Publication:
Regenerative effects of peptide nanofibers in an experimental model of Parkinson's disease

dc.contributor.authorSever, Melike
dc.contributor.authorGüler, Mustafa O.
dc.contributor.authorTekinay, Ayşe B.
dc.contributor.buuauthorTürkyılmaz, Mesut
dc.contributor.buuauthorSevinç, Cansu
dc.contributor.buuauthorÇakır, Aysen
dc.contributor.buuauthorÖcalan, Büşra
dc.contributor.buuauthorCansev, Mehmet
dc.contributor.departmentTıp Fakültesi
dc.contributor.departmentTıp Fakültesi
dc.contributor.departmentFizyoloji Ana Bilim Dalı
dc.contributor.departmentEczacılık Ana Bilim Dalı
dc.contributor.orcid0000-0001-7729-7373
dc.contributor.orcid0000-0002-3405-3640
dc.contributor.orcid0000-0002-6097-5585
dc.contributor.researcheridA-6819-2018
dc.contributor.researcheridM-9071-2019
dc.contributor.researcheridN-9927-2019
dc.contributor.researcheridAAL-1786-2020
dc.contributor.scopusid56320252500
dc.contributor.scopusid56473593500
dc.contributor.scopusid57191915856
dc.contributor.scopusid57191911801
dc.contributor.scopusid8872816100
dc.date.accessioned2022-11-29T08:13:45Z
dc.date.available2022-11-29T08:13:45Z
dc.date.issued2016-09-08
dc.description.abstractParkinson's disease (PD) is characterized by progressive degeneration of dopaminergic nigrostriatal neurons and reduction in striatal dopamine levels. Although there are few treatment options for PD such as Levodopa, they are used just to relieve and modify the symptoms. There are no therapies available for PD to slow down the degeneration process in the brain and recover the lost function. In this study, we used extracellular matrix (ECM) mimetic peptide amphiphile (PA) nanofibers as a potential therapeutic approach in a PD rat model. We demonstrated the effect of heparan sulfate mimetic and laminin mimetic PA nanofibers on reducing striatal injury and enhancing functional recovery after unilateral striatal injection of 6-hydroxydopamine (6-OHDA). The bioactive self-assembled PA nanofibers significantly reduced forelimb asymmetry, contralateral forelimb akinesia and d-amphetamine-induced rotational behavior in cylinder, stepping and rotation tests, respectively, in 6-OHDA-lesioned rats after 6 weeks. The behavioral improvement with PA nanofiber administration was associated with enhanced striatal dopamine and tyrosine hydroxylase content as well as reduced cleaved-Caspase-3 levels. Histological assessment also showed that PA nanofiber injection to the striatum resulted in better tissue integrity compared to control groups. In addition, PA nanofibers reduced the progressive cell loss in SH-SYSY cells caused by 6-OHDA treatment. These data showed that the bioactive peptide nanofibers improve neurochemical and behavioral consequences of Parkinsonism in rats and provide a promising new strategy for treatment of PD. Statement of Significance Biomimetic nanomaterials bearing natural bioactive signals which are derived from extracellular matrix components like laminin and heparan sulfates provide promising therapeutic strategies for regeneration of the nervous system. However, no research has been reported exploring the use of biomimetic materials against degeneration in Parkinson's disease. In this work, we investigated potential therapeutic effects of heparan sulfate and laminin mimetic PA nanofibers on reduction of striatal injury in experimental Parkinson's disease model. PA nanofibers enhanced functional recovery associated with enhanced striatal dopamine and tyrosine hydroxylase content as well as reduced cleaved-Caspase-3 levels. Overall, this study shows the improvement in consequences of Parkinsonism in rats and provides a new platform for treatment of Parkinson's disease.
dc.description.sponsorshipTürkiye Bilimler Akademisi
dc.identifier.citationSever, M. vd. (2016). "Regenerative effects of peptide nanofibers in an experimental model of Parkinson's disease". Acta Biomaterialia, 46, 79-90.
