Related Experiment Video
Updated: Jul 21, 2025

Flow Cytometry to Estimate Leukemia Stem Cells in Primary Acute Myeloid Leukemia and in Patient-derived-xenografts, at Diagnosis and Follow Up
Published on: March 26, 2018
The Contribution of Multiplexing Single Cell RNA Sequencing in Acute Myeloid Leukemia
Lamia Madaci1, Charlyne Gard1, Sébastien Nin1
1TAGC, INSERM, UMR1090, Aix Marseille University, Parc Scientifique de Luminy, 13009 Marseille, France.
Abstract:
Decades ago, the treatment for acute myeloid leukemia relied on cytarabine and anthracycline. However, advancements in medical research have introduced targeted therapies, initially employing monoclonal antibodies such as ant-CD52 and anti-CD123, and subsequently utilizing specific inhibitors that target molecular mutations like anti-IDH1, IDH2, or FLT3. The challenge lies in determining the role of these therapeutic options, considering the inherent tumor heterogeneity associated with leukemia diagnosis and the clonal drift that this type of tumor can undergo. Targeted drugs necessitate an examination of various therapeutic targets at the individual cell level rather than assessing the entire population. It is crucial to differentiate between the prognostic value and therapeutic potential of a specific molecular target, depending on whether it is found in a terminally differentiated cell with limited proliferative potential or a stem cell with robust capabilities for both proliferation and self-renewal. However, this cell-by-cell analysis is accompanied by several challenges. Firstly, the scientific aspect poses difficulties in comparing different single cell analysis experiments despite efforts to standardize the results through various techniques. Secondly, there are practical obstacles as each individual cell experiment incurs significant financial costs and consumes a substantial amount of time. A viable solution lies in the ability to process multiple samples simultaneously, which is a distinctive feature of the cell hashing technique. In this study, we demonstrate the applicability of the cell hashing technique for analyzing acute myeloid leukemia cells. By comparing it to standard single cell analysis, we establish a strong correlation in various parameters such as quality control, gene expression, and the analysis of leukemic blast markers in patients. Consequently, this technique holds the potential to become an integral part of the biological assessment of acute myeloid leukemia, contributing to the personalized and optimized management of the disease, particularly in the context of employing targeted therapies.
Insights
Cell hashing enables simultaneous analysis of acute myeloid leukemia (AML) cells, overcoming challenges in targeted therapy assessment. This technique correlates well with standard methods, aiding personalized AML treatment.
Area of Science:
- Hematology and Oncology
- Molecular Biology
- Immunology
Background:
- Acute myeloid leukemia (AML) treatment has evolved from traditional chemotherapy to targeted therapies.
- Targeted therapies require single-cell analysis due to tumor heterogeneity and clonal evolution.
- Current single-cell analysis methods face scientific and practical challenges, including cost and time.
Purpose of the Study:
- To demonstrate the applicability of cell hashing for analyzing acute myeloid leukemia (AML) cells.
- To compare cell hashing with standard single-cell analysis techniques for AML assessment.
- To evaluate the potential of cell hashing in optimizing personalized AML management with targeted therapies.
Main Methods:
- Application of the cell hashing technique to analyze acute myeloid leukemia (AML) cells.
- Comparison of cell hashing with standard single-cell analysis methods.
- Evaluation of parameters including quality control, gene expression, and leukemic blast markers.
Main Results:
- Cell hashing demonstrated strong correlations with standard single-cell analysis in quality control.
- Gene expression profiling using cell hashing showed consistency with conventional methods.
- Analysis of leukemic blast markers in patients was effectively performed using cell hashing.
Conclusions:
- Cell hashing is a viable technique for analyzing acute myeloid leukemia (AML) cells.
- This method offers a potential solution for simultaneous sample processing, reducing costs and time.
- Cell hashing can be integrated into AML biological assessments for personalized and optimized targeted therapy management.

