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Biomedical subjects

M E Weksler

Publications and source records attributed to M E Weksler.

At least 19 recordsLinked to original sources

Dysregulation of the humoral immune response in old mice.

The increase in autoantibodies with age of both experimental animals and humans has been thought to reflect a shift in the antibody repertoire from foreign to self antigens. In mice, before immunization, the age-associated increase in antibodies reactive with a prototypic autoantigen, bromelain-treated autologous erythrocytes (BrMRBC), reflected a 3-fold increase in serum IgM and the number of IgM-secreting spleen cells in old compared with young mice. However, the percentage of the IgM-secreting spleen cell repertoire reactive with BrMRBC in old mice was actually approximately 50% that in young mice. In contrast, after immunization with sheep erythrocytes (SRBC), old mice showed a 5-fold increase in the percentage of IgM-secreting cells reactive with BrMRBC while young mice showed no significant increase. The converse is true for the percentage of IgM-secreting spleen cells in old mice specific for SBRC, which is 10% the number generated by young mice. The increased autoantibody response of old mice is not, however, linked to their poor response to the nominal antigen. Thus, immunization with phosphorylcholine (PC) conjugated keyhole limpet hemocyanin, an antigen that induces a comparable anti-PC response in old and young mice, also induced more autoantibody forming cells in old than young mice. The increased autoantibody response of old mice after immunization can be accounted for by both an increased number of Ig-secreting spleen cells as well as an increased percentage of the expressed repertoire of IgM-secreting spleen cells that react with autoantigens.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Time to peak serum antibody response to influenza vaccine.

The time to the appearance of a peak serum antibody response to influenza virus vaccine is not clearly defined. We compared the most commonly used time intervals described in the literature--4 and 6 weeks after vaccination. We studied 118 elderly patients from three different geographic sites. The 1992 to 1993 trivalent inactivated influenza virus vaccine containing influenza virus A/Beijing/353/89 (H3N2), influenza virus A/Texas/36/91 (H1N1), and influenza virus B/Panama/45/90 was used. No statistically significant differences were found at the 4- and 6-week intervals after vaccination.

Aged

Effect of age on the expressed B cell repertoire: role of B cell subsets.

Aged humans and experimental animals are impaired in their responses to most foreign antigens although they produce greater amounts of autoantibodies. We have examined the effect of age on the production of antibodies to a prototypic foreign antigen, sheep erythrocytes (SRBC), and to a prototypic autoantigen, bromelain-treated mouse erythrocytes (BrMRBC), in young and old mice before and after immunization with SRBC. Old mice express more anti-BrMRBC plaque-forming cell (PFC) antibodies before and an even greater number after immunization with SRBC than young mice. Conversely, old mice produce far fewer anti-SRBC PFC than young mice following immunization with SRBC. We hypothesized that the differences in the responses of old mice to BrMRBC and SRBC reflects differences in the activity of CD5+ and CD5- B cells. To test this hypothesis we immunized young and old mice with foreign antigens reported (and confirmed in our studies) to stimulate CD5+ B cells [TNP-ficoll and phosphorylcholine-keyhole limpet hemocyanin (KLH)] or CD5- B cells (SRBC and TNP-KLH). We found that the PFC response of old mice to antigens mediated by CD5+ B cells was equal to or greater than that of young mice. In contrast the PFC response of old mice induced by antigens mediated by CD5- B cells was only 10% that of young mice. Thus it appears that the immune response of old mice is well maintained for antigens which elicit a CD5+ B cell response but not for those which elicit a CD5- B cell response.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Prothymosin alpha expression occurs during G1 in proliferating B or T lymphocytes.

To gain insight into possible functions for prothymosin alpha in the proliferative cycle of lymphocytes, we examined the kinetics of prothymosin alpha mRNA expression in mitogen stimulated murine lymphocytes. This mRNA increases after mitogen stimulation, peaking in mid G1. This kinetics is compatible with induction of the prothymosin alpha gene by the c-myc protein (Eilers, M., Schirm, S. and Bishop, J.M. (1991) EMBO J., 10, 133-141). Thus, although prothymosin alpha mRNA is found throughout the cell cycle, the elevated expression in G1 may be associated with an increased requirement for prothymosin alpha during the G1/S transition or the S phase of the cell cycle.

