Author: Xie, Xuanxiao; Shrimpton, Jennifer; Doody, Gina M.; Conaghan, Philip G.; Ponchel, Frederique
Title: Bâ€cell capacity for differentiation changes with age Cord-id: 4q5b3xjz Document date: 2021_3_12
ID: 4q5b3xjz
Snippet: BACKGROUND: Ageâ€related immune deficiencies are thought to be responsible for increased susceptibility to infection in older adults, with alterations in lymphocyte populations becoming more prevalent over time. The loss of humoral immunity in ageing was attributed to the diminished numbers of B cells and the reduced ability to generate immunoglobulin. AIMS: To compare the intrinsic Bâ€cell capacity for differentiation into mature plasma cells (PCs), between young and old donors, using in vitr
Document: BACKGROUND: Ageâ€related immune deficiencies are thought to be responsible for increased susceptibility to infection in older adults, with alterations in lymphocyte populations becoming more prevalent over time. The loss of humoral immunity in ageing was attributed to the diminished numbers of B cells and the reduced ability to generate immunoglobulin. AIMS: To compare the intrinsic Bâ€cell capacity for differentiation into mature plasma cells (PCs), between young and old donors, using in vitro assays, providing either effective Tâ€cell help or activation via TLR engagement. METHODS: B cells were isolated from healthy individuals, in younger (30–38 years) and older (60–64 years) donors. An in vitro model system of Bâ€cell differentiation was used, analysing 5 differentiation markers by flow cytometry, under Tâ€dependent (TD: CD40/BCR stimulation) or Tâ€independent (TI: TLR7/BCR activation) conditions. Antibody secretion was measured by ELISA and gene expression using qPCR. RESULTS: TI and TD differentiation resulted in effective proliferation of B cells followed by their differentiation into PC. Bâ€cellâ€executed TI differentiation was faster, all differentiation marker and genes being expressed earlier than under TD differentiation (day 6), although generating less viable cells and lower antibody levels (day 13). Ageâ€related differences in Bâ€cell capacity for differentiation were minimal in TD differentiation. In contrast, in TI differentiation age significantly affected proliferation, viability, differentiation, antibody secretion and gene expression, older donors being more efficient. CONCLUSION: Altogether, Bâ€cell differentiation into PC appeared similar between age groups when provided with Tâ€cell help, in contrast to TI differentiation, where multiple ageâ€related changes suggest better capacities in older donors. These new findings may help explain the emergence of autoantibodies in ageing.
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