4.4 Article

Estimating lymphocyte division and death rates from CFSE data

Journal

BULLETIN OF MATHEMATICAL BIOLOGY
Volume 68, Issue 5, Pages 1011-1031

Publisher

SPRINGER
DOI: 10.1007/s11538-006-9094-8

Keywords

cell division rate; cell death rate; CFSE; lymphocyte dynamics; IL-2

Funding

  1. NCRR NIH HHS [RR06555] Funding Source: Medline
  2. NIAID NIH HHS [AI28433] Funding Source: Medline

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The division tracking dye, carboxyfluorescin diacetate succinimidyl ester, (CFSE) is currently the most informative labeling technique for characterizing the division history of cells in the immune system. Gett and Hodgkin [Nat. Immunol. 1:239-244, 2000] have pioneered the quantitative analysis of CFSE data. We confirm and extend their data analysis approach using simple mathematical models. We employ the extended Gett and Hodgkin [Nat. Immunol. 1:239-244, 2000] method to estimate the time to first division, the fraction of cells recruited into division, the cell cycle time, and the average death rate from CFSE data on T cells stimulated under different concentrations of IL-2. The same data is also fitted with a simple mathematical model that we derived by reformulating the numerical model of Deenick et al. [J. Immunol. 170:4963-4972, 2003]. By a non-linear fitting procedure we estimate parameter values and confidence intervals to identify the I parameters that are influenced by the IL-2 concentration. We obtain a significantly better fit to the data when we assume that the T cell death rate depends on the number of divisions cells have completed. We provide an outlook on future work that involves extending file Deenick et al. [J. Immunol. 170:49634972, 2003] model into the classical Smith-Martin model, and into a model with arbitrary probability distributions for death and division through subsequent divisions.

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