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Salihovic, S., Nyström, N., Mathisen, C.-W. B., Kruse, R., Olbjørn, C., Andersen, S., . . . Halfvarson, J. (2024). Identification and validation of a blood- based diagnostic lipidomic signature of pediatric inflammatory bowel disease. Nature Communications, 15(1), Article ID 4567.
Open this publication in new window or tab >>Identification and validation of a blood- based diagnostic lipidomic signature of pediatric inflammatory bowel disease
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2024 (English)In: Nature Communications, E-ISSN 2041-1723, Vol. 15, no 1, article id 4567Article in journal (Refereed) Published
Abstract [en]

Improved biomarkers are needed for pediatric inflammatory bowel disease. Here we identify a diagnostic lipidomic signature for pediatric inflammatory bowel disease by analyzing blood samples from a discovery cohort of incident treatment-naïve pediatric patients and validating findings in an independent inception cohort. The lipidomic signature comprising of only lactosyl ceramide (d18:1/16:0) and phosphatidylcholine (18:0p/22:6) improves the diagnostic prediction compared with high-sensitivity C-reactive protein. Adding high-sensitivity C-reactive protein to the signature does not improve its performance. In patients providing a stool sample, the diagnostic performance of the lipidomic signature and fecal calprotectin, a marker of gastrointestinal inflammation, does not substantially differ. Upon investigation in a third pediatric cohort, the findings of increased lactosyl ceramide (d18:1/16:0) and decreased phosphatidylcholine (18:0p/22:6) absolute concentrations are confirmed. Translation of the lipidomic signature into a scalable diagnostic blood test for pediatric inflammatory bowel disease has the potential to support clinical decision making.

Place, publisher, year, edition, pages
Springer Nature, 2024
National Category
Gastroenterology and Hepatology
Identifiers
urn:nbn:se:oru:diva-114075 (URN)10.1038/s41467-024-48763-7 (DOI)001238270100028 ()38830848 (PubMedID)2-s2.0-85195011168 (Scopus ID)
Funder
Örebro UniversitySwedish Foundation for Strategic Research, RB13-0160Swedish Research Council, 2020-02021NordForsk, 90569
Note

This work was supported by the Swedish Foundation for Strategic Research [RB13-0160 to J.H.], the Swedish Research Council [2020-02021 to J.H.], the Örebro University Hospital research foundation [OLL-890291 to J.H.], NordForsk [90569 to J.H.]. 

