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Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation

Herniation of the intervertebral disc (IVDH) is the most common cause of neurological and intervertebral disc degeneration-related diseases. Since the disc starts to degenerate before it can be observed by currently available diagnostic methods, there is an urgent need for novel diagnostic approache...

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Autores principales: Horvatić, Anita, Gelemanović, Andrea, Pirkić, Boris, Smolec, Ozren, Beer Ljubić, Blanka, Rubić, Ivana, Eckersall, Peter David, Mrljak, Vladimir, McLaughlin, Mark, Samardžija, Marko, Lipar, Marija
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583948/
https://www.ncbi.nlm.nih.gov/pubmed/34769107
http://dx.doi.org/10.3390/ijms222111678
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author Horvatić, Anita
Gelemanović, Andrea
Pirkić, Boris
Smolec, Ozren
Beer Ljubić, Blanka
Rubić, Ivana
Eckersall, Peter David
Mrljak, Vladimir
McLaughlin, Mark
Samardžija, Marko
Lipar, Marija
author_facet Horvatić, Anita
Gelemanović, Andrea
Pirkić, Boris
Smolec, Ozren
Beer Ljubić, Blanka
Rubić, Ivana
Eckersall, Peter David
Mrljak, Vladimir
McLaughlin, Mark
Samardžija, Marko
Lipar, Marija
author_sort Horvatić, Anita
collection PubMed
description Herniation of the intervertebral disc (IVDH) is the most common cause of neurological and intervertebral disc degeneration-related diseases. Since the disc starts to degenerate before it can be observed by currently available diagnostic methods, there is an urgent need for novel diagnostic approaches. To identify molecular networks and pathways which may play important roles in intervertebral disc herniation, as well as to reveal the potential features which could be useful for monitoring disease progression and prognosis, multi-omics profiling, including high-resolution liquid chromatography-mass spectrometry (LC-MS)-based metabolomics and tandem mass tag (TMT)-based proteomics was performed. Cerebrospinal fluid of nine dogs with IVDH and six healthy controls were used for the analyses, and an additional five IVDH samples were used for proteomic data validation. Furthermore, multi-omics data were integrated to decipher a complex interaction between individual omics layers, leading to an improved prediction model. Together with metabolic pathways related to amino acids and lipid metabolism and coagulation cascades, our integromics prediction model identified the key features in IVDH, namely the proteins follistatin Like 1 (FSTL1), secretogranin V (SCG5), nucleobindin 1 (NUCB1), calcitonin re-ceptor-stimulating peptide 2 precursor (CRSP2) and the metabolites N-acetyl-D-glucosamine and adenine, involved in neuropathic pain, myelination, and neurotransmission and inflammatory response, respectively. Their clinical application is to be further investigated. The utilization of a novel integrative interdisciplinary approach may provide new opportunities to apply innovative diagnostic and monitoring methods as well as improve treatment strategies and personalized care for patients with degenerative spinal disorders.
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spelling pubmed-85839482021-11-12 Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation Horvatić, Anita Gelemanović, Andrea Pirkić, Boris Smolec, Ozren Beer Ljubić, Blanka Rubić, Ivana Eckersall, Peter David Mrljak, Vladimir McLaughlin, Mark Samardžija, Marko Lipar, Marija Int J Mol Sci Article Herniation of the intervertebral disc (IVDH) is the most common cause of neurological and intervertebral disc degeneration-related diseases. Since the disc starts to degenerate before it can be observed by currently available diagnostic methods, there is an urgent need for novel diagnostic approaches. To identify molecular networks and pathways which may play important roles in intervertebral disc herniation, as well as to reveal the potential features which could be useful for monitoring disease progression and prognosis, multi-omics profiling, including high-resolution liquid chromatography-mass spectrometry (LC-MS)-based metabolomics and tandem mass tag (TMT)-based proteomics was performed. Cerebrospinal fluid of nine dogs with IVDH and six healthy controls were used for the analyses, and an additional five IVDH samples were used for proteomic data validation. Furthermore, multi-omics data were integrated to decipher a complex interaction between individual omics layers, leading to an improved prediction model. Together with metabolic pathways related to amino acids and lipid metabolism and coagulation cascades, our integromics prediction model identified the key features in IVDH, namely the proteins follistatin Like 1 (FSTL1), secretogranin V (SCG5), nucleobindin 1 (NUCB1), calcitonin re-ceptor-stimulating peptide 2 precursor (CRSP2) and the metabolites N-acetyl-D-glucosamine and adenine, involved in neuropathic pain, myelination, and neurotransmission and inflammatory response, respectively. Their clinical application is to be further investigated. The utilization of a novel integrative interdisciplinary approach may provide new opportunities to apply innovative diagnostic and monitoring methods as well as improve treatment strategies and personalized care for patients with degenerative spinal disorders. MDPI 2021-10-28 /pmc/articles/PMC8583948/ /pubmed/34769107 http://dx.doi.org/10.3390/ijms222111678 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Horvatić, Anita
Gelemanović, Andrea
Pirkić, Boris
Smolec, Ozren
Beer Ljubić, Blanka
Rubić, Ivana
Eckersall, Peter David
Mrljak, Vladimir
McLaughlin, Mark
Samardžija, Marko
Lipar, Marija
Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation
title Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation
title_full Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation
title_fullStr Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation
title_full_unstemmed Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation
title_short Multi-Omics Approach to Elucidate Cerebrospinal Fluid Changes in Dogs with Intervertebral Disc Herniation
title_sort multi-omics approach to elucidate cerebrospinal fluid changes in dogs with intervertebral disc herniation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583948/
https://www.ncbi.nlm.nih.gov/pubmed/34769107
http://dx.doi.org/10.3390/ijms222111678
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