Neuroprotective Activity of Some Marine Fungal Metabolites in the 6-Hydroxydopamin- and Paraquat-Induced Parkinson’s Disease Models

Нейропротективная активность некоторых метаболитов морских грибов в моделях болезни Паркинсона, индуцированных 6-гидроксидопамином и паракватом
Ekaterina A. Yurchenko, Anton N. Yurchenko, Еvgeny А. Pislyagin, Ekaterina S. Menchinskaya, Phan Thi Hoai Trinh, E. V. Ivanets, O. F. Smetanina
2018-11-21

6-hydroxydopamine (6-OHDA)-induced Parkinson's disease cell modelNeuro2a neuroprotectionmelatonin analogue 6-hydroxy-N-acetyl-β-oxotryptamineparaquat (PQ)-induced Parkinson's disease cell modelreactive oxygen species (ROS) scavenging
A new melatonin analogue 6-hydroxy-N-acetyl-β-oxotryptamine (1) was isolated from the marine-derived fungus Penicillium sp. KMM 4672. It is the second case of melatonin-related compounds isolation from microfilamentous fungi. The neuroprotective activities of this metabolite, as well as 3-methylorsellinic acid (2) and 8-methoxy-3,5-dimethylisochroman-6-ol (3) from Penicillium sp. KMM 4672, candidusin A (4) and 4″-dehydroxycandidusin A (5) from Aspergillus sp. KMM 4676, and diketopiperazine mactanamide (6) from Aspergillus flocculosus, were investigated in the 6-hydroxydopamine (6-OHDA)- and paraquat (PQ)-induced Parkinson’s disease (PD) cell models. All of them protected Neuro2a cells against the damaging influence of 6-OHDA to varying degrees. This effect may be realized via a reactive oxygen species (ROS) scavenging pathway. The new melatonin analogue more effectively protected Neuro2A cells against the 6-OHDA-induced neuronal death, in comparison with melatonin, as well as against the PQ-induced neurotoxicity. Dehydroxylation at C-3″ and C-4″ significantly increased free radical scavenging and neuroprotective activity of candidusin-related p-terphenyl polyketides in both the 6-OHDA- and PQ-induced PD models.
1
A new melatonin analogue, 6-hydroxy-N-acetyl-β-oxotryptamine (1), was isolated from marine-derived Penicillium sp. KMM 4672.
2
Compounds 1–6 protected Neuro2a cells against 6-hydroxydopamine (6-OHDA)-induced damage to varying degrees, likely via reactive oxygen species (ROS) scavenging.
3
Dehydroxylation at C-3″ and C-4″ of candidusin-related p-terphenyl polyketides significantly increased free radical scavenging and neuroprotective activity in both 6-OHDA and PQ PD models.
4
The new melatonin analogue (1) more effectively protected Neuro2a cells from 6-OHDA-induced neuronal death than melatonin and also protected against paraquat (PQ)-induced neurotoxicity.

Marine fungal secondary metabolites isolated from Penicillium sp. KMM 4672, Aspergillus sp. KMM 4676, and Aspergillus flocculosus (including 6-hydroxy-N-acetyl-β-oxotryptamine, 3-methylorsellinic acid, 8-methoxy-3,5-dimethylisochroman-6-ol, candidusin A, 4″-dehydroxycandidusin A, and mactanamide)

Neuroprotective activity and reactive oxygen species (ROS) scavenging effects of these marine fungal metabolites against 6-hydroxydopamine (6-OHDA)- and paraquat (PQ)-induced neuronal injury in Neuro2a Parkinson’s disease cell models, and structure–activity relationships (e.g., effects of dehydroxylation at C-3″ and C-4″)

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2018-11-21
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Ekaterina A. Yurchenko
Anton N. Yurchenko
Еvgeny А. Pislyagin
Ekaterina S. Menchinskaya
Phan Thi Hoai Trinh
E. V. Ivanets
O. F. Smetanina
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