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Biocompatibility of diamond-based platforms with neuronal cells.
dc.contributor.advisorBenson, Veronika
dc.creatorGottfriedová, Kristýna
dc.date.accessioned2018-11-26T12:10:26Z
dc.date.available2018-11-26T12:10:26Z
dc.date.issued2018
dc.identifier.urihttp://hdl.handle.net/20.500.11956/103762
dc.description.abstract5 Abstract Microelectrode arrays represent therapeutic approach to neurodegenerative diseases treatment. The development of electrode platforms is rather challenging due to the direct interaction of the material with neuronal tissue. Nanodiamond is one of the researched materials because of its biochemical properties: biocompatibility with many cell types, chemical inertness, high wear and corrosion resistance. During nanodiamond platforms development, biological research focuses on biocompatibility of used material with primary neurons and the evaluation of their adherence to the nanodiamond that is important for recording of electrical activity of neurons. Both, the biocompatibility as well as the adherence depend on the used nanodiamond, manufacturing, roughness, and surface modification. The amount of boron dopant enabling electric conductivity of nanodiamond is also important. In my thesis, I have summarized research on biocompatibility and adherence of neural cells on behalf of above mentioned parameters. I discuss here the variability of experimental results in order to surface modification and cultured cells type. According to the research reports, it seems that neuronal cells prosper well and prefer to adhere to platforms covered with molecules of extracellular matrix or at least poly-lysine...en_US
dc.languageČeštinacs_CZ
dc.language.isocs_CZ
dc.publisherUniverzita Karlova, Přírodovědecká fakultacs_CZ
dc.subjectnanodiamantcs_CZ
dc.subjectnervová buňkacs_CZ
dc.subjectbiokompatibilitacs_CZ
dc.subjectmikroelektrodové polecs_CZ
dc.subjectnanodiamonden_US
dc.subjectneuronal cellen_US
dc.subjectbiocompatibilityen_US
dc.subjectmicroelectrode arrayen_US
dc.titleBiokompatibilita platformy tvořené diamantovými částicemi s nervovými buňkami.cs_CZ
dc.typebakalářská prácecs_CZ
dcterms.created2018
dcterms.dateAccepted2018-09-06
dc.description.departmentKatedra buněčné biologiecs_CZ
dc.description.departmentDepartment of Cell Biologyen_US
dc.description.facultyFaculty of Scienceen_US
dc.description.facultyPřírodovědecká fakultacs_CZ
dc.identifier.repId204481
dc.title.translatedBiocompatibility of diamond-based platforms with neuronal cells.en_US
dc.contributor.refereeHubálek Kalbáčová, Marie
thesis.degree.nameBc.
thesis.degree.levelbakalářskécs_CZ
thesis.degree.disciplineBiologyen_US
thesis.degree.disciplineBiologiecs_CZ
thesis.degree.programBiologiecs_CZ
thesis.degree.programBiologyen_US
uk.thesis.typebakalářská prácecs_CZ
uk.taxonomy.organization-csPřírodovědecká fakulta::Katedra buněčné biologiecs_CZ
uk.taxonomy.organization-enFaculty of Science::Department of Cell Biologyen_US
uk.faculty-name.csPřírodovědecká fakultacs_CZ
uk.faculty-name.enFaculty of Scienceen_US
uk.faculty-abbr.csPřFcs_CZ
uk.degree-discipline.csBiologiecs_CZ
uk.degree-discipline.enBiologyen_US
uk.degree-program.csBiologiecs_CZ
uk.degree-program.enBiologyen_US
thesis.grade.csDobřecs_CZ
thesis.grade.enGooden_US
uk.abstract.en5 Abstract Microelectrode arrays represent therapeutic approach to neurodegenerative diseases treatment. The development of electrode platforms is rather challenging due to the direct interaction of the material with neuronal tissue. Nanodiamond is one of the researched materials because of its biochemical properties: biocompatibility with many cell types, chemical inertness, high wear and corrosion resistance. During nanodiamond platforms development, biological research focuses on biocompatibility of used material with primary neurons and the evaluation of their adherence to the nanodiamond that is important for recording of electrical activity of neurons. Both, the biocompatibility as well as the adherence depend on the used nanodiamond, manufacturing, roughness, and surface modification. The amount of boron dopant enabling electric conductivity of nanodiamond is also important. In my thesis, I have summarized research on biocompatibility and adherence of neural cells on behalf of above mentioned parameters. I discuss here the variability of experimental results in order to surface modification and cultured cells type. According to the research reports, it seems that neuronal cells prosper well and prefer to adhere to platforms covered with molecules of extracellular matrix or at least poly-lysine...en_US
uk.file-availabilityV
uk.publication.placePrahacs_CZ
uk.grantorUniverzita Karlova, Přírodovědecká fakulta, Katedra buněčné biologiecs_CZ
thesis.grade.code3


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