Available from: 2024-06-05 Created: 2024-06-05 Last updated: 2025-02-11Bibliographically approved
Mathisen, C.-W. B., Nyström, N., Bazov, I., Andersen, S., Olbjørn, C., Perminow, G., . . . Halfvarson, J. (2023). A novel diagnostic serum protein signature for paediatric Inflammatory Bowel Disease: A discovery and validation study in two independent inception cohorts. Paper presented at 8th Congress of ECCO Copenhagen, Denmark, March 1-4, 2023. Journal of Crohn's & Colitis, 17(Suppl. 1), I71-I73, Article ID DOP11.
Open this publication in new window or tab >>A novel diagnostic serum protein signature for paediatric Inflammatory Bowel Disease: A discovery and validation study in two independent inception cohorts
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2023 (English)In: Journal of Crohn's & Colitis, ISSN 1873-9946, E-ISSN 1876-4479, Vol. 17, no Suppl. 1, p. I71-I73, article id DOP11Article in journal, Meeting abstract (Other academic) Published
Place, publisher, year, edition, pages
Oxford University Press, 2023
National Category
Gastroenterology and Hepatology
Identifiers
urn:nbn:se:oru:diva-107213 (URN)000960367600052 ()
Conference
8th Congress of ECCO Copenhagen, Denmark, March 1-4, 2023
Available from: 2023-07-31 Created: 2023-07-31 Last updated: 2025-02-11Bibliographically approved
Bazov, I., Kruse, R., Bergemalm, D., Eriksson, C., Hedin, C. R., Carlson, M., . . . Halfvarson, J. (2023). A novel serum protein signature as biomarker for Inflammatory Bowel Disease: A diagnostic performance and prediction modelling study using data from two independent inception cohorts. Paper presented at 18th Congress of ECCO Copenhagen, Denmark, March 1-4, 2023. Journal of Crohn's & Colitis, 17(Suppl. 1), I314-I315, Article ID P154.
Open this publication in new window or tab >>A novel serum protein signature as biomarker for Inflammatory Bowel Disease: A diagnostic performance and prediction modelling study using data from two independent inception cohorts
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2023 (English)In: Journal of Crohn's & Colitis, ISSN 1873-9946, E-ISSN 1876-4479, Vol. 17, no Suppl. 1, p. I314-I315, article id P154Article in journal, Meeting abstract (Other academic) Published
Place, publisher, year, edition, pages
Oxford University Press, 2023
National Category
Gastroenterology and Hepatology
Identifiers
urn:nbn:se:oru:diva-107219 (URN)000960367600284 ()
Conference
18th Congress of ECCO Copenhagen, Denmark, March 1-4, 2023
Available from: 2023-07-31 Created: 2023-07-31 Last updated: 2025-02-11Bibliographically approved
Salihovic, S., Nyström, N., Mathisen, C.-W. B., Andersen, S., Olbjørn, C., Perminow, G., . . . Halfvarson, J. (2023). Identification and validation of a lipidomic signature as a novel diagnostic biomarker of paediatric Inflammatory Bowel Disease. Journal of Crohn's & Colitis, 17(Suppl. 1), I76-I77, Article ID DOP14.
Open this publication in new window or tab >>Identification and validation of a lipidomic signature as a novel diagnostic biomarker of paediatric Inflammatory Bowel Disease
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2023 (English)In: Journal of Crohn's & Colitis, ISSN 1873-9946, E-ISSN 1876-4479, Vol. 17, no Suppl. 1, p. I76-I77, article id DOP14Article in journal, Meeting abstract (Other academic) Published
Place, publisher, year, edition, pages
Oxford University Press, 2023
National Category
Gastroenterology and Hepatology
Identifiers
urn:nbn:se:oru:diva-107222 (URN)000960367600055 ()
Available from: 2023-07-31 Created: 2023-07-31 Last updated: 2025-02-11Bibliographically approved
Kononenko, O., Mityakina, I., Galatenko, V., Watanabe, H., Bazov, I., Gerashchenko, A., . . . Bakalkin, G. (2018). Differential effects of left and right neuropathy on opioid gene expression in lumbar spinal cord. Brain Research, 1695, 78-83
Open this publication in new window or tab >>Differential effects of left and right neuropathy on opioid gene expression in lumbar spinal cord
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2018 (English)In: Brain Research, ISSN 0006-8993, E-ISSN 1872-6240, Vol. 1695, p. 78-83Article in journal (Refereed) Published
Abstract [en]

The endogenous opioid system (EOS) controls the processing of nociceptive stimuli and is a pharmacological target for opioids. Alterations in expression of the EOS genes under neuropathic pain condition may account for low efficacy of opioid drugs. We here examined whether EOS expression patterns are altered in the lumbar spinal cord of the rats with spinal nerve ligation (SNL) as a neuropathic pain model. Effects of the left- and right-side SNL on expression of EOS genes in the ipsi- and contralateral spinal domains were analysed. The SNL-induced changes were complex and different between the genes; between the dorsal and ventral spinal domains; and between the left and right sides of the spinal cord. Prodynorphin (Pdyn) expression was upregulated in the ipsilateral dorsal domains by each the left and right-side SNL, while changes in expression of μ-opioid receptor (Oprm1) and proenkephalin (Penk) genes were dependent on the SNL side. Changes in expression of the Pdyn and κ-opioid receptor (Oprk1) genes were coordinated between the ipsi- and contralateral sides. Withdrawal response thresholds, indicators of mechanical allodynia correlated negatively with Pdyn expression in the right ventral domain after right side SNL. These findings suggest multiple roles of the EOS gene products in spinal sensitization and changes in motor reflexes, which may differ between the left and right sides.

