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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.
Abstract:
Drug resistance in leukaemia is a major problem that needs to be addressed. Precision medicine provides an avenue to reduce drug resistance through a personalised treatment plan. It has helped to better stratify patients based on their molecular profile and therefore improved the sensitivity of patients to a given therapeutic regimen. However, therapeutic options are still limited for patients who have already been subjected to many lines of chemotherapy. The process of designing and developing new drugs requires significant resources, including money and time. Drug repurposing has been explored as an alternative to identify effective drug(s) that could be used to target leukaemia and lessen the burden of drug resistance. The drug repurposing process usually includes preclinical studies with drug screening and clinical trials before approval. Although most of the repurposed drugs that have been identified are generally safe for leukaemia treatment, they seem not to be good candidates for monotherapy but could have value in combination with other drugs, especially for patients who have exhausted therapeutic options. In this review, we highlight precision medicine in leukaemia and the role of drug repurposing. Specifically, we discuss the several screening methods via chemoinformatic, in vitro, and ex vivo that have facilitated and accelerated the drug repurposing process.
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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