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dc.contributor.advisorMeyer, Bernd (Prof. Dr.)
dc.contributor.authorBärenfänger, Melissa
dc.date.accessioned2020-10-19T13:11:03Z-
dc.date.available2020-10-19T13:11:03Z-
dc.date.issued2019
dc.identifier.urihttps://ediss.sub.uni-hamburg.de/handle/ediss/6178-
dc.description.abstractThe glycosylation of proteins has numerous important functions in nature. Next to the stability and solubility of proteins, glycosylation is relevant for cellular recognition processes and immune modulation. Changes in glycosylation reflect the physiological and pathological state of a cell or an organism. A sophisticated structural characterization of glycans is needed to understand their biological relevance, but also for the development and quality control of biopharmaceuticals or for the development of glycan-based biomarkers. Mass spectrometry has become a well-established technique for the structural analysis of protein modifications due to low detection limits and high mass accuracy. In combination with other analytical methods such as liquid chromatography, mass spectrometry has made it possible to analyze complex glycosylation despite their structural complexity and diversity. Nevertheless, the development of new analytical approaches and MS-based techniques as well as their validation is necessary to further improve the analysis of glycans. This applies in particular to the quantification of glycans, the detection of low abundant structures, and the implementation of robust and timely methods. The aim of this work was therefore to evaluate different mass spectrometric methods for the structural characterization of glycoproteins and to analyze the glycosylation of different plasma proteins from several human plasma samples.en
dc.description.abstractThe glycosylation of proteins has numerous important functions in nature. Next to the stability and solubility of proteins, glycosylation is relevant for cellular recognition processes and immune modulation. Changes in glycosylation reflect the physiological and pathological state of a cell or an organism. A sophisticated structural characterization of glycans is needed to understand their biological relevance, but also for the development and quality control of biopharmaceuticals or for the development of glycan-based biomarkers. Mass spectrometry has become a well-established technique for the structural analysis of protein modifications due to low detection limits and high mass accuracy. In combination with other analytical methods such as liquid chromatography, mass spectrometry has made it possible to analyze complex glycosylation despite their structural complexity and diversity. Nevertheless, the development of new analytical approaches and MS-based techniques as well as their validation is necessary to further improve the analysis of glycans. This applies in particular to the quantification of glycans, the detection of low abundant structures, and the implementation of robust and timely methods. The aim of this work was therefore to evaluate different mass spectrometric methods for the structural characterization of glycoproteins and to analyze the glycosylation of different plasma proteins from several human plasma samples.en
dc.language.isoenen
dc.publisherStaats- und Universitätsbibliothek Hamburg Carl von Ossietzky
dc.rightshttp://purl.org/coar/access_right/c_abf2
dc.subject.ddc540 Chemie
dc.titleNew Methods for the Characterization of Human Glycoproteins by LC-MS/MStechniquesen
dc.title.alternativeNeue Methoden für die Charakterisierung vonhumane Glykoproteine durch LC-MS/MSTechnikende
dc.typedoctoralThesis
dcterms.dateAccepted2020-02-07
dc.rights.ccNo license
dc.rights.rshttp://rightsstatements.org/vocab/InC/1.0/
dc.subject.bcl35.26 Massenspektrometrie
dc.subject.bcl35.39 Analytische Chemie: Sonstiges
dc.subject.bcl35.63 Kohlenhydrate
dc.subject.bcl35.77 Kohlenhydrate
dc.type.casraiDissertation-
dc.type.dinidoctoralThesis-
dc.type.driverdoctoralThesis-
dc.type.statusinfo:eu-repo/semantics/publishedVersion
dc.type.thesisdoctoralThesis
tuhh.opus.id10269
tuhh.opus.datecreation2020-02-14
tuhh.type.opusDissertation-
thesis.grantor.departmentChemie
thesis.grantor.placeHamburg
thesis.grantor.universityOrInstitutionUniversität Hamburg
dcterms.DCMITypeText-
tuhh.gvk.ppn169167768X
dc.identifier.urnurn:nbn:de:gbv:18-102690
item.advisorGNDMeyer, Bernd (Prof. Dr.)-
item.grantfulltextopen-
item.languageiso639-1other-
item.fulltextWith Fulltext-
item.creatorOrcidBärenfänger, Melissa-
item.creatorGNDBärenfänger, Melissa-
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