Place, publisher, year, edition, pages
Elsevier, 2018
Keywords
Gene expression, Lateralization, Lumbar spinal cord, Neuropathic pain, Opioid system, Rat model
National Category
Neurosciences
Identifiers
urn:nbn:se:oru:diva-82993 (URN)10.1016/j.brainres.2018.05.043 (DOI)000440390700009 ()29852138 (PubMedID)2-s2.0-85048514369 (Scopus ID)
Available from: 2020-06-11 Created: 2020-06-11 Last updated: 2023-12-08Bibliographically approved
Bazov, I., Sarkisyan, D., Kononenko, O., Watanabe, H., Karpyak, V. M., Yakovleva, T. & Bakalkin, G. (2018). Downregulation of the neuronal opioid gene expression concomitantly with neuronal decline in dorsolateral prefrontal cortex of human alcoholics. Translational Psychiatry, 8(1), Article ID 122.
Open this publication in new window or tab >>Downregulation of the neuronal opioid gene expression concomitantly with neuronal decline in dorsolateral prefrontal cortex of human alcoholics
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2018 (English)In: Translational Psychiatry, E-ISSN 2158-3188, Vol. 8, no 1, article id 122Article in journal (Refereed) Published
Abstract [en]

Molecular changes in cortical areas of addicted brain may underlie cognitive impairment and loss of control over intake of addictive substances and alcohol. Prodynorphin (PDYN) gives rise to dynorphin (DYNs) opioid peptides which target kappa-opioid receptor (KOR). DYNs mediate alcohol-induced impairment of learning and memory, while KOR antagonists block excessive, compulsive-like drug and alcohol self-administration in animal models. In human brain, the DYN/KOR system may undergo adaptive changes, which along with neuronal loss, may contribute to alcohol-associated cognitive deficit. We addressed this hypothesis by comparing the expression levels and co-expression (transcriptionally coordinated) patterns of PDYN and KOR (OPRK1) genes in dorsolateral prefrontal cortex (dlPFC) between human alcoholics and controls. Postmortem brain specimens of 53 alcoholics and 55 controls were analyzed. PDYN was found to be downregulated in dlPFC of alcoholics, while OPRK1 transcription was not altered. PDYN downregulation was confined to subgroup of subjects carrying C, a high-risk allele of PDYN promoter SNP rs1997794 associated with alcoholism. Changes in PDYN expression did not depend on the decline in neuronal proportion in alcoholics, and thereby may be attributed to transcriptional adaptations in alcoholic brain. Absolute expression levels of PDYN were lower compared to those of OPRK1, suggesting that PDYN expression is a limiting factor in the DYN/KOR signaling, and that the PDYN downregulation diminishes efficacy of DYN/KOR signaling in dlPFC of human alcoholics. The overall outcome of the DYN/KOR downregulation may be disinhibition of neurotransmission, which when overactivated could contribute to formation of alcohol-related behavior.

Place, publisher, year, edition, pages
Nature Publishing Group, 2018
National Category
Neurosciences
Identifiers
urn:nbn:se:oru:diva-82991 (URN)10.1038/s41398-017-0075-5 (DOI)000437025300001 ()29925858 (PubMedID)2-s2.0-85048895593 (Scopus ID)
Available from: 2020-06-11 Created: 2020-06-11 Last updated: 2024-01-17Bibliographically approved
Bazov, I., Sarkisyan, D., Kononenko, O., Watanabe, H., Yakovleva, T., Hansson, A. C., . . . Bakalkin, G. (2018). Dynorphin and κ-Opioid Receptor Dysregulation in the Dopaminergic Reward System of Human Alcoholics. Molecular Neurobiology, 55(8), 7049-7061
Open this publication in new window or tab >>Dynorphin and κ-Opioid Receptor Dysregulation in the Dopaminergic Reward System of Human Alcoholics
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2018 (English)In: Molecular Neurobiology, ISSN 0893-7648, E-ISSN 1559-1182, Vol. 55, no 8, p. 7049-7061Article in journal (Refereed) Published
Abstract [en]

