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Strategies to overcome drug resistance in FLT3+ AML
Linnaeus University, Faculty of Health and Life Sciences, Department of Chemistry and Biomedical Sciences.
2023 (English)Doctoral thesis, comprehensive summary (Other academic)
Abstract [en]

Acute myeloid leukemia (AML) is a hematopoietic malignancy with poor survivalrate and limited therapeutic options. Targeted treatment of other types ofcancer, for instance chronic myeloid leukemia (CML) and breast cancer, has seensignificant progress. However, when it comes to AML, the outcome is poor witha five-year relative survival of only 20 - 30%. Over the last four years, the FDA hasapproved nine new drugs for AML patients in the United States. Unfortunately,the median overall survival of AML patients is still fairly low. For patients aged 70 years and older, the median overall survival is only about 10 months. Even forchildren with AML, the overall 5-year survival rate is 65 - 70%. A major cause oftreatment failure is the development of treatment-induced drug resistance. Thedevelopment of somatic mutations is one of the most common mechanisms ofdrug resistance.

In AML, mutations in the FMS-like tyrosine kinase 3 (FLT3) gene are oftenpresent, with an incidence rate of ∼30% of cases. Most of these mutations areinternal tandem duplications (ITD), present in approximately 25% of the patients.Patients with a high FLT3-ITD burden often relapse after chemotherapy. Inpatients with FLT3-ITD mutations, FLT3 has become a promising drug target fortherapy. In the past few years, FLT3 inhibitors have led to clinical progress, butthere are still some significant problems with their usage. Among these, drugresistance is urgent to overcome.

This thesis mainly focuses on exploring different treatment regimens to over-come drug resistance in human FLT3+ AML cells as a model for the disease.Initially, a drug rotation protocol between two inhibitors which have differentresistance profiles was tested. However, the results were not satisfying. Combi-nation therapy between a FLT3 inhibitor and another inhibitor was adopted. Thisstrategy exhibited significant synergy and, more importantly, could postponethe emergence of drug resistance. In further experiments, we examined somenewly-developed small molecular compounds, and it turned out some of themhad excellent inhibitory activity against established drug-resistant AML cell lines.In parallel, we have also studied the cause of resistance in these cells and haveidentified resistance mutations that have not been described before. Finally, westudied whether FLT3 inhibitors were likely to be synergistic with azacitidine, ahypomethylating agent approved for AML treatment. Such combinations did notdisplay a clear synergistic effect on AML cells, though one combination may bepromising. Overall, our studies provided a better understanding of the resistancemechanisms by which FLT3-ITD cells overcome therapy and valuable informationabout the efficacy of novel inhibitors that are not currently in clinical use, and oncombination therapies. To this end, the results will enable to further facilitatethe rational development of new strategies to overcome drug resistance in FLT3+AML.

Place, publisher, year, edition, pages
Linnaeus University Press, 2023. , p. 57
Series
Linnaeus University Dissertations ; 509
National Category
Cell Biology
Research subject
Chemistry, Biochemistry
Identifiers
URN: urn:nbn:se:lnu:diva-125518DOI: 10.15626/LUD.509.2023ISBN: 9789180820912 (print)ISBN: 9789180820929 (electronic)OAI: oai:DiVA.org:lnu-125518DiVA, id: diva2:1809841
Public defence
2023-11-24, Azur VI2166, Vita, Kalmar, 09:30 (English)
Opponent
Supervisors
Available from: 2023-11-07 Created: 2023-11-06 Last updated: 2023-11-20Bibliographically approved
List of papers
1. Combating drug resistance in acute myeloid leukaemia by drug rotations: the effects of quizartinib and pexidartinib
Open this publication in new window or tab >>Combating drug resistance in acute myeloid leukaemia by drug rotations: the effects of quizartinib and pexidartinib
2021 (English)In: Cancer Cell International, E-ISSN 1475-2867, Vol. 21, no 1, article id 198Article in journal (Refereed) Published
Abstract [en]

