Amastigotes

Amastigotes are nonflagellated, intracellular life-cycle stages of kinetoplastid protozoa, including Leishmania and Trypanosoma cruzi, and are important for understanding persistent infection and disease. After entering mammalian host cells, these parasites differentiate from motile forms into amastigotes, adapt to the intracellular environment, and multiply by binary fission within phagolysosomal compartments or the host-cell cytoplasm. Studying amastigotes helps researchers investigate parasite development, host-pathogen interactions, immune evasion, and tissue damage. Their distinctive morphology and intracellular location also support diagnostic identification and provide targets for evaluating antiparasitic drugs and developing strategies against leishmaniasis and Chagas disease.

Amastigotes - Related Videos

Research

JoVE Journal - Genetics

Introducing a Gene Knockout Directly Into the Amastigote Stage of Trypanosoma cruzi Using the CRISPR/Cas9 System

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Cited by 5 •

2019

Here, we describe a protocol to introduce a gene knockout into the extracellular amastigote of Trypanosoma cruzi, using the CRISPR/Cas9 system. The growth phenotype can be followed up either by cell counting of axenic amastigote culture or by proliferation of intracellular amastigotes after host cell invasion.

Research

JoVE Journal - Biology
Free Sample

In Vivo Imaging of Leishmania infantum-infected Hamsters by Gingival Inoculation of Axenic Amastigotes Expressing Luciferase

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2025

Here we present a longitudinal evaluation of golden hamsters infected intraperitoneally (IP) or via intragingival (IG) with L. infantum-Luc by bioluminescent imaging and by PCR. Hamsters were evaluated 1 day post infection (1 dpi), 1 week after infection (8 dpi), and 3 weeks after infection (22 dpi) and euthanized at the 50th dpi and 8 months post infection.

Quantitative 3D Imaging of Trypanosoma cruzi-Infected Cells, Dormant Amastigotes, and T Cells in Intact Clarified Organs

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Cited by 3 •

2022

The present protocol describes light-sheet fluorescent microscopy and automated software-assisted methods to visualize and precisely quantify proliferating and dormant Trypanosoma cruzi parasites and T cells in intact, cleared organs and tissues. These techniques provide a reliable way to evaluate treatment outcomes and offer new insights into parasite-host interactions.

A Parasite Rescue and Transformation Assay for Antileishmanial Screening Against Intracellular Leishmania donovani Amastigotes in THP1 Human Acute Monocytic Leukemia Cell Line

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Cited by 118 •

2012

A parasite-rescue and transformation assay with THP1 cells infected in vitro with Leishmania donovani has been optimized for anti-leishmanial drug screening. The assay involves differentiation of THP1 cells, infection with promastigotes, treatment with test drugs, controlled lysis of the infected macrophages, rescue of amastigotes, transformation to promastigotes and monitoring promastigote growth and proliferation with a fluorometric assay.

β-Galactosidase Assay to Evaluate Drug-Induced Cytotoxicity in Parasites

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2023

In this video, we describe a simple and robust method to determine the cytotoxic potential of a trypanocidal drug against a parasite, Trypanosoma cruzi, expressing the β-galactosidase enzyme. β-galactosidase serves as a cell lysis indicator, and its activity can be used to assess the effects of the drug.

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