Search bioRxiv⌕ Search

Biology subjects

Debisarun, P. A.

Publications and source records attributed to Debisarun, P. A..

3 recordsLinked to original sources

Fatty acid desaturation and lipoxygenase pathways support trained immunity

Infections and vaccinations can induce long-term enhanced responses of innate immune cells to heterologous stimuli, establishing a de facto innate immunological memory termed trained immunity. Monocytes exposed to the Bacillus Calmette-Guerin (BCG) vaccine, have a trained immunity phenotype, characterized by an increased biosynthesis of different lipid mediators (LMs) derived from long-chain polyunsaturated fatty acids (PUFAs). Pharmacological and genetic approaches showed that long-chain PUFA synthesis and lipoxygenase (LOX)-derived LMs are crucial for the BCG trained immunity responses of human monocytes. Furthermore, monocytes of healthy individuals vaccinated with BCG are enriched in 12-LOX products. The elucidation of the lipid metabolic pathways that promote innate immune memory contributes to our understanding of trained immunity and may help identify therapeutic tools and targets for the modulation of innate immune responses.

immunology↗

MMR vaccination induces a trained immunity program characterized by functional and metabolic reprogramming of γδ T cells

The measles, mumps and rubella (MMR) vaccine protects against all-cause mortality in children, but the immunological mechanisms mediating these effects are poorly known. We systematically investigated whether MMR can induce long-term functional changes in innate immune cells, a process termed trained immunity, that could at least partially mediate this heterologous protection. In a randomized placebo-controlled trial, 39 healthy adults received either the MMR vaccine or a placebo. By using single-cell RNA-sequencing, we found that MMR caused transcriptomic changes in CD14-positive monocytes and NK cells, but most profoundly in {gamma}{delta} T cells. Surprisingly, monocyte function was not altered by MMR vaccination. In contrast, the function of {gamma}{delta} T cells was significantly enhanced by MMR vaccination, with higher production of TNF and IFN{gamma}, as well as upregulation of cellular metabolic pathways. In conclusion, we describe a new trained immunity program characterized by modulation of {gamma}{delta} T cell function induced by MMR vaccination. One-sentence summaryMMR vaccination induces cellular and metabolic reprogramming in {gamma}{delta} T cells towards a more active phenotype.

immunology↗

Differences in anti-viral immune responses in individuals of Indian and European origin: relevance for the COVID-19 pandemic

During the COVID-19 pandemic, large differences in susceptibility and mortality due to SARS-CoV-2 infection have been reported between populations in Europe and South Asia. While both host and environmental factors (including BCG vaccination) have been proposed to explain this, the potential biological substrate of these differences is unknown. We purified peripheral blood mononuclear cells from individuals living in India and the Netherlands at baseline and 10-12 weeks after BCG vaccination. We compared chromatin accessibility between the two populations at baseline, as well as gene transcription profiles and cytokine production capacities upon viral stimulation with influenza and SARS-CoV-2. The chromatin accessibility of genes important for adaptive immunity was higher in Indians compared to Europeans, while the latter had more accessible chromatin regions in genes of the innate immune system. At the transcriptional level, we observed that Indian volunteers displayed a more tolerant immune response to viral stimulation, in contrast to a more exaggerated response in Europeans. BCG vaccination strengthened the tolerance program in Indians, but not in Europeans. These differences may partly explain the different impact of COVID-19 on the two populations.

immunology↗