Characterization of the Kallikrein-Kinin System post chemical neuronal injury: An in vitro biochemical and neuroproteomics assessment

dc.contributor.authorNokkari, Amaly
dc.contributor.authorMouhieddine, Tarek H.
dc.contributor.authorItani, Muhieddine M.
dc.contributor.authorAbou-Kheir, Wassim G.
dc.contributor.authorDaoud, Georges E.
dc.contributor.authorZhu, Rui
dc.contributor.authorMeshref, Yehia
dc.contributor.authorSoueid, Jihane
dc.contributor.authorAl Hariri, Moustafa
dc.contributor.authorMondello, Stefania
dc.contributor.authorJaffa, Ayad A.
dc.contributor.authorKobeissy, Firas H.
dc.contributor.departmentAnatomy, Cell Biology, and Physiological Sciences
dc.contributor.departmentBiochemistry and Molecular Genetics
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:36:33Z
dc.date.available2025-01-24T11:36:33Z
dc.date.issued2015
dc.description.abstractTraumatic Brain Injury (TBI) is the result of a mechanical impact on the brain provoking mild, moderate or severe symptoms. It is acknowledged that TBI leads to apoptotic and necrotic cell death; however, the exact mechanism by which brain trauma leads to neural injury is not fully elucidated. Some studies have highlighted the pivotal role of the Kallikrein-Kinin System (KKS) in brain trauma but the results are still controversial and inconclusive. In this study, we investigated both the expression and the role of Bradykinin 1 and 2 receptors (B1R and B2R), in mediating neuronal injury under chemical neurotoxicity paradigm in PC12 cell lines. The neuronal cell line PC12 was treated with the apoptotic drug Staurosporine (STS) to induce cell death. Intracellular calcium release was evaluated by Fluo 4-AM staining and showed that inhibition of the B2R prevented calcium release following STS treatment. Differential analyses utilizing immunofluorescence, Western blot and Real-time Polymerase Chain Reaction revealed an upregulation of both bradykinin receptors occurring at 3h and 12h post-STS treatment, but with a higher induction of B2R compared to B1R. This implies that STS-mediated apoptosis in PC12 cells is mainly conducted through B2R and partly via B1R. Finally, a neuroproteomics approach was conducted to find relevant proteins associated to STS and KKS in PC12 cells. Neuroproteomics results confirmed the presence of an inflammatory response leading to cell death during apoptosis-mediated STS treatment; however, a survival capacity was shown following inhibition of B2R coupled with STS treatment. Our data suggest that B2R is a key player in the inflammatory pathway following STS-mediated apoptosis in PC12 cells and its inhibition may represent a potential therapeutic tool in TBI. © 2015 Nokkari et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
dc.identifier.doihttps://doi.org/10.1371/journal.pone.0128601
dc.identifier.eid2-s2.0-84934912611
dc.identifier.pmid26047500
dc.identifier.urihttp://hdl.handle.net/10938/28633
dc.language.isoen
dc.publisherPublic Library of Science
dc.relation.ispartofPLoS ONE
dc.sourceScopus
dc.subjectAnimals
dc.subjectCell death
dc.subjectEnzyme inhibitors
dc.subjectKallikrein-kinin system
dc.subjectNeurons
dc.subjectPc12 cells
dc.subjectProteomics
dc.subjectRats
dc.subjectReceptor, bradykinin b1
dc.subjectReceptor, bradykinin b2
dc.subjectSignal transduction
dc.subjectStaurosporine
dc.subjectTranscriptional activation
dc.subjectBradykinin b1 receptor
dc.subjectBradykinin b2 receptor
dc.subjectKallikrein
dc.subjectKinin
dc.subjectEnzyme inhibitor
dc.subjectArticle
dc.subjectCalcium cell level
dc.subjectCalcium transport
dc.subjectCell assay
dc.subjectCell damage
dc.subjectControlled study
dc.subjectImmunofluorescence test
dc.subjectIn vitro study
dc.subjectKallikrein kinin system
dc.subjectMolecular dynamics
dc.subjectNeuroproteomics
dc.subjectProtein determination
dc.subjectProtein expression
dc.subjectProtein function
dc.subjectReal time polymerase chain reaction
dc.subjectUpregulation
dc.subjectWestern blotting
dc.subjectAnimal
dc.subjectDrug effects
dc.subjectGenetics
dc.subjectImmunology
dc.subjectMetabolism
dc.subjectNerve cell
dc.subjectPathology
dc.subjectPc12 cell line
dc.subjectRat
dc.subjectTranscription initiation
dc.titleCharacterization of the Kallikrein-Kinin System post chemical neuronal injury: An in vitro biochemical and neuroproteomics assessment
dc.typeArticle

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