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Control of Neuronal Survival and Development Using Conductive Diamond.

Samira FalahatdoostYair D J PrawerDanli PengAndre ChambersHualin ZhanLeon PopeAlastair StaceyArman AhnoodHassan N Al HashemSorel E De LeonDavid J GarrettKate E FoxMichael B ClarkMichael R IbbotsonSteven PrawerWei Tong
Published in: ACS applied materials & interfaces (2024)
This study demonstrates the control of neuronal survival and development using nitrogen-doped ultrananocrystalline diamond (N-UNCD). We highlight the role of N-UNCD in regulating neuronal activity via near-infrared illumination, demonstrating the generation of stable photocurrents that enhance neuronal survival and neurite outgrowth and foster a more active, synchronized neuronal network. Whole transcriptome RNA sequencing reveals that diamond substrates improve cellular-substrate interaction by upregulating extracellular matrix and gap junction-related genes. Our findings underscore the potential of conductive diamond as a robust and biocompatible platform for noninvasive and effective neural tissue engineering.
Keyphrases
  • tissue engineering
  • extracellular matrix
  • cerebral ischemia
  • single cell
  • high throughput
  • rna seq
  • risk assessment
  • ionic liquid
  • drug delivery
  • climate change
  • gold nanoparticles
  • brain injury
  • human health