Transition Metal Dichalcogenide Nanoflowers Rescue Immune Cells from the Cytotoxic Effects of Amyloid Aggregates
Matveyenka, M.; Mitchell, C. L.; Kurouski, D.
Show abstract
Parkinsons disease (PD) is a severe pathology caused by a progressive degeneration of neurons in the substantia nigra pars compacta, hypothalamus, and thalamus. Although etiology of PD remains unclear, accumulating evidence indicates that neurodegenerative effects are triggered by the abrupt aggregation of -synuclein (-Syn), a small membrane protein that is responsible for cell vesicle trafficking. -Syn aggregates are highly toxic to neurons and immune cells present in the brain, including macrophages, microglia, and dendritic cells. Transition metal dichalcogenide nanoflowers (TMD NFs) are novel nanomaterials with unique optical and biological properties. However, their effects on the immune system remain poorly understood. In this study, we investigate cytoprotective properties of molybdenum disulfide (MoS2) and molybdenum diselenide (MoSe2) NFs on macrophages, microglia, and dendritic cells exposed to -Syn fibrils. We found that MoSe2 NFs exerted strong cytoprotective properties fully mitigating toxic effects of -Syn fibrils, while MoS2 NFs were found to be significantly less potent in rescuing immune cells from -Syn aggregates. At the same time, MoS2 NFs triggered polarization of macrophages into M1 and dendritic cells into M2 phenotypes, while an increase in both M1 and M2 was observed in microglia exposed to MoS2 NFs. MoSe2 NFs did not trigger polarization of DC cells and microglia in M1/M2 phenotypes, while MoSe2 NFs-facilitated polarization of macrophages into M1 was observed. These results indicate that TMD NFs could be used to improve viability of immune cells and attenuate their phenotypes, which, ultimately, can be used to treat PD and other neurodegenerative pathologies.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Neurotransmitter loaded DNA nanocages as potential therapeutics for α-synuclein based neuropathies in cells and in vivo 95%
- αS oligomers generated from polyunsaturated fatty acid and dopamine metabolite differentially interact with Aβ to enhance neurotoxicity 95%
- Synergistic Screening of Peptide-Based Biotechnological Drug Candidates for Neurodegenerative Diseases using Yeast Display and Phage Display 94%
Similar papers in this journal
Similar papers in this journal
- LSD Modulates Proteins Involved in Cell Proteostasis, Energy Metabolism and Neuroplasticity in Human Brain Organoids 93%
- Signal Peptide of Human Serum Albumin (residues 1-18) Forms Amyloid-like Aggregates 93%
- Tackling Anticancer Drug Resistance and Endosomal Escape in Aggressive Brain Tumors Using Bioelectronics 92%
Similar papers in this journal
- Glia cells are selectively sensitive to nanosized titanium dioxide mineral forms 95%
- Thermal cycling-hyperthermia attenuates rotenone-induced cell injury in SH-SY5Y cells through heat-activated mechanisms 94%
- NDR2 Kinase Regulate Microglial Metabolic Adaptation and Inflammatory Response: Critical Role in Glucose-Dependent Functional Plasticity 94%
Similar papers in this journal
- Queuine, a bacterial derived hypermodified nucleobase, shows protection in in vitro models of neurodegeneration 94%
- Allium roseum L. extract inhibits amyloid beta aggregation and toxicity involved in Alzheimers disease 94%
- Thermal cycling protects SH-SY5Y cells against hydrogen peroxide and -amyloid-induced cell injury through stress response mechanisms involving Akt pathway 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.