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dc.contributor.authorPujol Calderón, Fani
dc.date.accessioned2019-09-24T15:16:08Z
dc.date.available2019-09-24T15:16:08Z
dc.date.issued2019-09-24
dc.identifier.isbn978-91-7833-551-0 (PDF)
dc.identifier.isbn978-91-7833-550-3 (PRINT)
dc.identifier.urihttp://hdl.handle.net/2077/60776
dc.description.abstractDifferent neurodegenerative diseases have overlapping symptomatology and pathology and have thus become a challenge to modern medicine to achieve a correct diagnosis. The aim of the thesis was to evaluate the use of neurofilaments as biomarkers of neuronal damage by testing their ability to discriminate between different neurodegenerative diseases as well as assessing whether higher neurofilments predict a poorer clinical outcome in ischemic stroke. For these purposes, we developed two new Enzyme-Linked ImmunoSorbent Assays (ELISAs) for the quantification of neurofilament light (NFL) and phosphorylated neurofilament heavy (pNFH) in cerebrospinal fluid (CSF). The new NFL and pNFH ELISAs presented good analytical performance and both NFL and pNFH concentrations were valid across different analytical approaches. CSF-NFL concentrations were significantly higher in inflammatory demyelinating diseases and Alzheimer’s disease when compared to Parkinson’s disease or controls. In ischemic stroke, both CSF and blood NFL and pNFH reflected the temporal dynamics of post ischemic damage of axons. Finally, both CSF-NFL and CSF-pNFH were increased in amyotrophic lateral sclerosis (ALS) compared to other neurological conditions mimicking ALS and controls. Both NFL and pNFH proved to be sensitive and reliable biomarkers of neuronal damage. These findings support the use of neurofilaments as disease intensity markers and suggest that both NFL and pNFH can be useful laboratory tests in the diagnostic work-up of patients with suspected neurodegenerative diseases.sv
dc.language.isoengsv
dc.relation.haspartGaetani L, Höglund K, Parnetti L, Pujol-Calderón F, Becker B, Eusebi P, Sarchielli P, Calabresi P, Di Filippo M, Zetterberg H, Blennow K. A new enzyme-linked immunosorbent assay for neurofilament light in cerebrospinal fluid: analytical validation and clinical evaluation. Alzheimer's research & therapy. 2018;10(1):8. ::doi::10.1186/s13195-018-0339-1sv
dc.relation.haspartPujol-Calderón F, Portelius E, Zetterberg H, Blennow K, Rosengren LE, Höglund K. Neurofilament changes in serum and cerebrospinal fluid after acute ischemic stroke. Neuroscience letters. 2019; 698:58-63. ::doi::10.1016/j.neulet.2018.12.042sv
dc.relation.haspartWilke C, Pujol-Calderón F, Barro C, Stransky E, Blennow K, Michalak Z, Deuschle C, Jeromin A, Zetterberg H, Schüle R, Höglund K, Kuhle J, Synofzik M. Correlations between serum and CSF pNfH levels in ALS, FTD and controls: a comparison of three analytical approaches. Clinical Chemistry and Laboratory Medicine. 2019. ::doi::10.1515/cclm-2019-0015sv
dc.relation.haspartPujol-Calderón F, Zetterberg H, Portelius E, Löwhagen Hendén P, Rentzos A, Karlsson JE, Höglund K, Blennow K, Rosengren LE. Prediction of outcome after endovascular embolectomy in anterior circulation stroke using biomarkers. Manuscriptsv
dc.relation.haspartBehzadi A*, Pujol-Calderón F*, Tjust AE, Wuolikainen A, Höglund K, Forsberg K, Portelius E, Blennow K, Zetterberg H, Andersen PM. Neurofilament light and heavy can differentiate ALS patients from commonly encountered diagnostic mimics. Manuscriptsv
dc.subjectneurofilamentssv
dc.subjectbiomarkersv
dc.subjectneurodegenerative diseasesv
dc.subjectstrokesv
dc.titleNeurofilaments as biomarkers of neuronal damagesv
dc.typetexteng
dc.type.svepDoctoral thesiseng
dc.gup.mailfani.pujol.calderon@gu.sesv
dc.type.degreeDoctor of Philosophy (Medicine)sv
dc.gup.originUniversity of Gothenburg. Sahlgrenska Academysv
dc.gup.departmentInstitute of Neuroscience and Physiology. Department of Psychiatry and Neurochemistrysv
dc.gup.defenceplaceFredagen den 18 oktober 2019, kl. 09.00, Karl Isaksson, Medicinaregatan 16A, Göteborgsv
dc.gup.defencedate2019-10-18
dc.gup.dissdb-fakultetSA


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