Animals

Altered major histocompatibility complex-restricted antigen recognition by T cells from elderly humans.

Positive selection of T cells within the thymus gland leads to major histocompatibility complex (MHC)-restricted recognition of antigen by T lymphocytes. As the thymus gland involutes with age, altered MHC-restricted antigen recognition by T cells from elderly humans would be expected. We have tested this hypothesis by comparing the proliferative response of T cells and T cell clones from aged and young subjects to influenza determinants presented by autologous or allogeneic antigen-presenting cells (APC). Under conditions in which the allogeneic mixed lymphocyte reaction was minimal, T cells from six of seven aged donors but only one of seven young donors were stimulated by influenza vaccine presented by allogeneic APC. More importantly, one-half of the influenza-specific T cell clones derived from aged donors, but none of the clones derived from young donors, were activated by influenza vaccine presented by allogeneic APC. While 80% of the MHC-nonrestricted influenza-specific T cell clones expressed the gamma/delta T cell receptor, 20% of these clones expressed the alpha/beta T cell receptor. Thus, changes in MHC-restricted antigen recognition by T cells and in altered distribution of alpha/beta versus the gamma/delta T cell receptor bearing antigen-specific T cell clones occur with aging.

Adult

Immune senescence: mechanisms and clinical implications.

There are many changes in the immune response with age, most of which can be related to the involution of the thymus gland and alteration of the distribution and function of T lymphocytes. These changes indirectly influence B-cell function, which not only amplifies the immune deficits, but leads to the increased production of autoantibodies and monoclonal immunoglobulins with age. Thus, immune senescence is characterized by both an immune deficiency and an immune dysregulated state.

Aging

The immunogenetics of immune senescence.

Immune senescence is characterized by a dysregulation of the immune system. With respect to humoral immunity, aging is associated with an increased level of many autoantibodies and a decreased antibody response to most foreign antigens. This observation reflects a decreased capacity to activate antibody production by CD5-negative B cells despite a normal or increased capacity to generate antibodies produced by the CD5-positive B cells. A similar dysregulation of cell-mediated immunity is manifested by an altered balance in cytokine production by T cells from old as compared to young subjects. Thus, the production of interleukin-2 (IL-2), IL-3 and granulocyte-macrophage colony-stimulating factor by T cells from old subjects is decreased although the production of IL-4, IL-5 and IL-6 is undiminished or actually increased.

Aged

Host resistance and the immune system.

Elderly persons are more susceptible and vulnerable to many infections compared with young adults. This phenomenon can be attributed to a decline in host defense mechanisms, particularly altered immune function. The effects of aging on T- and B-lymphocyte function; antigen-presenting cells, natural killer cells, and granulocytes; and organ-specific host resistance are discussed in this article.

Aged

"Cross-wiring" of the immune response in old mice: increased autoantibody response despite reduced antibody response to nominal antigen.

Older humans and experimental animals have been repeatedly found to have higher titers of autoantibodies than do younger individuals despite the impaired responses of older individuals to foreign antigens. The studies reported here were designed to examine the relationship between these two age-related changes in antibody responses. Antibody response to foreign antigen was measured concurrently with autoantibody response in the same mice. Old mice (18-24 months old) had decreased responses to foreign antigens and increased responses to bromelain-treated syngeneic erythrocytes, compared to young mice (2 months old). In vitro mixing experiments were consistent with the possibility that suppressor cell activity in spleen cells from old mice reduce the antibody response to foreign antigen but not to autologous antigen. The results support an emerging view that age-associated changes in immune responses are the result of dysregulation rather than exhaustion of the immune system.

Aging

Decreased steady state c-myc mRNA in activated T cell cultures from old humans is caused by a smaller proportion of T cells that transcribe the c-myc gene.