Molecular changes induced by excessive alcohol consumption may underlie formation of dysphoric state during acute and protracted alcohol withdrawal which leads to craving and relapse. A main molecular addiction hypothesis is that the upregulation of the dynorphin (DYN)/κ-opioid receptor (KOR) system in the nucleus accumbens (NAc) of alcohol-dependent individuals causes the imbalance in activity of D1- and D2 dopamine receptor (DR) expressing neural circuits that results in dysphoria. We here analyzed post-mortem NAc samples of human alcoholics to assess changes in prodynorphin (PDYN) and KOR (OPRK1) gene expression and co-expression (transcriptionally coordinated) patterns. To address alterations in D1- and D2-receptor circuits, we studied the regulatory interactions between these pathways and the DYN/KOR system. No significant differences in PDYN and OPRK1 gene expression levels between alcoholics and controls were evident. However, PDYN and OPRK1 showed transcriptionally coordinated pattern that was significantly different between alcoholics and controls. A downregulation of DRD1 but not DRD2 expression was seen in alcoholics. Expression of DRD1 and DRD2 strongly correlated with that of PDYN and OPRK1 suggesting high levels of transcriptional coordination between these gene clusters. The differences in expression and co-expression patterns were not due to the decline in neuronal proportion in alcoholic brain and thereby represent transcriptional phenomena. Dysregulation of DYN/KOR system and dopamine signaling through both alterations in co-expression patterns of opioid genes and decreased DRD1 gene expression may contribute to imbalance in the activity of D1- and D2-containing pathways which may lead to the negative affective state in human alcoholics.

Place, publisher, year, edition, pages
Springer, 2018
Keywords
Alcohol addiction, Co-expression of gene clusters, D1-pathway, D2-pathway, Dynorphin, Dysphoria, Nucleus accumbens, Post-mortem human brain tissue, Reward system, κ-opioid receptor
National Category
Neurosciences
Identifiers
urn:nbn:se:oru:diva-82956 (URN)10.1007/s12035-017-0844-4 (DOI)000439758300057 ()29383684 (PubMedID)2-s2.0-85041179125 (Scopus ID)
Available from: 2020-06-10 Created: 2020-06-10 Last updated: 2020-06-24Bibliographically approved
Bazov, I., Sarkisyan, D., Kononenko, O., Watanabe, H., Taqi, M. M., Stålhandske, L., . . . Bakalkin, G. (2018). Neuronal Expression of Opioid Gene is Controlled by Dual Epigenetic and Transcriptional Mechanism in Human Brain. Cerebral Cortex, 28(9), 3129-3142
Open this publication in new window or tab >>Neuronal Expression of Opioid Gene is Controlled by Dual Epigenetic and Transcriptional Mechanism in Human Brain
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2018 (English)In: Cerebral Cortex, ISSN 1047-3211, E-ISSN 1460-2199, Vol. 28, no 9, p. 3129-3142Article in journal (Refereed) Published
Abstract [en]

Molecular mechanisms that define patterns of neuropeptide expression are essential for the formation and rewiring of neural circuits. The prodynorphin gene (PDYN) gives rise to dynorphin opioid peptides mediating depression and substance dependence. We here demonstrated that PDYN is expressed in neurons in human dorsolateral prefrontal cortex (dlPFC), and identified neuronal differentially methylated region in PDYN locus framed by CCCTC-binding factor binding sites. A short, nucleosome size human-specific promoter CpG island (CGI), a core of this region may serve as a regulatory module, which is hypomethylated in neurons, enriched in 5-hydroxymethylcytosine, and targeted by USF2, a methylation-sensitive E-box transcription factor (TF). USF2 activates PDYN transcription in model systems, and binds to nonmethylated CGI in dlPFC. USF2 and PDYN expression is correlated, and USF2 and PDYN proteins are co-localized in dlPFC. Segregation of activatory TF and repressive CGI methylation may ensure contrasting PDYN expression in neurons and glia in human brain.

