C60 Fullerene Governs Doxorubicin Effect on Metabolic Profile of Rat Microglial Cells In Vitro.
Yevheniia HurmachMariia RudykSvitlana PrylutskaVasyl HurmachYuriy I PrylutskyyUwe RitterPeter ScharffLarysa SkivkaPublished in: Molecular pharmaceutics (2020)
Background: C60 fullerenes and their derivatives are actively investigated for the use in neuroscience. Applications of these nanoscale materials require the examination of their interaction with different neural cells, especially with microglia, because these cells, like other tissue resident phagocytes, are the earliest and most sensitive responders to nanoparticles. The aim of this study was to investigate the effect of C60 fullerene and its nanocomplex with doxorubicin (Dox) on the metabolic profile of brain-resident phagocytes-microglia-in vitro. Methods: Resting microglial cells from adult male Wistar rats were used in experiments. Potential C60 fullerene targets in microglial cells were studied by computer simulation. Microglia oxidative metabolism and phagocytic activity were examined by flow cytometry. Griess reaction and arginase activity colorimetric assay were used to explore arginine metabolism. Results: C60 fullerene when used alone did not influence microglia oxidative metabolism and phagocytic activity but shifted arginine metabolism toward the decrease of NO generation. Complexation of C60 fullerene with Dox (C60-Dox) potentiated the ability of the latter to stimulate NO generation. Conclusion: The capability of C60 fullerenes used alone to cause anti-inflammatory shift of microglia arginine metabolism makes them a promising agent for the correction of neuroinflammatory processes involved in neurodegeneration. The potentiating action of C60 fullerene on the immunomodulatory effect of Dox allows us to consider the C60 molecule as an attractive vehicle for this antitumor agent.
Keyphrases
- induced apoptosis
- inflammatory response
- neuropathic pain
- cell cycle arrest
- nitric oxide
- flow cytometry
- lipopolysaccharide induced
- anti inflammatory
- endoplasmic reticulum stress
- signaling pathway
- lps induced
- spinal cord
- mass spectrometry
- cancer therapy
- high throughput
- multiple sclerosis
- risk assessment
- young adults
- deep learning
- heart rate variability
- living cells
- single molecule
- fluorescent probe
- amino acid
- resting state
- virtual reality
- human health
- label free