dc.identifier.endpage90
dc.identifier.issn1742-7061
dc.identifier.issn1878-7568
dc.identifier.pubmed27619838
dc.identifier.scopus2-s2.0-84994727929
dc.identifier.startpage79
dc.identifier.urihttps://doi.org/10.1016/j.actbio.2016.09.011
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S1742706116304743
dc.identifier.urihttp://hdl.handle.net/11452/29619
dc.identifier.volume46
dc.identifier.wos000388778600007
dc.indexed.wosSCIE
dc.language.isoen
dc.publisherElsevier
dc.relation.collaborationYurt içi
dc.relation.journalActa Biomaterialia
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi
dc.relation.tubitak113S538
dc.relation.tubitak2211
dc.rightsinfo:eu-repo/semantics/openAccess
dc.subjectEngineering
dc.subjectMaterials science
dc.subjectParkinson's disease
dc.subject6-hydroxydopamine
dc.subjectPeptide amphiphiles
dc.subjectLaminin mimetic
dc.subjectHeparan sulfate mimetic
dc.subjectHeparan-sulfate
dc.subjectGrowth-factor
dc.subjectRat model
dc.subjectMicroglia
dc.subjectApoptosis
dc.subjectModulation
dc.subjectPathways
dc.subjectAkinesia
dc.subjectNeurons
dc.subject6-ohda
dc.subjectAmines
dc.subjectAmino acids
dc.subjectAmphiphiles
dc.subjectBiomimetic materials
dc.subjectBiomimetics
dc.subjectNeurodegenerative diseases
dc.subjectPeptides
dc.subjectRats
dc.subjectRecovery
dc.subjectSulfur compounds
dc.subjectDopamine
dc.subjectHeparan sulphate
dc.subjectHeparan sulphate mimetic
dc.subjectLaminin
dc.subjectMimetics
dc.subjectNanofibers
dc.subject.emtreeAmphophile
dc.subject.emtreeCaspase 3
dc.subject.emtreeDexamphetamine
dc.subject.emtreeHeparan sulfate
dc.subject.emtreeLaminin
dc.subject.emtreeNanofiber
dc.subject.emtreeOxidopamine
dc.subject.emtreeTyrosine 3 monooxygenase
dc.subject.emtreeActin binding protein
dc.subject.emtreeAif1 protein, rat
dc.subject.emtreeCalcium binding protein
dc.subject.emtreeCaspase 3
dc.subject.emtreeDopamine
dc.subject.emtreeNanofiber
dc.subject.emtreeNanomaterial
dc.subject.emtreeOxidopamine
dc.subject.emtreePeptide
dc.subject.emtreeTyrosine 3 monooxygenase
dc.subject.emtreeAkinesia
dc.subject.emtreeAnimal experiment
dc.subject.emtreeAnimal model
dc.subject.emtreeArticle
dc.subject.emtreeCell loss
dc.subject.emtreeCell viability
dc.subject.emtreeCircling behavior
dc.subject.emtreeCircular dichroism
dc.subject.emtreeControlled study
dc.subject.emtreeExperimental parkinsonism
dc.subject.emtreeExtracellular matrix
dc.subject.emtreeForelimb
dc.subject.emtreeMale
dc.subject.emtreeNonhuman
dc.subject.emtreePriority journal
dc.subject.emtreeRat
dc.subject.emtreeReversed phase high performance liquid chromatography
dc.subject.emtreeScanning electron microscopy
dc.subject.emtreeAnimal
dc.subject.emtreeAnimal behavior
dc.subject.emtreeApoptosis
dc.subject.emtreeCell motion
dc.subject.emtreeCell survival
dc.subject.emtreeChemistry
dc.subject.emtreeCorpus striatum
dc.subject.emtreeDisease model
dc.subject.emtreeDrug effects
dc.subject.emtreeHuman
dc.subject.emtreeImmunohistochemistry
dc.subject.emtreeMetabolism
dc.subject.emtreeNerve regeneration
dc.subject.emtreeParkinson disease
dc.subject.emtreePathology
dc.subject.emtreeProtein secondary structure
dc.subject.emtreeSprague dawley rat
dc.subject.emtreeTumor cell line
dc.subject.meshAnimals
dc.subject.meshApoptosis
dc.subject.meshBehavior, animal
dc.subject.meshCalcium-binding proteins
dc.subject.meshCaspase 3
dc.subject.meshCell line, tumor
dc.subject.meshCell movement
dc.subject.meshCell survival
dc.subject.meshCircular dichroism
dc.subject.meshCorpus striatum
dc.subject.meshDisease models, animal
dc.subject.meshDopamine
dc.subject.meshForelimb
dc.subject.meshHumans
dc.subject.meshImmunohistochemistry
dc.subject.meshMale
dc.subject.meshMicrofilament proteins
dc.subject.meshNanofibers
dc.subject.meshNanostructures
dc.subject.meshNerve regeneration
dc.subject.meshOxidopamine
dc.subject.meshParkinson disease
dc.subject.meshPeptides
dc.subject.meshProtein structure, secondary
dc.subject.meshRats, sprague-dawley
dc.subject.meshTyrosine 3-monooxygenase
dc.subject.wosEngineering, biomedical
dc.subject.wosMaterials science, biomaterials
dc.titleRegenerative effects of peptide nanofibers in an experimental model of Parkinson's disease
dc.typeArticle
dc.wos.quartileQ1
dspace.entity.typePublication
local.contributor.departmentTıp Fakültesi/Eczacılık Ana Bilim Dalı
local.contributor.departmentTıp Fakültesi/Fizyoloji Ana Bilim Dalı
local.indexed.atPubMed
local.indexed.atWOS

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