<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-08-05T15:46:03Z</responseDate><request verb="GetRecord" identifier="oai:repisalud.isciii.es:20.500.12105/18725" metadataPrefix="marc">https://repisalud.isciii.es/rest/oai/request</request><GetRecord><record><header><identifier>oai:repisalud.isciii.es:20.500.12105/18725</identifier><datestamp>2024-02-27T15:10:08Z</datestamp><setSpec>com_20.500.12105_15322</setSpec><setSpec>com_20.500.12105_2051</setSpec><setSpec>col_20.500.12105_16927</setSpec></header><metadata><record xmlns="http://www.loc.gov/MARC21/slim" xmlns:dcterms="http://purl.org/dc/terms/" xmlns:doc="http://www.lyncode.com/xoai" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.loc.gov/MARC21/slim http://www.loc.gov/standards/marcxml/schema/MARC21slim.xsd">
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   <datafield ind2=" " ind1=" " tag="720">
      <subfield code="a">Fernández-Arjona, María Del Mar</subfield>
      <subfield code="e">author</subfield>
   </datafield>
   <datafield ind2=" " ind1=" " tag="720">
      <subfield code="a">León-Rodríguez, Ana</subfield>
      <subfield code="e">author</subfield>
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   <datafield ind2=" " ind1=" " tag="720">
      <subfield code="a">Grondona, Jesús M</subfield>
      <subfield code="e">author</subfield>
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   <datafield ind2=" " ind1=" " tag="720">
      <subfield code="a">López-Ávalos, María Dolores</subfield>
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   <datafield ind2=" " ind1=" " tag="260">
      <subfield code="c">2022-07-28</subfield>
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      <subfield code="a">Innate immune memory explains the plasticity of immune responses after repeated immune stimulation, leading to either enhanced or suppressed immune responses. This process has been extensively reported in peripheral immune cells and also, although modestly, in the brain. Here we explored two relevant aspects of brain immune priming: its persistence over time and its dependence on TLR receptors. For this purpose, we used an experimental paradigm consisting in applying two inflammatory stimuli three months apart. Wild type, toll-like receptor (TLR) 4 and TLR2 mutant strains were used. The priming stimulus was the intracerebroventricular injection of neuraminidase (an enzyme that is present in various pathogens able to provoke brain infections), which triggers an acute inflammatory process in the brain. The second stimulus was the intraperitoneal injection of lipopolysaccharide (a TLR4 ligand) or Pam3CSK4 (a TLR2 ligand). One day after the second inflammatory challenge the immune response in the brain was examined. In wild type mice, microglial and astroglial density, as well as the expression of 4 out of 5 pro-inflammatory genes studied (TNFα, IL1β, Gal-3, and NLRP3), were increased in mice that received the double stimulus compared to those exposed only to the second one, which were initially injected with saline instead of neuraminidase. Such enhanced response suggests immune training in the brain, which lasts at least 3 months. On the other hand, TLR2 mutants under the same experimental design displayed an enhanced immune response quite similar to that of wild type mice. However, in TLR4 mutant mice the response after the second immune challenge was largely dampened, indicating the pivotal role of this receptor in the establishment of immune priming. Our results demonstrate that neuraminidase-induced inflammation primes an enhanced immune response in the brain to a subsequent immune challenge, immune training that endures and that is largely dependent on TLR4 receptor.</subfield>
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      <subfield code="a">10.3389/fncel.2022.945229</subfield>
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   <datafield ind1="8" ind2=" " tag="024">
      <subfield code="a">1662-5102</subfield>
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   <datafield ind1="8" ind2=" " tag="024">
      <subfield code="a">Frontiers in cellular neuroscience</subfield>
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   <datafield ind1="8" ind2=" " tag="024">
      <subfield code="a">http://hdl.handle.net/10668/20639</subfield>
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   <datafield ind1="8" ind2=" " tag="024">
      <subfield code="a">35966200</subfield>
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      <subfield code="a">http://hdl.handle.net/20.500.12105/18725</subfield>
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   <datafield tag="653" ind2=" " ind1=" ">
      <subfield code="a">TLR2</subfield>
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      <subfield code="a">TLR4</subfield>
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      <subfield code="a">immune priming</subfield>
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   <datafield tag="653" ind2=" " ind1=" ">
      <subfield code="a">microglia</subfield>
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      <subfield code="a">mouse</subfield>
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      <subfield code="a">neuraminidase</subfield>
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      <subfield code="a">neuroinflammation</subfield>
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   <datafield ind2="0" ind1="0" tag="245">
      <subfield code="a">Microbial neuraminidase induces TLR4-dependent long-term immune priming in the brain.</subfield>
   </datafield>
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