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CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis

BACKGROUND: CXCL13 is a B and T lymphocyte chemokine that mediates neuroinflammation through its receptor CXCR5. This chemokine is highly expressed by motoneurons (MNs) in Amyotrophic Lateral Sclerosis (ALS) SOD1G93A (mSOD1) mice during the disease, particularly in fast-progressing mice. Accordingly...

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Autores principales: Trolese, Maria Chiara, Mariani, Alessandro, Terao, Mineko, de Paola, Massimiliano, Fabbrizio, Paola, Sironi, Francesca, Kurosaki, Mami, Bonanno, Silvia, Marcuzzo, Silvia, Bernasconi, Pia, Trojsi, Francesca, Aronica, Eleonora, Bendotti, Caterina, Nardo, Giovanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7670099/
https://www.ncbi.nlm.nih.gov/pubmed/33161233
http://dx.doi.org/10.1016/j.ebiom.2020.103097
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author Trolese, Maria Chiara
Mariani, Alessandro
Terao, Mineko
de Paola, Massimiliano
Fabbrizio, Paola
Sironi, Francesca
Kurosaki, Mami
Bonanno, Silvia
Marcuzzo, Silvia
Bernasconi, Pia
Trojsi, Francesca
Aronica, Eleonora
Bendotti, Caterina
Nardo, Giovanni
author_facet Trolese, Maria Chiara
Mariani, Alessandro
Terao, Mineko
de Paola, Massimiliano
Fabbrizio, Paola
Sironi, Francesca
Kurosaki, Mami
Bonanno, Silvia
Marcuzzo, Silvia
Bernasconi, Pia
Trojsi, Francesca
Aronica, Eleonora
Bendotti, Caterina
Nardo, Giovanni
author_sort Trolese, Maria Chiara
collection PubMed
description BACKGROUND: CXCL13 is a B and T lymphocyte chemokine that mediates neuroinflammation through its receptor CXCR5. This chemokine is highly expressed by motoneurons (MNs) in Amyotrophic Lateral Sclerosis (ALS) SOD1G93A (mSOD1) mice during the disease, particularly in fast-progressing mice. Accordingly, in this study, we investigated the role of this chemokine in ALS. METHODS: We used in vitro and in vivo experimental paradigms derived from ALS mice and patients to investigate the expression level and distribution of CXCL13/CXCR5 axis and its role in MN death and disease progression. Moreover, we compared the levels of CXCL13 in the CSF and serum of ALS patients and controls. FINDINGS: CXCL13 and CXCR5 are overexpressed in the spinal MNs and peripheral axons in mSOD1 mice. CXCL13 inhibition in the CNS of ALS mice resulted in the exacerbation of motor impairment (n = 4/group;Mean_Diff.=27.81) and decrease survival (n = 14_Treated:19.2 ± 1.05wks, n = 17_Controls:20.2 ± 0.6wks; 95% CI: 0.4687–1.929). This was corroborated by evidence from primary spinal cultures where the inhibition or activation of CXCL13 exacerbated or prevented the MN loss. Besides, we found that CXCL13/CXCR5 axis is overexpressed in the spinal cord MNs of ALS patients, and CXCL13 levels in the CSF discriminate ALS (n = 30) from Multiple Sclerosis (n = 16) patients with a sensitivity of 97.56%. INTERPRETATION: We hypothesise that MNs activate CXCL13 signalling to attenuate CNS inflammation and prevent the neuromuscular denervation. The low levels of CXCL13 in the CSF of ALS patients might reflect the MN dysfunction, suggesting this chemokine as a potential clinical adjunct to discriminate ALS from other neurological diseases. FUNDING: Vaccinex, Inc.; Regione Lombardia (TRANS-ALS)
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spelling pubmed-76700992020-11-23 CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis Trolese, Maria Chiara Mariani, Alessandro Terao, Mineko de Paola, Massimiliano Fabbrizio, Paola Sironi, Francesca Kurosaki, Mami Bonanno, Silvia Marcuzzo, Silvia Bernasconi, Pia Trojsi, Francesca Aronica, Eleonora Bendotti, Caterina Nardo, Giovanni EBioMedicine Research Paper BACKGROUND: CXCL13 is a B and T lymphocyte chemokine that mediates neuroinflammation through its receptor CXCR5. This chemokine is highly expressed by motoneurons (MNs) in Amyotrophic Lateral Sclerosis (ALS) SOD1G93A (mSOD1) mice during the disease, particularly in fast-progressing mice. Accordingly, in this study, we investigated the role of this chemokine in ALS. METHODS: We used in vitro and in vivo experimental paradigms derived from ALS mice and patients to investigate the expression level and distribution of CXCL13/CXCR5 axis and its role in MN death and disease progression. Moreover, we compared the levels of CXCL13 in the CSF and serum of ALS patients and controls. FINDINGS: CXCL13 and CXCR5 are overexpressed in the spinal MNs and peripheral axons in mSOD1 mice. CXCL13 inhibition in the CNS of ALS mice resulted in the exacerbation of motor impairment (n = 4/group;Mean_Diff.=27.81) and decrease survival (n = 14_Treated:19.2 ± 1.05wks, n = 17_Controls:20.2 ± 0.6wks; 95% CI: 0.4687–1.929). This was corroborated by evidence from primary spinal cultures where the inhibition or activation of CXCL13 exacerbated or prevented the MN loss. Besides, we found that CXCL13/CXCR5 axis is overexpressed in the spinal cord MNs of ALS patients, and CXCL13 levels in the CSF discriminate ALS (n = 30) from Multiple Sclerosis (n = 16) patients with a sensitivity of 97.56%. INTERPRETATION: We hypothesise that MNs activate CXCL13 signalling to attenuate CNS inflammation and prevent the neuromuscular denervation. The low levels of CXCL13 in the CSF of ALS patients might reflect the MN dysfunction, suggesting this chemokine as a potential clinical adjunct to discriminate ALS from other neurological diseases. FUNDING: Vaccinex, Inc.; Regione Lombardia (TRANS-ALS) Elsevier 2020-11-09 /pmc/articles/PMC7670099/ /pubmed/33161233 http://dx.doi.org/10.1016/j.ebiom.2020.103097 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Trolese, Maria Chiara
Mariani, Alessandro
Terao, Mineko
de Paola, Massimiliano
Fabbrizio, Paola
Sironi, Francesca
Kurosaki, Mami
Bonanno, Silvia
Marcuzzo, Silvia
Bernasconi, Pia
Trojsi, Francesca
Aronica, Eleonora
Bendotti, Caterina
Nardo, Giovanni
CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
title CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
title_full CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
title_fullStr CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
title_full_unstemmed CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
title_short CXCL13/CXCR5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
title_sort cxcl13/cxcr5 signalling is pivotal to preserve motor neurons in amyotrophic lateral sclerosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7670099/
https://www.ncbi.nlm.nih.gov/pubmed/33161233
http://dx.doi.org/10.1016/j.ebiom.2020.103097
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