Molecular biology reports

CRISPR-Cas9 gene editing in Leishmania parasites: methods, uses, challenges, and future possibilities

Updated

Abstract

CRISPR-Cas9 systems have transformed research on Leishmania by enabling precise genetic investigations.

  • Genome editing techniques include gene deletion, precise editing, tagging, and pooled screening across Leishmania species.
  • Emerging Cas variants and next-generation CRISPR systems could enhance the range of targetable genomic areas and increase editing accuracy.
  • Conditional and inducible genome-editing platforms, along with cytosine base-editing technologies, are highlighted as significant advancements.
  • CRISPR applications have been noted in the biology of sand-fly vectors, particularly in the species Phlebotomus papatasi.
  • The review outlines biological and technical challenges, including genome plasticity and off-target effects, that influence CRISPR studies in Leishmania.

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Funding

Competing interests

Declarations. Competing interests: The authors declare no competing interests. Ethics and Consent to Participate Declarations: Not applicable. Consent to publish: Not applicable.
PubMed

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