Background Acute myeloid leukaemia (AML) is an aggressive blood cancer. In approximately 30% of the cases, driver mutations in the FLT3 gene are identified. FLT3 inhibitors are used in treatment of such patients together with cytotoxic drugs or (in refractory AML) as single agents. Unfortunately, resistance to FLT3 inhibitors limits their efficacy. Resistance is often due to secondary mutations in the gene encoding the molecular target. The gatekeeper mutation F691L confers resistance to specific FLT3 inhibitors such as quizartinib, but pexidartinib is much less resistance to this mutation. Pexidartinib alone is however sensitive to many other resistance mutations. In chronic myeloid leukaemia (CML), it has been suggested that rotation between drugs with a different landscape of resistance mutations might postpone the emergence of resistance. Methods We studied the effect of quizartinib and pexidartinib in AML cell lines that express FLT3 (MOLM-14 and MV4-11). Using a rotation protocol, we further examined whether the emergence of resistance could be postponed. Computational modelling was used to analyse the onset of resistance and suggest which mutations are most likely to occur in a quantitative fashion. Results The cells were sensitive to both inhibitors but quickly developed resistance that could be inherited, suggesting a genetic origin. Rotation protocols were not useful to postpone the emergence of resistance, which implies that such protocols, or changing from pexidartinib to quizartinib (or vice-versa) should not be used in patients. The computational modelling led to similar conclusions and suggested that F691L is the most common mutation to occur with quizartinib, and also when both drugs are used in rotation. Conclusions AML patients are not likely to benefit from a quizartinib/pexidartinib rotation protocol. A combination of tyrosine kinase inhibitors (with different molecular targets) might be more useful in the future. Development of specific FLT3 inhibitors that are less sensitive to resistance mutations might also lead to a better outcome.

Place, publisher, year, edition, pages
BioMed Central (BMC), 2021
National Category
Cancer and Oncology Hematology Biochemistry and Molecular Biology
Research subject
Natural Science, Biomedical Sciences
Identifiers
urn:nbn:se:lnu:diva-102118 (URN)10.1186/s12935-021-01856-5 (DOI)000638228900001 ()33832508 (PubMedID)2-s2.0-85104056329 (Scopus ID)2021 (Local ID)2021 (Archive number)2021 (OAI)
Funder
Swedish Cancer Society, CAN 2018/362
Available from: 2021-04-12 Created: 2021-04-12 Last updated: 2023-11-07Bibliographically approved
2. Combination strategies to overcome drug resistance in FLT+ acute myeloid leukaemia
Open this publication in new window or tab >>Combination strategies to overcome drug resistance in FLT+ acute myeloid leukaemia
2023 (English)In: Cancer Cell International, E-ISSN 1475-2867, Vol. 23, no 1, article id 161Article in journal (Refereed) Published
Abstract [en]

BackgroundAcute myeloid leukaemia (AML) remains difficult to treat despite the development of novel formulations and targeted therapies. Activating mutations in the FLT3 gene are common among patients and make the tumour susceptible to FLT3 inhibitors, but resistance to such inhibitors develops quickly.MethodsWe examined combination therapies aimed at FLT3(+)-AML, and studied the development of resistance using a newly developed protocol. Combinations of FLT3, CDK4/6 and PI3K inhibitors were tested for synergism.ResultsWe show that AML cells express CDK4 and that the CDK4/6 inhibitors palbociclib and abemaciclib inhibit cellular growth. PI3K inhibitors were also effective in inhibiting the growth of AML cell lines that express FLT3-ITD. Whereas resistance to quizartinib develops quickly, the combinations overcome such resistance.ConclusionsThis study suggests that a multi-targeted intervention involving a CDK4/6 inhibitor with a FLT3 inhibitor or a pan-PI3K inhibitor might be a valuable therapeutic strategy for AML to overcome drug resistance. Moreover, many patients cannot tolerate high doses of the drugs that were studied (quizartinib, palbociclib and PI3K inhibitors) for longer periods, and it is therefore of high significance that the drugs act synergistically and lower doses can be used.

Place, publisher, year, edition, pages
BioMed Central (BMC), 2023
Keywords
Combination treatment, FLT3-ITD, Targeted therapy, Alpelisib, Duvelisib, Idelalisib, Copanlisib, Drug synergism, Gilteritinib, Acute myeloid leukemia
National Category
Hematology Cancer and Oncology
Research subject
Chemistry, Medical Chemistry
Identifiers
urn:nbn:se:lnu:diva-124073 (URN)10.1186/s12935-023-03000-x (DOI)001048248600003 ()37568211 (PubMedID)2-s2.0-85168395603 (Scopus ID)
Available from: 2023-09-05 Created: 2023-09-05 Last updated: 2023-11-07Bibliographically approved

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