Increasing reports of neurological and psychiatric outcomes due to psychostimulant synthetic cathinones (SCs) have recently raised public concern. However, the understanding of neurotoxic mechanisms is still lacking, particularly for the under-investigated αPHP, one of the major MDPV derivatives. In particular, its effects on neural stem/progenitor cell cultures (NSPCs) are still unexplored. Therefore, in the current in vitro study, the effects of increasing αPHP concentrations (25-2000 μM), on cell viability/proliferation, morphology/ultrastructure, genotoxicity and cell death pathways, have been evaluated after exposure in murine NSPCs, using a battery of complementary techniques, i.e., MTT and clonogenic assay, flow cytometry, immunocytochemistry, TEM, and patch clamp. We revealed that αPHP was able to induce a dose-dependent significant decrease of the viability, proliferation and clonal capability of the NSPCs, paralleled by the resting membrane potential depolarization and apoptotic/autophagic/necroptotic pathway activation. Moreover, ultrastructural alterations were clearly observed. Overall, our current findings demonstrate that αPHP, damaging NSPCs and the morpho-functional fundamental units of adult neurogenic niches may affect neurogenesis, possibly triggering long-lasting, irreversible CNS damage. The present investigation could pave the way for a broadened understanding of SCs toxicology, needed to establish an appropriate treatment for NPS and the potential consequences for public health.
The Designer Drug αPHP Affected Cell Proliferation and Triggered Deathly Mechanisms in Murine Neural Stem/Progenitor Cells.
设计药物αPHP影响小鼠神经干/祖细胞的增殖并触发其死亡机制
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作者:Roda Elisa, De Luca Fabrizio, Priori Erica Cecilia, Ratto Daniela, Pinelli Silvana, Corradini Emilia, Mozzoni Paola, Poli Diana, Mazzini Giuliano, Bottone Maria Grazia, Gatti Anna Maria, Marti Matteo, Locatelli Carlo Alessandro, Rossi Paola, Bottai Daniele
| 期刊: | Biology-Basel | 影响因子: | 3.500 |
| 时间: | 2023 | 起止号: | 2023 Sep 11; 12(9):1225 |
| doi: | 10.3390/biology12091225 | 研究方向: | 神经科学 |
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