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Alarcon, B.

Publications and source records attributed to Alarcon, B..

3 recordsLinked to original sources

Astrocyte to microglia cross-talk in acute and chronic neuroinflammation is shaped by SFRP1

Neuroinflammation is a common feature of many neurodegenerative diseases, which fosters a dysfunctional neuron-microglia-astrocyte crosstalk that, in turn, maintains microglial cells into a perniciously reactive state that often enhance neuronal damage. The molecular components that mediate this critical communication are however not fully explored. Here, we have asked whether Secreted-Frizzled-Related-Protein-1 (SFRP1), a multifunctional regulator of cell-to-cell communication, is part of the cellular crosstalk underlying neuroinflammation. We show that in mouse models of acute and chronic neuroinflammation, astrocyte-derived SFRP1 is sufficient to promote and sustain microglial activation, and thus a chronic inflammatory state. SFRP1 allows the upregulation of components of Hypoxia Induced Factors-dependent inflammatory pathway and, to a lower extent, of those downstream of the Nuclear Factor-kappaB. We thus propose that SFRP1 acts as a critical astrocyte to microglia amplifier of neuroinflammation, representing a potential valuable therapeutic target for counteracting the harmful effect of chronic inflammation present in several neurodegenerative diseases.

neuroscience

Recreation of an antigen-driven germinal center in vitro by providing B cells with phagocytic antigen

Successful vaccines rely on activating a functional humoral response that results from generating class-switched high affinity immunoglobulins (Igs) with a superior capacity to neutralize infection. Key to this process is the germinal center (GC) reaction, in which B cells are selected in their search for antigen and T cell help. A major hurdle to understanding the mechanisms of B cell:T cell cooperation has been the lack of an in vitro system to recreate GCs in an antigen-specific manner. Here we report the generation of functional antigen-specific high affinity Igs of different isotypes in simple 2-cell type cultures of naive B and T cells. It is crucial for this process for B cells to take up antigen by a phagocytic mechanism, which results in stronger and more sustained BCR signals compared to stimulation with a soluble antigen. We also show the applicability of the system to generate antibodies of potential clinical interest.

immunology

CCR5 deficiency impairs CD4+ T cell memory responses and antigenic sensitivity through increased ceramide synthesis

In CD4+ T cells, CCR5 is not only a coreceptor for HIV-1 infection, but also contributes to their functional fitness. Here we show that by limiting GATA-1-induced transcription of specific ceramide synthases, CCR5 signaling reduces ceramide levels and thereby increases T cell antigen receptor (TCR) nanoclustering in antigen-experienced mouse and human CD4+ T cells. This activity is CCR5-specific and independent of CCR5 costimulatory activity. CCR5-deficient mice showed reduced production of high affinity class-switched antibodies, but only after antigen rechallenge, which implies an impaired memory CD4+ T cell response. This study identifies a CCR5 function in the generation of CD4+ T cell memory responses, and establishes an antigen-independent mechanism that regulates TCR nanoclustering by altering specific lipid species.

immunology