ArticleInternational journal of molecular sciences2022
Autophagy Signaling by Neural-Induced Human Adipose Tissue-Derived Stem Cell-Conditioned Medium during Rotenone-Induced Toxicity in SH-SY5Y Cells.
Article in International journal of molecular sciences, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 14 papers.
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Who cites it
14 citing papers in PubMed, 29 citations in OpenAlex.
- miR-495-3p Attenuates Neuronal Apoptosis Through The Activation of Wnt/MAPK Pathways in Ischemic Stroke.Molecular neurobiology · 2025Article
- Novel miRNAs, miR-937-3p, miR-4536-3p, and miR-4650-5p, can Modulate Neuronal Differentiation via the Wnt/MAPK Pathway in SH-SY5Y Cells.Molecular neurobiology · 2025Article
- Therapeutic potential of mesenchymal stem cells in neurodegenerative diseases.World journal of stem cells · 2025Review
- Therapeutic effects of miR-937-3p by targeting NTN1 expression and regulating apoptosis in an Aβ-induced neuronal cell death.Scientific reports · 2025Article
- Neural-induced human adipose tissue-derived stem cell secretome exerts neuroprotection against rotenone-induced Parkinson's disease in rats.Stem cell research & therapy · 2025Article
- Article
- Rotenone and Its Derivative, Rotenoisin A, Induce Neurodegeneration Differentially in SH-SY5Y Cells.Biomedicines · 2024Article
- Proposal of Simplified Standardization of the Cell-Growth-Promoting Activity of Human Adipose Tissue Mesenchymal Stromal Cell Culture Supernatants.International journal of molecular sciences · 2024Article
- Sex differences in response to obesity and caloric restriction on cognition and hippocampal measures of autophagic-lysosomal transcripts and signaling pathways.BMC neuroscience · 2024Article
- The time-dependent changes in a mouse model of traumatic brain injury with motor dysfunction.PloS one · 2024Article
- Flavonoids in Combination with Stem Cells for the Treatment of Neurological Disorders.Neurochemical research · 2023Review
- Neuroprotective Effects of the Neural-Induced Adipose-Derived Stem Cell Secretome against Rotenone-Induced Mitochondrial and Endoplasmic Reticulum Dysfunction.International journal of molecular sciences · 2023Article
- New Sources, Differentiation, and Therapeutic Uses of Mesenchymal Stem Cells 2.0.International journal of molecular sciences · 2023Article
- The Emerging Role of Autophagy as a Target of Environmental Pollutants: An Update on Mechanisms.Toxics · 2023Review
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Authors and funding
7 authors at 3 institutions in 1 country.
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Abstract
Rotenone (ROT) inhibits mitochondrial complex I, leading to reactive oxygen species formation, which causes neurodegeneration and alpha-synuclein (α-syn) aggregation and, consequently, Parkinson's disease. We previously found that a neurogenic differentiated human adipose tissue-derived stem cell-conditioned medium (NI-hADSC-CM) was protective against ROT-induced toxicity in SH-SY5Y cells. In the present study, ROT significantly decreased the phospho (p)-mTORC1/total (t)-mTOR, p-mTORC2/t-mTOR, and p-/t-ULK1 ratios and the ATG13 level by increasing the DEPTOR level and p-/t-AMPK ratio. Moreover, ROT increased the p-/t-Akt ratio and glycogen synthase kinase-3β (GSK3β) activity by decreasing the p-/t-ERK1/2 ratios and beclin-1 level. ROT also promoted the lipidation of LC3B-I to LC3B-II by inducing autophagosome formation in Triton X-100-soluble and -insoluble cell lysate fractions. Additionally, the levels of ATG3, 5, 7, and 12 were decreased, along with those of lysosomal LAMP1, LAMP2, and TFEB, leading to lysosomal dysfunction. However, NI-hADSC-CM treatment increased the p-mTORC1, p-mTORC2, p-ULK1, p-Akt, p-ERK1/2, ATG13, and beclin-1 levels and decreased the p-AMPK level and GSK3β activity in response to ROT-induced toxicity. Additionally, NI-hADSC-CM restored the LC3B-I level, increased the p62 level, and normalized the ATG and lysosomal protein amounts to control levels. Autophagy array revealed that the secreted proteins in NI-hADSC-CM could be crucial in the neuroprotection. Taken together, our results showed that the neuroprotective effects of NI-hADSC-CM on the autophagy signaling pathways could alleviate the aggregation of α-syn in Parkinson's disease and other neurodegenerative disorders.
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