Cargando…

Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation

As components of the human diet with potential health benefits, flavonols are the subject of numerous studies, confirming their antioxidant, free radical scavenging and anti-inflammatory activity. Taking into consideration the postulated pathogenesis of certain CNS dysfunctions characterized by neur...

Descripción completa

Detalles Bibliográficos
Autores principales: Jantas, Danuta, Malarz, Janusz, Le, Thanh Nguyen, Stojakowska, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8509010/
https://www.ncbi.nlm.nih.gov/pubmed/34638702
http://dx.doi.org/10.3390/ijms221910363
_version_ 1784582233532661760
author Jantas, Danuta
Malarz, Janusz
Le, Thanh Nguyen
Stojakowska, Anna
author_facet Jantas, Danuta
Malarz, Janusz
Le, Thanh Nguyen
Stojakowska, Anna
author_sort Jantas, Danuta
collection PubMed
description As components of the human diet with potential health benefits, flavonols are the subject of numerous studies, confirming their antioxidant, free radical scavenging and anti-inflammatory activity. Taking into consideration the postulated pathogenesis of certain CNS dysfunctions characterized by neuronal degradation, flavonols may prevent the decay of neurons in multiple pathways. Leaves of Maesa membranacea yielded several flavonol glycosides including α-rhamnoisorobin (kaempferol 7-O-α-rhamnoside) and kaempferitrin (kaempferol 3,7-di-O-α-rhamnoside). The latter compound was a major constituent of the investigated plant material. Neuroprotective effects of kaempferitrin and α-rhamnoisorobin were tested in vitro using H(2)O(2)-, 6-OHDA- and doxorubicin-induced models of SH-SY5Y cell damage. Both undifferentiated and differentiated neuroblastoma cells were used in the experiments. α-Rhamnoisorobin at a concentration range of 1–10 µM demonstrated cytoprotective effects against H(2)O(2)-induced cell damage. The compound (at 1–10 µM) was also effective in attenuating 6-OHDA-induced neurotoxicity. In both H(2)O(2)- and 6-OHDA-induced cell damage, kaempferitrin, similar to isoquercitrin, demonstrated neuroprotective activity at the highest of the tested concentrations (50 µM). The tested flavonols were not effective in counteracting doxorubicin-induced cytotoxicity. Their caspase-3- and cathepsin D-inhibitory activities appeared to be structure dependent. Inhibition of the PI3-K/Akt pathway abolished the neuroprotective effect of the investigated flavonols.
format Online
Article
Text
id pubmed-8509010
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85090102021-10-13 Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation Jantas, Danuta Malarz, Janusz Le, Thanh Nguyen Stojakowska, Anna Int J Mol Sci Article As components of the human diet with potential health benefits, flavonols are the subject of numerous studies, confirming their antioxidant, free radical scavenging and anti-inflammatory activity. Taking into consideration the postulated pathogenesis of certain CNS dysfunctions characterized by neuronal degradation, flavonols may prevent the decay of neurons in multiple pathways. Leaves of Maesa membranacea yielded several flavonol glycosides including α-rhamnoisorobin (kaempferol 7-O-α-rhamnoside) and kaempferitrin (kaempferol 3,7-di-O-α-rhamnoside). The latter compound was a major constituent of the investigated plant material. Neuroprotective effects of kaempferitrin and α-rhamnoisorobin were tested in vitro using H(2)O(2)-, 6-OHDA- and doxorubicin-induced models of SH-SY5Y cell damage. Both undifferentiated and differentiated neuroblastoma cells were used in the experiments. α-Rhamnoisorobin at a concentration range of 1–10 µM demonstrated cytoprotective effects against H(2)O(2)-induced cell damage. The compound (at 1–10 µM) was also effective in attenuating 6-OHDA-induced neurotoxicity. In both H(2)O(2)- and 6-OHDA-induced cell damage, kaempferitrin, similar to isoquercitrin, demonstrated neuroprotective activity at the highest of the tested concentrations (50 µM). The tested flavonols were not effective in counteracting doxorubicin-induced cytotoxicity. Their caspase-3- and cathepsin D-inhibitory activities appeared to be structure dependent. Inhibition of the PI3-K/Akt pathway abolished the neuroprotective effect of the investigated flavonols. MDPI 2021-09-26 /pmc/articles/PMC8509010/ /pubmed/34638702 http://dx.doi.org/10.3390/ijms221910363 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jantas, Danuta
Malarz, Janusz
Le, Thanh Nguyen
Stojakowska, Anna
Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation
title Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation
title_full Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation
title_fullStr Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation
title_full_unstemmed Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation
title_short Neuroprotective Properties of Kempferol Derivatives from Maesa membranacea against Oxidative Stress-Induced Cell Damage: An Association with Cathepsin D Inhibition and PI3K/Akt Activation
title_sort neuroprotective properties of kempferol derivatives from maesa membranacea against oxidative stress-induced cell damage: an association with cathepsin d inhibition and pi3k/akt activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8509010/
https://www.ncbi.nlm.nih.gov/pubmed/34638702
http://dx.doi.org/10.3390/ijms221910363
work_keys_str_mv AT jantasdanuta neuroprotectivepropertiesofkempferolderivativesfrommaesamembranaceaagainstoxidativestressinducedcelldamageanassociationwithcathepsindinhibitionandpi3kaktactivation
AT malarzjanusz neuroprotectivepropertiesofkempferolderivativesfrommaesamembranaceaagainstoxidativestressinducedcelldamageanassociationwithcathepsindinhibitionandpi3kaktactivation
AT lethanhnguyen neuroprotectivepropertiesofkempferolderivativesfrommaesamembranaceaagainstoxidativestressinducedcelldamageanassociationwithcathepsindinhibitionandpi3kaktactivation
AT stojakowskaanna neuroprotectivepropertiesofkempferolderivativesfrommaesamembranaceaagainstoxidativestressinducedcelldamageanassociationwithcathepsindinhibitionandpi3kaktactivation