Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review

Introduction. Although environmental factors play the major role in the etiopathogenesis of multiple sclerosis (MS), genetic factors are implicated as well. We aimed to summarize the current knowledge on the relationship between genetic variants and magnetic resonance (MR) imaging measures in MS. Ma...

Full description

Bibliographic Details
Main Authors: Jan Krzysztof Nowak, Izabela Guzikowska-Ruszkowska, Jadwiga Łopaciuch, Wiesława Jankowska, Ewa Piotrowska, Ewa Dziedzic-Szeszuła, Kinga Kapecka, Jarosław Walkowiak
Format: Article
Language:English
Published: Poznan University of Medical Sciences 2016-12-01
Series:Journal of Medical Science
Subjects:
Online Access:https://jms.ump.edu.pl/index.php/JMS/article/view/182
id doaj-4a16f45671384ee3b7975d0b3b429c48
record_format Article
spelling doaj-4a16f45671384ee3b7975d0b3b429c482021-08-30T06:55:34ZengPoznan University of Medical SciencesJournal of Medical Science2353-97982353-98012016-12-0185410.20883/jms.2016.182Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic reviewJan Krzysztof Nowak0Izabela Guzikowska-Ruszkowska1Jadwiga Łopaciuch2Wiesława Jankowska3Ewa Piotrowska4Ewa Dziedzic-Szeszuła5Kinga Kapecka6Jarosław Walkowiak7Department of Pediatric Gastroenterology and Metabolic Diseases, Poznan University of Medical Sciences, Poznan, PolandDepartment of General Radiology and Neuroradiology, Poznan University of Medical Sciences, Poznan, PolandDepartment of Biology and Medical Parasitology, Poznan University of Medical Sciences, Poznan, PolandDepartment of Biology and Medical Parasitology, Poznan University of Medical Sciences, Poznan, PolandDepartment of Clinical Pathomorphology, Poznan University of Medical Sciences, Poznan, PolandDepartment of Ophthalmology, Poznan University of Medical Sciences, Poznan, PolandDepartment of Neurology, Poznan University of Medical Sciences, PolandDepartment of Pediatric Gastroenterology and Metabolic Diseases, Poznan University of Medical Sciences, Poznan, PolandIntroduction. Although environmental factors play the major role in the etiopathogenesis of multiple sclerosis (MS), genetic factors are implicated as well. We aimed to summarize the current knowledge on the relationship between genetic variants and magnetic resonance (MR) imaging measures in MS. Material and Methods. A systematic review. In December 2016, Scopus (since the year 1980; including MEDLINE) was searched for studies meeting predefined criteria designed to identify articles regarding: multiple sclerosis, genetic variants, and MR imaging. These were then analyzed to identify publications linking polymorphisms and MR findings. Results. The search yielded 290 items; 26 were included in the final analysis. Two genome-wide association studies (GWAS) and two projects employing panels of a few dozen of genes of interest provided most of the data. The other publications concerned no more than 5 genes at a time. Twenty studies reported positive findings. The relationship between HLA-DRB1*15:01 or BDNF rs6265 (Val66Met) and the radiologic course of MS was not consistent across the studies. An intersection of the results of the two GWAS yielded: OPCML (rs11223055), PTPRD (rs1953594), and WWOX (rs11150140, rs1116525) (brain atrophy) as well as CDH13 (rs692612) and PLCB1 (rs6118257) (lesion load). Conclusions. Genetic variants were shown to correlate with MS-related brain atrophy and lesion load. Further research in the field is required.https://jms.ump.edu.pl/index.php/JMS/article/view/182brainspinal cordcorticalatrophylesionpolymorphism
collection DOAJ
language English
format Article
sources DOAJ
author Jan Krzysztof Nowak
Izabela Guzikowska-Ruszkowska
Jadwiga Łopaciuch
Wiesława Jankowska
Ewa Piotrowska
Ewa Dziedzic-Szeszuła
Kinga Kapecka
Jarosław Walkowiak
spellingShingle Jan Krzysztof Nowak
Izabela Guzikowska-Ruszkowska
Jadwiga Łopaciuch
Wiesława Jankowska
Ewa Piotrowska
Ewa Dziedzic-Szeszuła
Kinga Kapecka
Jarosław Walkowiak
Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
Journal of Medical Science
brain
spinal cord
cortical
atrophy
lesion
polymorphism
author_facet Jan Krzysztof Nowak
Izabela Guzikowska-Ruszkowska
Jadwiga Łopaciuch
Wiesława Jankowska
Ewa Piotrowska
Ewa Dziedzic-Szeszuła
Kinga Kapecka
Jarosław Walkowiak
author_sort Jan Krzysztof Nowak
title Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
title_short Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
title_full Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
title_fullStr Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
title_full_unstemmed Genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
title_sort genetic variants and magnetic resonance imaging measures in multiple sclerosis: a systematic review
publisher Poznan University of Medical Sciences
series Journal of Medical Science
issn 2353-9798
2353-9801
publishDate 2016-12-01
description Introduction. Although environmental factors play the major role in the etiopathogenesis of multiple sclerosis (MS), genetic factors are implicated as well. We aimed to summarize the current knowledge on the relationship between genetic variants and magnetic resonance (MR) imaging measures in MS. Material and Methods. A systematic review. In December 2016, Scopus (since the year 1980; including MEDLINE) was searched for studies meeting predefined criteria designed to identify articles regarding: multiple sclerosis, genetic variants, and MR imaging. These were then analyzed to identify publications linking polymorphisms and MR findings. Results. The search yielded 290 items; 26 were included in the final analysis. Two genome-wide association studies (GWAS) and two projects employing panels of a few dozen of genes of interest provided most of the data. The other publications concerned no more than 5 genes at a time. Twenty studies reported positive findings. The relationship between HLA-DRB1*15:01 or BDNF rs6265 (Val66Met) and the radiologic course of MS was not consistent across the studies. An intersection of the results of the two GWAS yielded: OPCML (rs11223055), PTPRD (rs1953594), and WWOX (rs11150140, rs1116525) (brain atrophy) as well as CDH13 (rs692612) and PLCB1 (rs6118257) (lesion load). Conclusions. Genetic variants were shown to correlate with MS-related brain atrophy and lesion load. Further research in the field is required.
topic brain
spinal cord
cortical
atrophy
lesion
polymorphism
url https://jms.ump.edu.pl/index.php/JMS/article/view/182
work_keys_str_mv AT jankrzysztofnowak geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT izabelaguzikowskaruszkowska geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT jadwigałopaciuch geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT wiesławajankowska geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT ewapiotrowska geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT ewadziedzicszeszuła geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT kingakapecka geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
AT jarosławwalkowiak geneticvariantsandmagneticresonanceimagingmeasuresinmultiplesclerosisasystematicreview
_version_ 1721185735243988992