2174/1568026023393048, lire en ligne, consulté le )
(en) A. H. Fairlamb, P. Blackburn, P. Ulrich, B. T. Chait et A. Cerami, «Trypanothione: a novel bis(glutathionyl)spermidine cofactor for glutathione reductase in trypanosomatids», Science, vol.227, no4693, , p.1485-1487 (PMID3883489, DOI10.1126/science.3883489, lire en ligne)
(en) Mark R. Ariyanayagam et Alan H. Fairlamb, «Entamoeba histolytica lacks trypanothione metabolism», Molecular and Biochemical Parasitology, vol.103, no1, , p.61-69 (PMID10514081, DOI10.1016/S0166-6851(99)00118-8, lire en ligne)
(en) R. L. Krauth-Siegel, S. K. Meiering et H. Schmidt, «The Parasite-Specific Trypanothione Metabolism of Trypanosoma and Leishmania», Biological Chemistry, vol.384, no4, , p.539-549 (PMID12751784, DOI10.1515/BC.2003.062, lire en ligne)
(en) Jorge Tovar, Shane Wilkinson, Jeremy C. Mottram et Alan H. Fairlamb, «Evidence that trypanothione reductase is an essential enzyme in Leishmania by targeted replacement of the tryA gene locus», Molecular Microbiology, vol.29, no2, , p.653-660 (PMID9720880, DOI10.1046/j.1365-2958.1998.00968.x, lire en ligne)
(en) Mark R. Ariyanayagam et Alan H. Fairlamb, «Entamoeba histolytica lacks trypanothione metabolism», Molecular and Biochemical Parasitology, vol.103, no1, , p.61-69 (PMID10514081, DOI10.1016/S0166-6851(99)00118-8, lire en ligne)
(en) A. H. Fairlamb, P. Blackburn, P. Ulrich, B. T. Chait et A. Cerami, «Trypanothione: a novel bis(glutathionyl)spermidine cofactor for glutathione reductase in trypanosomatids», Science, vol.227, no4693, , p.1485-1487 (PMID3883489, DOI10.1126/science.3883489, lire en ligne)
(en) Jorge Tovar, Shane Wilkinson, Jeremy C. Mottram et Alan H. Fairlamb, «Evidence that trypanothione reductase is an essential enzyme in Leishmania by targeted replacement of the tryA gene locus», Molecular Microbiology, vol.29, no2, , p.653-660 (PMID9720880, DOI10.1046/j.1365-2958.1998.00968.x, lire en ligne)