Biocompatibility of pristine graphene for neuronal interface.
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Summary
Graphene is a nanomaterial that is biocompatible with neurons and may have significant biomedical applications, but further use of graphene as a bioscaffold will require surface modification that enhances hydrophilicity to increase cellular attachment and growth.
- Type
- article
- Published
- 2013-05-01
- Cited by
- 84
- References
- 50
- OpenAlex
- https://openalex.org/W23473006
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24504896
Keywords
Geology, Seismic vibrator, Seismology, Basement, Geothermal gradient
References
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- PEGylated Nano-Graphene Oxide for Delivery of Water Insoluble Cancer Drugs
- Behaviors of NIH-3T3 fibroblasts on graphene/carbon nanotubes: proliferation, focal adhesion, and gene transfection studies.
- Graphene and graphene oxide: biofunctionalization and applications in biotechnology
- Mechanically Assisted Exfoliation and Functionalization of Thermally Converted Graphene Sheets
- Graphene substrates promote adherence of human osteoblasts and mesenchymal stromal cells
- Differential nano-bio interactions and toxicity effects of pristine versus functionalized graphene.
- Toxicity of graphene and graphene oxide nanowalls against bacteria.
- In vitro toxicity evaluation of graphene oxide on A549 cells.
- Cytotoxicity of graphene oxide and graphene in human erythrocytes and skin fibroblasts.
- Interactions Between Cultured Neurons and Carbon Nanotubes: A Nanoneuroscience Vignette
- Cytotoxicity effects of graphene and single-wall carbon nanotubes in neural phaeochromocytoma-derived PC12 cells.
- Effects of carbon nanotubes on primary neurons and glial cells.
- Mechanically Strong, Electrically Conductive, and Biocompatible Graphene Paper
- Controlled Formation of Sharp Zigzag and Armchair Edges in Graphitic Nanoribbons
- Small applied electric fields guide migration of hippocampal neurons
- Graphene-based antibacterial paper.
- Biopersistence and potential adverse health impacts of fibrous nanomaterials: what have we learned from asbestos?
Cited by
- Carbon-based smart nanomaterials in biomedicine and neuroengineering
- Large-Area Graphene Electrodes: Using CVD to facilitate applications in commercial touchscreens, flexible nanoelectronics, and neural interfaces.
- Carbon nanotubes and graphene as emerging candidates in neuroregeneration and neurodrug delivery
- Coupling (reduced) Graphene Oxide to Mammalian Primary Cortical Neurons In Vitro
- Technological developments and future perspectives on graphene-based metamaterials: a primer for neurosurgeons.
- Science and technology roadmap for graphene, related two-dimensional crystals, and hybrid systems.
- Graphite Oxide to Graphene. Biomaterials to Bionics
- Graphene films show stable cell attachment and biocompatibility with electrogenic primary cardiac cells
- Surface-engineered graphene-based nanomaterials for drug delivery.
- Graphene in neurosurgery: the beginning of a new era.
- Graphene: A Multifaceted Nanomaterial for Cutting Edge Biomedical Application
- Impact of crystalline quality on neuronal affinity of pristine graphene.
- Interfacing neurons with nanoelectronics : from silicon nanowires to carbon devices
- Synthesis, toxicity, biocompatibility, and biomedical applications of graphene and graphene-related materials
- Microbial colonisation of transparent glass-like carbon films triggered by a reversible radiation-induced hydrophobic to hydrophilic transition
- Application of Graphene as Candidate Biomaterial for Synthetic Keratoprosthesis Skirt.
- Biocompatibility of reduced graphene oxide nanoscaffolds following acute spinal cord injury in rats
- Flexible Neural Electrode Array Based-on Porous Graphene for Cortical Microstimulation and Sensing
- In Vitro Evaluation of Biocompatibility of Uncoated Thermally Reduced Graphene and Carbon Nanotube-Loaded PVDF Membranes with Adult Neural Stem Cell-Derived Neurons and Glia
- Graphene: A Multifaceted Nanomaterial for Cutting Edge Biomedical Application
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