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Froehle, L. M.

Publications and source records attributed to Froehle, L. M..

2 recordsLinked to original sources

Colon resident CD8+ T cells from people with HIV on antiretroviral therapy exhibit mitochondrial dysfunction and impaired responses

CD8+ tissue-resident memory T cells (CD8+ TRM) play an important role in mediating immune responses against HIV in the gastrointestinal (GI) mucosa. Antiretroviral therapy (ART) successfully supresses HIV replication in the blood, but fails to restore GI homeostasis, particularly within gut associated lymphoid tissue (GALT). The importance of cellular metabolism in shaping CD8+ TRM antiviral function has emerged as a crucial aspect of general immunoregulation. To gain better insight into the immunoregulation of CD8+ TRM during HIV, we characterized the function of blood and colon CD8+ T cells in people with HIV (PWH) on ART and HIV-uninfected individuals. We show that a higher proportion of activated CD8+ TRM persisted in the colon of PWH on ART, and these cells exhibited weaker immune response and compromised mitochondrial function compared to their peripheral counterparts. We also observed decreased mitochondrial function in CD8+ T cell in the colon compared to peripheral blood in PWH on ART. The study indicates that mitochondrial bioenergetic properties may be an indicator of colonic CD8+ TRM dysfunction in PWH on ART and highlights the importance of understanding cellular metabolism in shaping CD8+ TRM function to develop targeted immunotherapies for PWH.

immunology↗

Spatially regulated protease activity in lymph nodes renders B cell follicles a sanctuary for retention of intact antigens

The structural integrity of vaccine antigens is critical, as antigen degradation in vivo could eliminate neutralizing epitopes and create competing B cell responses against irrelevant breakdown products. Using FRET imaging and imaging zymography, we found that protease activity and antigen breakdown are spatially heterogeneous in lymph nodes. Following protein immunization, antigens are rapidly degraded in the subcapsular sinus, paracortex, and interfollicular regions of the tissue. By contrast, the follicles and follicular dendritic cell (FDC) networks exhibit low protease activity and antigen degradation rates. Immunization regimens targeting antigen rapidly to FDCs led to germinal centers (GCs) where responses to intact antigen were highly dominant, while traditional bolus immunizations led to weaker GC responses where more GC B cells bound to breakdown products than intact antigen. Thus, spatially-compartmentalized antigen proteolysis impacts humoral immunity and can be exploited to enhance vaccine-induced production of antibody responses against key pathogen structural epitopes.

immunology↗