Place, publisher, year, edition, pages
Oxford University Press, 2018
National Category
Neurosciences
Identifiers
urn:nbn:se:oru:diva-82955 (URN)10.1093/cercor/bhx181 (DOI)000443545600005 ()28968778 (PubMedID)2-s2.0-85055120955 (Scopus ID)
Available from: 2020-06-10 Created: 2020-06-10 Last updated: 2020-06-24Bibliographically approved
Sarkisyan, D., Bazov, I., Watanabe, H., Kononenko, O., Syvänen, A.-C., Schumann, G., . . . Bakalkin, G. (2017). Damaged reward areas in human alcoholics: neuronal proportion decline and astrocyte activation [Letter to the editor]. Acta Neuropathologica, 133(3), 485-487
Open this publication in new window or tab >>Damaged reward areas in human alcoholics: neuronal proportion decline and astrocyte activation
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2017 (English)In: Acta Neuropathologica, ISSN 0001-6322, E-ISSN 1432-0533, Vol. 133, no 3, p. 485-487Article in journal, Letter (Refereed) Published
Place, publisher, year, edition, pages
Springer, 2017
National Category
Neurosciences
Identifiers
urn:nbn:se:oru:diva-82995 (URN)10.1007/s00401-017-1675-0 (DOI)000394961100011 ()28097436 (PubMedID)2-s2.0-85009823795 (Scopus ID)
Available from: 2020-06-11 Created: 2020-06-11 Last updated: 2023-12-08Bibliographically approved
Kononenko, O., Galatenko, V., Andersson, M., Bazov, I., Watanabe, H., Zhou, X. W., . . . Bakalkin, G. (2017). Intra- and interregional coregulation of opioid genes: broken symmetry in spinal circuits. The FASEB Journal, 31(5), 1953-1963
Open this publication in new window or tab >>Intra- and interregional coregulation of opioid genes: broken symmetry in spinal circuits
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2017 (English)In: The FASEB Journal, ISSN 0892-6638, E-ISSN 1530-6860, Vol. 31, no 5, p. 1953-1963Article in journal (Refereed) Published
Abstract [en]

Regulation of the formation and rewiring of neural circuits by neuropeptides may require coordinated production of these signaling molecules and their receptors that may be established at the transcriptional level. Here, we address this hypothesis by comparing absolute expression levels of opioid peptides with their receptors, the largest neuropeptide family, and by characterizing coexpression (transcriptionally coordinated) patterns of these genes. We demonstrated that expression patterns of opioid genes highly correlate within and across functionally and anatomically different areas. Opioid peptide genes, compared with their receptor genes, are transcribed at much greater absolute levels, which suggests formation of a neuropeptide cloud that covers the receptor-expressed circuits. Surprisingly, we found that both expression levels and the proportion of opioid receptors are strongly lateralized in the spinal cord, interregional coexpression patterns are side specific, and intraregional coexpression profiles are affected differently by left- and right-side unilateral body injury. We propose that opioid genes are regulated as interconnected components of the same molecular system distributed between distinct anatomic regions. The striking feature of this system is its asymmetric coexpression patterns, which suggest side-specific regulation of selective neural circuits by opioid neurohormones.-Kononenko, O., Galatenko, V., Andersson, M., Bazov, I., Watanabe, H., Zhou, X. W., Iatsyshyna, A., Mityakina, I., Yakovleva, T., Sarkisyan, D., Ponomarev, I., Krishtal, O., Marklund, N., Tonevitsky, A., Adkins, D. L., Bakalkin, G. Intra- and interregional coregulation of opioid genes: broken symmetry in spinal circuits.

Place, publisher, year, edition, pages
John Wiley & Sons, 2017
Keywords
lateralization, neuropeptides, spinal cord
National Category
Cell Biology
Identifiers
urn:nbn:se:oru:diva-82997 (URN)10.1096/fj.201601039R (DOI)000399195500017 ()28122917 (PubMedID)2-s2.0-85019443957 (Scopus ID)
Available from: 2020-06-11 Created: 2020-06-11 Last updated: 2020-10-06Bibliographically approved
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ORCID iD: ORCID iD iconorcid.org/0000-0003-4388-1656

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