Application of Drug Repurposing-Based Precision Medicine Platform for Leukaemia Patient Treatment

Vanelle Larissa Kenmogne1,2, Ekene Emmanuel Nweke1, Mutsa M Takundwa2

  • 1Department of Surgery, School of Clinical Medicine, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

Insights

Drug resistance in leukaemia is a significant challenge. This review explores how precision medicine and drug repurposing, using chemoinformatic, in vitro, and ex vivo screening, offer new therapeutic strategies for leukaemia patients.

Area of Science:

  • Hematology
  • Oncology
  • Pharmacology

Background:

  • Drug resistance in leukaemia poses a major clinical challenge, limiting treatment efficacy.
  • Precision medicine offers personalized treatment strategies by stratifying patients based on molecular profiles.
  • Limited therapeutic options remain for patients with advanced or refractory leukaemia.

Approach:

  • Drug repurposing is investigated as a cost-effective alternative to novel drug development for leukaemia.
  • The review discusses various screening methods, including chemoinformatic, in vitro, and ex vivo approaches, to accelerate drug repurposing.
  • These methods facilitate the identification of existing drugs for potential use against leukaemia.

Key Points:

  • Precision medicine enhances patient stratification and treatment sensitivity in leukaemia.
  • Drug repurposing identifies effective drugs for leukaemia, potentially reducing the burden of resistance.
  • Repurposed drugs show promise, particularly in combination therapies for patients with limited options.

Conclusions:

  • Drug repurposing, accelerated by advanced screening methods, is a viable strategy to combat leukaemia drug resistance.
  • While repurposed drugs may not be ideal as monotherapy, their combination potential is significant.
  • Integrating precision medicine and drug repurposing offers a promising future for managing leukaemia.

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