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dc.contributor.authorMasuko, Sayaka
dc.contributor.authorHigashi, Kyohei
dc.contributor.authorWang, Zhenyu
dc.contributor.authorBhaskar, Ujjwal
dc.contributor.authorHickey, Anne Marie
dc.contributor.authorZhang, Fuming
dc.contributor.authorToida, Toshihiko
dc.contributor.authorDordick, Jonathan S.
dc.contributor.authorLinhardt, Robert J.
dc.date2011
dc.date.accessioned2022-06-23T04:11:27Z
dc.date.available2022-06-23T04:11:27Z
dc.date.issued2011-01-01
dc.identifier.citationOzonolysis of the double bond of the unsaturated uronate residue in low molecular weight heparin and K5 heparosan, S. Masuko, K. Higashi, Z. Wang, U. Bhaskar, A. M. Hickey, F. Zhang, T. Toida, J. S. Dordick, R. J. Linhardt, Carbohydrate Research, 346, 1962–1966, 2011.
dc.identifier.issn1873426X
dc.identifier.issn86215
dc.identifier.urihttps://hdl.handle.net/20.500.13015/5281
dc.identifier.urihttps://doi.org/10.1016/j.carres.2011.06.004
dc.descriptionCarbohydrate Research, 346, 1962–1966
dc.descriptionNote : if this item contains full text it may be a preprint, author manuscript, or a Gold OA copy that permits redistribution with a license such as CC BY. The final version is available through the publisher’s platform.
dc.description.abstractOzone is known to add across and cleave carbon-carbon double bonds. Ozonolysis is widely used for the preparation of pharmaceuticals, for bleaching substances and for killing microorganisms in air and water sources. Some polysaccharides and oligosaccharides, such as those prepared using chemical or enzymatic β-elimination, contain a site of unsaturation. We examined ozonolysis of low-molecular-weight heparins (LMWHs), enoxaparin and logiparin, and heparosan oligo- and polysaccharides for the removal of the nonreducing terminal unsaturated uronate residue. 1D (1)H NMR showed that these ozone-treated polysaccharides retained the same structure as the starting polysaccharide, except that the C4-C5 double bond in the nonreducing end unsaturated uronate had been removed. The anticoagulant activity of the resulting product from enoxaparin and logiparin was comparable to that of the starting material. These results demonstrate that ozonolysis is an important tool for the removal of unsaturated uronate residues from LMWHs and heparosan without modification of the core polysaccharide structure or diminution of anticoagulant activity. This reaction also has potential applications in the chemoenzymatic synthesis of bioengineered heparin from Escherichia coli-derived K5 heparosan.
dc.description.sponsorshipNational Institutes of Health
dc.languageen_US
dc.language.isoENG
dc.publisherElsevier
dc.relation.ispartofThe Linhardt Research Labs Online Collection
dc.relation.ispartofRensselaer Polytechnic Institute, Troy, NY
dc.relation.ispartofCarbohydrate Research
dc.relation.urihttps://harc.rpi.edu/
dc.subjectBiology
dc.subjectChemistry and chemical biology
dc.subjectChemical and biological engineering
dc.subjectBiomedical engineering
dc.titleOzonolysis of the double bond of the unsaturated uronate residue in low molecular weight heparin and K5 heparosan
dc.typeArticle
dcterms.accessRightsA full text version is available in DSpace@RPI
dcterms.isPartOfJournal
dcterms.isVersionOfhttps://doi.org/10.1016/j.carres.2011.06.004
dc.rights.holderIn Copyright : this Item is protected by copyright and/or related rights. You are free to use this Item in any way that is permitted by the copyright and related rights legislation that applies to your use. For other uses you need to obtain permission from the rights-holder(s). https://rightsstatements.org/page/InC/1.0/
dc.creator.identifierhttps://orcid.org/0000-0003-2219-5833
dc.relation.departmentThe Linhardt Research Labs.
dc.relation.departmentThe Shirley Ann Jackson, Ph.D. Center for Biotechnology and Interdisciplinary Studies (CBIS)
rpi.description.pages1962-1966
rpi.description.volume346


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