Mesoporous silica particles are phagocytosed by microglia and induce a mild inflammatory response in vitro

Júlia Sala-Jarque1, Elisa García-Lara1, Paula Carreras-Domínguez1

  • 1Biochemistry and Molecular Biology Unit, Department of Biomedical Sciences, School of Medicine, University of Barcelona, Institut d'Investigacions Biomèdiques August Pi i Sunyer, Barcelona, Catalonia, Spain.

Insights

Mesoporous silica particles (MSPs) are readily taken up by microglia, a key cell in neuroinflammation, without causing harm. This suggests MSPs may be useful for targeted drug delivery to these cells.

Area of Science:

  • Neuroscience
  • Biomaterials Science
  • Drug Delivery

Background:

  • Mesoporous silica particles (MSPs) are widely utilized as drug delivery carriers.
  • Neuroinflammation involves key cellular players like astrocytes and microglia.
  • Understanding cellular responses to nanomaterials is crucial for safe and effective therapeutic applications.

Purpose of the Study:

  • To investigate the interaction and effects of MSPs on astrocytes and microglia.
  • To evaluate the potential of MSPs as targeted drug delivery vehicles for microglial cells.

Main Methods:

  • Primary murine cortical mixed glial cultures were established.
  • Rhodamine B-labeled MSPs were used to treat the glial cultures.
  • Cell viability, morphology, metabolic activity, oxidative stress, and gene expression were assessed.
  • Pro-inflammatory cytokine levels (IL-1β) were measured.

Main Results:

  • MSPs were extensively internalized by microglial cells and persisted for at least 14 days.
  • No adverse effects of MSPs were observed on glial cell viability, morphology, metabolic activity, or oxidative stress.
  • MSPs did not alter the mRNA levels of key pro-inflammatory genes.
  • Co-administration of MSPs with lipopolysaccharide significantly elevated extracellular IL-1β levels.

Conclusions:

  • MSPs demonstrate excellent biocompatibility with glial cells.
  • MSPs show potential as effective carriers for targeted drug delivery specifically to microglial cells.
  • Further research may explore MSPs for modulating neuroinflammatory responses.