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Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
DNA cell content studies in multiple myeloma
J F San Miguel1, R García-Sanz, M González
1Servicio de Hematología Hospital Universitario, Salamanca, Spain.
Abstract:
Here the current studies in cell DNA content of plasma cells (PC), from multiple myeloma (MM) patients is reviewed, focusing on two complementary aspects the detection of clonal abnormalities and the identification of the proliferative rate of PC. There is accumulating evidence that the measurement of cell DNA content by flow cytometry (FCM) is a useful parameter in the clinical evaluation of MM patients. Between 50 and 70% of MM patients display DNA aneuploidy, the majority of them being hyperdiploid. Comparing hyperdiploid with diploid patients, the former seem to display a better prognosis. Fluorescence in situ hybridization studies have confirmed that there is a high incidence of numerical chromosome abnormalities in MM and that trisomies are significantly more common than monosomies (84% vs 14%). The most frequent gains can be seen in chromosome 9 and 15 while the most common monosomies are those of chromosome 13 and X in females. The possibility of analysing the cell cycle distribution by using a propidium iodide (PI)/CD38 double staining technique may be an alternative to other more laborious methods of assessing the PC labelling index. Thus, patients with > 3% S-phase PC detected by FCM have an adverse prognosis and this parameter is one of the most important independent prognostic criteria for predicting survival in MM patients. Moreover, the number of S-phase PC, together with other prognostic factors, such as beta 2microglobulin, age and performance status can be a very useful tool for stratifying patients into groups in order to establish risk-directed therapeutic protocols.
Insights
Flow cytometry analysis of plasma cell DNA content aids multiple myeloma (MM) evaluation. Detecting DNA aneuploidy and S-phase fraction offers crucial prognostic information for patient stratification and treatment.
Area of Science:
- Hematology
- Oncology
- Clinical Pathology
Background:
- Multiple myeloma (MM) patient evaluation requires assessing plasma cell (PC) DNA content.
- Flow cytometry (FCM) is a valuable tool for detecting clonal abnormalities and proliferative rates in PCs.
Purpose of the Study:
- To review current studies on plasma cell DNA content in MM patients.
- To highlight the prognostic significance of DNA aneuploidy and S-phase fraction in MM.
Main Methods:
- Review of studies utilizing flow cytometry (FCM) for DNA content analysis.
- Analysis of fluorescence in situ hybridization (FISH) data for chromosomal abnormalities.
- Application of propidium iodide (PI)/CD38 double staining for cell cycle analysis.
Main Results:
- 50-70% of MM patients exhibit DNA aneuploidy, predominantly hyperdiploidy, associated with better prognosis.
- FISH confirms high incidence of numerical chromosome abnormalities in MM, with trisomies more common than monosomies.
- A >3% S-phase PC fraction detected by FCM indicates adverse prognosis and is an independent survival predictor.
Conclusions:
- FCM measurement of cell DNA content is a useful clinical parameter for MM evaluation.
- DNA aneuploidy and S-phase fraction provide significant prognostic information.
- Combining S-phase PC data with other factors aids risk stratification and tailored therapeutic protocols for MM patients.

