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1
Pathology and Pathogenesis of Chagas Heart Disease.
Annu Rev Pathol. 2019 Jan 24;14:421-447. doi: 10.1146/annurev-pathol-020117-043711. Epub 2018 Oct 24.
2
Autoimmune pathogenesis of Chagas heart disease: looking back, looking ahead.
Am J Pathol. 2015 Jun;185(6):1537-47. doi: 10.1016/j.ajpath.2014.12.023. Epub 2015 Apr 7.
3
Precision Health for Chagas Disease: Integrating Parasite and Host Factors to Predict Outcome of Infection and Response to Therapy.
Front Cell Infect Microbiol. 2020 May 8;10:210. doi: 10.3389/fcimb.2020.00210. eCollection 2020.
4
Chagas heart disease pathogenesis: one mechanism or many?
Curr Mol Med. 2008 Sep;8(6):510-8. doi: 10.2174/156652408785748004.
8
Pathogenesis of chronic Chagas heart disease.
Circulation. 2007 Mar 6;115(9):1109-23. doi: 10.1161/CIRCULATIONAHA.106.624296.
9
Cardioprotective actions of curcumin on the pathogenic NFAT/COX-2/prostaglandin E pathway induced during Trypanosoma cruzi infection.
Phytomedicine. 2016 Nov 15;23(12):1392-1400. doi: 10.1016/j.phymed.2016.06.017. Epub 2016 Jun 29.
10
Overexpression of neural cell adhesion molecule in Chagas' myocarditis.
Hum Pathol. 2001 Feb;32(2):149-55. doi: 10.1053/hupa.2001.21562.

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Activity of Pterocarpanquinone LQB-118 on and Its Impact on Parasite Bioenergetics.
ACS Omega. 2025 Aug 12;10(33):37317-37329. doi: 10.1021/acsomega.5c02858. eCollection 2025 Aug 26.
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Targeting macrophage phenotypes to prevent diseases caused by and infections.
Front Immunol. 2025 Aug 7;16:1595954. doi: 10.3389/fimmu.2025.1595954. eCollection 2025.
3
Beyond cardiac embolism and cryptogenic stroke: unveiling the mechanisms of cerebrovascular events in Chagas disease.
Lancet Reg Health Am. 2025 Aug 8;50:101203. doi: 10.1016/j.lana.2025.101203. eCollection 2025 Oct.
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New derivatives of 6-nitrocoumarin-3-thiosemicarbazone exhibit improved antiparasitic activity in the placenta against and .
Antimicrob Agents Chemother. 2025 Sep 3;69(9):e0045425. doi: 10.1128/aac.00454-25. Epub 2025 Aug 7.
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Mass spectrometry-based discovery and diagnostic validation of T. cruzi antigens in the urine of congenitally infected Chagas Disease patients.
PLoS Negl Trop Dis. 2025 Jun 16;19(6):e0013082. doi: 10.1371/journal.pntd.0013082. eCollection 2025 Jun.
6
Synthesis and Biological Evaluation of 4‑(4-Nitrophenyl)‑1‑1,2,3-triazole Derivatives as Antitrypanosomal Agents.
ACS Omega. 2025 May 13;10(20):20299-20314. doi: 10.1021/acsomega.4c11645. eCollection 2025 May 27.
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Predictors of Incident Heart Failure in Patients With Chronic Chagas Disease Cardiomyopathy.
Echocardiography. 2025 May;42(5):e70163. doi: 10.1111/echo.70163.

本文引用的文献

1
Circulating Plasma MicroRNA-208a as Potential Biomarker of Chronic Indeterminate Phase of Chagas Disease.
Front Microbiol. 2018 Mar 6;9:269. doi: 10.3389/fmicb.2018.00269. eCollection 2018.
3
A novel antibody surrogate biomarker to monitor parasite persistence in Trypanosoma cruzi-infected patients.
PLoS Negl Trop Dis. 2018 Feb 9;12(2):e0006226. doi: 10.1371/journal.pntd.0006226. eCollection 2018 Feb.
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G Protein-Coupled Kinin Receptors and Immunity Against Pathogens.
Adv Immunol. 2017;136:29-84. doi: 10.1016/bs.ai.2017.05.007. Epub 2017 Aug 23.
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The Complement System: A Prey of .
Front Microbiol. 2017 Apr 20;8:607. doi: 10.3389/fmicb.2017.00607. eCollection 2017.

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