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Comparisons between new and established methods for analysis of response to treatment in acute leukemia

Abstract
Acute leukemia is a severe hematologic malignancy that affects both adults and children. Although prognosis has improved over recent decades, relapse remains one of the major challenges. A key reason for relapse is that small amounts of leukemic cells, in numbers well below the sensitivity of routine morphology, have survived treatment and remain in the bone marrow: measurable residual disease (MRD). Presence of MRD after initial treatment is one of the strongest predictors of relapse, and sensitive MRD analysis is cru-cial for identifying patients at risk of relapse. MRD is routinely assessed at treatment of acute leukemia, using various methods depending on the specific leukemia subtype. How-ever, none of the current techniques is fully optimal; many require further evaluation, and for some patients, no applicable method is available. This thesis aims to improve MRD diagnostics in acute leukemia by evaluating existing methods and developing novel tech-niques, with the goal of contributing to improved clinical management and, ultimately, a better prognosis for patients with acute leukemia. The main method used for MRD analysis in this thesis was deep sequencing, a highly sensitive next generation sequencing-based technique that quantifies mutations present in leukemic cells at diagnosis. Other molecular methods, including reverse transcription quantitative polymerase chain reaction (RT-qPCR), were also applied, as well as flow cytometry for comparison and complementary MRD assessment. The material consisted of blood and bone marrow samples analyzed at diagnosis and during and after treatment, from adult and pediatric patients with acute mye-loid leukemia (AML), and from pediatric patients with precursor B-cell acute lympho-blastic leukemia (pre-B ALL). Paper I shows that RT-qPCR of ETV6::RUNX1 fusion transcript can be used as an alternative and valuable complementary MRD method to flow cytometry in children with pre-B ALL. Paper II shows that there is a strong correlation between RNA- and DNA-based methods for MRD analysis of NPM1 mutations in adults with AML, and that DNA-based methods can complement, or replace, RT-qPCR. Paper III shows that deep sequencing of mutated NPM1 during and after treatment predicts relapse and poorer survival in adult AML. Paper IV shows that deep sequencing of FLT3-ITD is a highly sensitive method for MRD detection in pediatric AML, enabling monitoring of treatment response and early relapse detection. In conclusion, this thesis contributes new knowledge about MRD analysis in acute leukemia, highlighting the clinical value of deep sequencing. The implementation of these findings in clinical practice could support more precise risk stratification, guide treatment decisions, and may contribute to improved prognosis for patients with acute leukemia.
Parts of work
I. Alm SJ, Engvall C, Asp J, Palmqvist L, Abrahamsson J, Fogelstrand L. Minimal residual disease monitoring in childhood B lymphoblastic leukemia with t(12;21)(p13;q22); ETV6-RUNX1: concordant results using quantitation of fusion transcript and flow cytometry. International Journal of Laboratory Hematology 2017; 39: 121-128. https://doi.org/10.1111/ijlh.12593
 
II. Pettersson L, Johansson Alm S, Almstedt A, Chen Y, Orrsjö G, Shah Barkhordar G, Zhou L, Kotarsky H, Vidovic K, Asp J, Lazarevic V, H. Saal L, Fogelstrand L, Ehinger M. Comparison of RNA- and DNA-based methods for measurable residual disease analysis in NPM1-mutated acute myeloid leukemia. International Journal of Laboratory Hematology 2021; 43: 664-674. https://doi.org/10.1111/ijlh.13608
 
III. Johansson Alm S, Orrsjö G, Shah Barkhordar G, Rehammar A, Staffas A, Delsing Malmberg E, Andersson P-O, Garelius G, Hardling M, Palmqvist L, Fogelstrand L. Prognostic significance of deep sequencing for analysis of measurable residual disease in acute myeloid leukemia with NPM1 mutation. Leukemia and Lymphoma 2025; 31: 1-11. https://doi.org/10.1080/10428194.2025.2482130
 
IV. Johansson Alm S, Tornberg B, Shah Barkhordar G, Soboli A, Saeed B, Staffas A, Delsing Malmberg E, Palmqvist L, Hasle H, Abrahamsson J, Fogelstrand L. Response evaluation and post-treatment monitoring in childhood acute myeloid leukemia using deep sequencing of FLT3-ITD. Manuscript.
 
Degree
Doctor of Philosophy (Medicine)
University
University of Gothenburg. Sahlgrenska Academy
Institution
Institute of Biomedicine. Department of Laboratory Medicine
Disputation
Onsdagen den 28 maj 2025, kl. 9.00, Hjärtats aula, Sahlgrenska universitetssjukhuset, Vita stråket 12, Göteborg
Date of defence
2025-05-28
E-mail
sofie.johansson.alm@gu.se
URI
https://hdl.handle.net/2077/85334
Collections
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
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Thesis frame (1.240Mb)
Abstract (251.6Kb)
Cover (2.204Mb)
Date
2025-05-08
Author
Johansson Alm, Sofie
Keywords
Acute Myeloid Leukemia
Precursor B-cell Acute Lymphoblastic Leukemia
Measurable Residual Disease
Deep Sequencing
ETV6::RUNX1
NPM1
FLT3-ITD
Publication type
Doctoral thesis
ISBN
978-91-8115-168-8 (PRINT)
978-91-8115-169-5 (PDF)
Language
eng
Metadata
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