Our previous studies of T lymphocyte function in aging mice, using limiting dilution analyses (LSA), have suggested that a loss of antigen- and mitogen-reactive precursor cells for both helper and cytotoxic function may be an important component of age-associated immune dysfunction. We now propose to test the importance of precursor cell number for immune function by studies of mice in which the usual relationship between immune status and chronologic age has been altered by food restriction, parabiosis, or chimerism. Since the LDA technique permits repetitive, nondestructive testing of immune status using extremely small (5-50 ul) samples of peripheral blood, we will be able to use longitudinal designs to describe the time course of immune cell loss in normal and experimental mice. We also plan to use LDA techniques to study, at the clonal level, age-related changes in the production of memory T helper cells, and in the patterns of effector function -- e.g. lymphokine secretion and promotion of antibody synthesis -- generated by individual helper T cell precursors. Related methods will also allow us to classify precursor cells according to their fine specificity (in reactions to influenza virus), and in reactions to suboptimal stimulation at low antigen concentrations or in the presence of a limiting dose of blocking antibodies, e.g. L3T4. We plan as well to examine the kinetics and functional implications of IL-2 receptor expression in T cells from donors of different ages. Lastly, we plan to carry out pilot studies of age-related changes in T precursor cell number and subset distribution in humans. We hope that this research program will generate a coherent and detailed model of the cellular changes which underlie the age-associated decline in T cell immune function.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Project (R01)
Project #
5R01AG003978-07
Application #
3114891
Study Section
Immunological Sciences Study Section (IMS)
Project Start
1982-08-01
Project End
1990-07-31
Budget Start
1988-08-01
Budget End
1989-07-31
Support Year
7
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Boston University
Department
Type
Schools of Medicine
DUNS #
604483045
City
Boston
State
MA
Country
United States
Zip Code
02118
Witkowski, J M; Miller, R A (1999) Calcium signal abnormalities in murine T lymphocytes that express the multidrug transporter P-glycoprotein. Mech Ageing Dev 107:165-80
Telford, W G; Miller, R A (1999) Aging increases CD8 T cell apoptosis induced by hyperstimulation but decreases apoptosis induced by agonist withdrawal in mice. Cell Immunol 191:131-8
Dozmorov, I M; Miller, R A (1999) Age-associated decline in responses of naive T cells to in vitro immunization reflects shift in glucocorticoid sensitivity. Life Sci 64:1849-59
Dozmorov, I M; Miller, R A (1998) Generation of antigen-specific Th2 cells from unprimed mice in vitro: effects of dexamethasone and anti-IL-10 antibody. J Immunol 160:2700-5
Mosley, R L; Koker, M M; Miller, R A (1998) Idiosyncratic alterations of TCR size distributions affecting both CD4 and CD8 T cell subsets in aging mice. Cell Immunol 189:10-8
Miller, R A; Garcia, G; Kirk, C J et al. (1997) Early activation defects in T lymphocytes from aged mice. Immunol Rev 160:79-90
Telford, W G; Nam, S Y; Podack, E R et al. (1997) CD30-regulated apoptosis in murine CD8 T cells after cessation of TCR signals. Cell Immunol 182:125-36
Bining, N; Miller, R A (1997) Cytokine production by subsets of CD4 memory T cells differing in P-glycoprotein expression: effects of aging. J Gerontol A Biol Sci Med Sci 52:B137-45
Dozmorov, I; Miller, R A (1997) In vitro production of antigen-specific T cells from unprimed mice: role of dexamethasone and anti-IL-10 antibodies. Cell Immunol 178:187-96
Witkowski, J M; Gorgas, G; Miller, R A (1996) Reciprocal expression of P-glycoprotein and TAP1 accompanied by higher expression of MHC class I antigens in T cells of old mice. J Gerontol A Biol Sci Med Sci 51:B76-82

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