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Lerm, D.

Publications and source records attributed to Lerm, D..

2 recordsLinked to original sources

Natural aging drives a subclinical cardiovascular phenotype in a non-human primate

Aging is an inevitable risk factor for cardiovascular disease. Profound understanding of mechanisms underlying the early stages of cardiovascular aging is essential for the development of novel therapeutics. Therefore, animal models which closely reflect the human condition are highly sought after. Here, we investigated natural cardiovascular aging in a non-human primate, comparing healthy young-adult and aged common marmosets (Callithrix jacchus). Despite preservation of most cardiac functional parameters in aged animals, significant histological alterations were found including fibrosis and microvascular rarefaction. Molecular phenotyping by single-nuclei RNA-sequencing revealed activation of cardiac stress, pro-inflammatory and fibrotic gene programs in aged hearts. Importantly, proteomic analysis of cardiac extracellular vesicles revealed a cardioprotective cargo in young animals while functionally demonstrating pro-angiogenic properties on human cardiac microvascular endothelial cells. Finally, large vessel atherosclerosis was strikingly evident in aged animals and elucidated by bulk RNA-sequencing. Overall, the aging marmoset offers a great potential for translational cardiovascular research.

physiology↗

The metabolic program of inflammatory eosinophils accounts for chronic parasite-induced skin-disease

Eosinophils exert antimicrobial, cytotoxic and immunoregulatory effects, but their function in cutaneous tissue still remains poorly understood. Here, we used a mouse model of chronic cutaneous leishmaniasis caused by the protozoan parasite Leishmania (L.) mexicana to investigate the function and transcriptomic signature of eosinophils in the skin. In C57BL/6 wild-type mice, L. mexicana infection induced local and systemic eosinophilia that was dependent on type 2 innate lymphoid cells and interleukin-5. Genetic and pharmacological depletion of eosinophils led to complete clinical resolution of disease, which was accompanied by a more pronounced Th1 and M1-like macrophage response. Bioinformatic analyses revealed a novel inflammatory and tissue-specific transcriptional trajectory in skin-infiltrating eosinophils. Skin-imprinted eosinophils strongly expressed the high-affinity glucose transporter 3 (Slc2a3), deprived the environment of glucose and directly impeded the function of Th1 cells. Together, our results demonstrate that disease progression and chronicity of L. mexicana infection is caused by inflammatory eosinophils and linked to their metabolic program. Short SummaryThe authors describe that depletion of eosinophils prevents chronic cutaneous disease caused by Leishmania mexicana. They identify a novel, tissue-specific transcriptomic profile of inflammatory skin eosinophils and demonstrate that skin-imprinted eosinophils show strong glucose uptake and directly repress Th1 responses. GRAPHICAL ABSTRACT O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=173 SRC="FIGDIR/small/640104v1_ufig1.gif" ALT="Figure 1"> View larger version (36K): org.highwire.dtl.DTLVardef@3ecd3org.highwire.dtl.DTLVardef@1b1283forg.highwire.dtl.DTLVardef@1c941fdorg.highwire.dtl.DTLVardef@b7c39_HPS_FORMAT_FIGEXP M_FIG C_FIG KEY POINTSO_LIEosinophil accumulation precedes the development of chronic cutaneous leishmaniasis C_LIO_LIEosinophil depletion or IL-5 neutralization lead to clinical cure of the disease C_LIO_LIL. mexicana infection elicits a unique transcriptomic signature of skin eosinophils C_LIO_LISkin eosinophils show a marked uptake of glucose and directly repress Th1 responses C_LI

immunology↗