bioRxiv Science⌕ Search

Biology subjects

Peters, M. Q.

Publications and source records attributed to Peters, M. Q..

3 recordsLinked to original sources

Regulatory T cells restrain IL-15-mediated cytotoxic and bystander T cell activity in mucosal tissue without compromising antigen-driven memory

ABSTRACT/SUMMARYMany pathogenic human infections enter the host via a mucosal surface. These nonlymphoid tissues are abundantly populated by polyclonal memory CD8 T cells that persist following infections for protection upon repeat exposure. Memory T cells can be triggered via T cell receptor recognition of their cognate antigen upon re-infection to exert effector functions, including cytotoxicity and cytokine production, and assist in pathogen elimination. Alternatively, some T cells are bystander activated by cytokines without an antigenic signal. This layered approach boosts efacient pathogen clearance but also poses a threat to host tissues if this response is not properly controlled. Here, we investigate the regulatory mechanisms modulating the tissue memory CD8 T cell response upon recall, leveraging viral rechallenge mouse models to distinguish antigen-driven versus cytokine-activated memory tissue CD8 T cell immunity. We and that regulatory T cells (Treg) participate in restricting cytotoxic and bystander activity without compromising the antigen-driven protective memory CD8 T cell response in mucosal T cells. Critically, Treg provide extrinsic regulation of tissue CD8 T cell cytotoxicity in part through restriction of available IL-2 and IL-15 trans-presentation. Our andings help deane the extrinsic environmental and cellular cues in mucosal tissues that direct tissue-memory CD8 T cells.

immunology↗

Infant CD4 T-cell response to SARS-CoV-2 mRNA vaccination is restricted in cytokine production and modified by vaccine manufacturer

BACKGROUNDSafe and effective vaccines are a key preventative measure to protect infants from SARS-CoV-2 infection and disease. Although mRNA vaccines induce robust antibody titers in infants, little is known about the quality of CD4 T-cell responses induced by vaccination. CD4 T-cell responses are important in orchestrating coordinated immune responses during infection and may help to limit disease severity. METHODS: To characterize the CD4 T-cell response to SARS-CoV-2 mRNA vaccination in infants, we sampled blood from 13 infants before and after primary SARS-CoV-2 mRNA vaccine series; samples from 12 historical vaccinated adults were used for comparisons. PBMC were stimulated with Spike peptide pools and the ability of CD4 T-cells to secrete Th1, Th2, and Th17 cytokines was quantified. A measure of polyfunctionality was generated using the COMPASS algorithm. RESULTS: We observed a significant increase in CD4 T-cells producing IL-2 (0.01% vs. 0.08%, p=0.04) and TNF- (0.007% vs. 0.07%, p=0.007) following vaccination in infants but a more muted induction of IFN-{gamma} production (0.01% vs 0.04%, p=0.08). This contrasted with adults, in whom vaccination induced robust production of IFN-{gamma}, IL-2, and TNF-. Th2 and Th17 responses were limited in both infants and adults. In infants, CD4 T-cell responses post-vaccination were greater in those who received mRNA-1273 versus BNT162b. In contrast to CD4 T-cell responses, Spike-specific IgG titers were similar in infants and adults. CONCLUSIONS: These data suggest that infants have restricted induction of cytokine producing CD4 T-cells following SARS-CoV-2 mRNA vaccination relative to adults.

immunology↗

A novel non-invasive method to sample immune cells in the lower female genital tract

T cells in the human female genital tract (FGT)2 are key mediators of susceptibility to and protection from infection, including HIV and other sexually transmitted infections. There is a critical need for increased understanding of the distribution and activation of T cell populations in the FGT, but current sampling methods require a healthcare provider and are expensive, limiting the ability to study these populations longitudinally. To address these challenges, we have developed a method to sample immune cells from the FGT utilizing disposable menstrual discs which are non-invasive, self-applied, and low-cost. To demonstrate reproducibility, we sampled the cervicovaginal fluid (CVF)3 of healthy, reproductive-aged individuals using menstrual discs over three sequential days. CVF was processed for cervicovaginal cells, and high parameter flow cytometry was used to characterize immune populations. We identified large numbers of live, CD45+ leukocytes, as well as distinct populations of T cells and B cells. Within the T cell compartment, activation and suppression status of T cell subsets were consistent with previous studies of the FGT utilizing current approaches, including identification of both tissue resident and migratory populations. In addition, the T cell population structure was highly conserved across days within individuals but divergent across individuals. Our approach to sample immune cells in the FGT with menstrual discs will decrease barriers to participation and empower longitudinal sampling in future research studies.

immunology↗