The proliferative response of T cells is known to decrease with age of the T cell donor. We now report that this proliferative defect affects both major subsets (CD4+, CD8- and CD4-, CD8+) of peripheral T cells from old humans. Furthermore, this proliferative defect can be detected within the first hours after addition of mitogen by a reduction in the steady state levels of c-myc mRNA in T cell cultures from old donors. Lymphocytes from old humans cultured with PHA have less than 50% of the level of c-myc message than do such cultures from young donors. Nuclear run-on assays suggest that the decreased steady state level of c-myc mRNA in cultures from old donors is caused by reduced transcription of the c-myc gene in T cells from old donors. The age-associated defect in transcription of the c-myc gene affects the second exon to a greater extent than the first, noncoding exon. Individual T lymphocytes from old donors that do express c-myc message, detected by in situ hybridization, have the same intracellular level of c-myc message as T lymphocytes from young donors. These data add additional support for the hypothesis that the proliferative defect of T lymphocytes from old humans is caused by the smaller fraction of T cells from old as compared with young humans that can be activated by mitogens to enter the G1 phase of the cell cycle.

Aging

Defective expression of high affinity IL-2 receptors on activated T cells from aged humans.

The proliferative response of T cells from aged humans to a number of mitogens is significantly reduced. We report here that there is a decrease in high affinity IL-2 receptor (IL-2R) expression on activated T cells from aged humans. Scatchard analysis of the binding of [125I]IL-2 demonstrates fewer high affinity IL-2 binding sites. Autoradiographic techniques demonstrate that this results from there being fewer activated T cells from old as compared to young donors that express high affinity IL-2R. However, T cells from old donors that do not express high affinity IL-2 binding sites express both the IL-2 binding 55 and 75 kd chains. Thus, although the two IL-2 binding peptides are expressed on activated T cells from old donors, expression of the high affinity IL-2R is reduced. This may explain the decreased ability of T cells from old donors to respond to IL-2. The impaired ability of activated T cells from old donors to express high affinity IL-2R while expressing the 55 and 75 kd chains may provide insights into the mechanisms of IL-2 interactions with its receptor.

Adult

Cellular basis for the age-associated increase in autoimmune reactions.

The mechanisms that lead to the increased expression of autoantibodies with age are poorly understood. We have studied the number, size, and density of spleen and peritoneal cells from young and old BALB/c and C57BL/6 mice as well as the frequency of clonal precursors for antibodies to mouse erythrocytes, thyroglobulin, and IgG in these lymphoid preparations. Old mice have a 6-fold increase in the number of resident peritoneal cells and a 2-fold increase in the absolute number of Ly1-bearing B cells in this population. Furthermore, old mice have twice as many large, low density splenic B cells as young mice. The frequencies of B cell clonal precursors for anti-BrMRBC and anti-thyroglobulin antibody-forming cells in old mice were 3-10 times greater than in young mice. In the same cultures, however, no increase in the frequencies of B cell clonal precursors for anti-IgG or anti-DNA antibody forming cells was detected in old compared to young mice. These findings and other data suggest that there are at least two families of B cell autoantibody precursors, one including anti-BrMRBC and anti-thyroglobulin autoantibodies, the other including anti-IgG and anti-DNA antibodies. Studies of the differential regulation of these two families of autoantibody precursors might contribute to a greater understanding of autoimmune phenomena in age and disease.

Aging

Immunobiology of aging and cancer.

Although the incidence of neoplasms is increased in the elderly, some tumors appear to grow more slowly in old as compared to young patients. We have used the B16 melanoma to explore the relationship between age, T-lymphocyte function, and the rate of tumor growth. Increasing age is associated with a decreased rate of tumor growth and impaired T-cell function in C57BL/6 mice. Furthermore, when T-cell immunity in young mice is compromised by thymectomy, B16 tumor growth is decreased. Mixed cell transfer studies demonstrated that T cells from young but not old donors stimulate the growth of B16 melanoma cells in young lethally irradiated recipients. Recently, T cells from young but not old mice have been reported to produce angiogenic factors. As tumors from young mice have a richer vascular supply than in old mice, it appears that one mechanism for the age-associated decrease in B16 melanoma growth is the decreased capacity of T cells from old mice to generate angiogenic factors. However, parabiosis of young and old mice showed that local factors in old mice also limit the stimulatory influences of T cells from young mice. Novel therapeutic approaches to limit the growth of tumors might result from a greater understanding of the production of and response to angiogenic factors produced by T cells.

Aging