Maria D. Santi, Diego Carvalho, Rosina Dapueto, Manuela Bentura, Maia Zeni, Loreto Martínez-González, Ana Martínez, Mariana A. Peralta, Ana Rey, Javier Giglio, Maria G. Ortega, Eduardo Savio, Juan A. Abin-Carriquiry, Florencia Arredondo
{"title":"从杜鹃花中分离出的异戊烯基黄烷酮是阿尔茨海默病小鼠体外模型中一种潜在的多靶点神经保护剂","authors":"Maria D. Santi, Diego Carvalho, Rosina Dapueto, Manuela Bentura, Maia Zeni, Loreto Martínez-González, Ana Martínez, Mariana A. Peralta, Ana Rey, Javier Giglio, Maria G. Ortega, Eduardo Savio, Juan A. Abin-Carriquiry, Florencia Arredondo","doi":"10.1007/s12640-024-00703-5","DOIUrl":null,"url":null,"abstract":"<p>Alzheimer’s disease (AD) involves a neurodegenerative process that has not yet been prevented, reversed, or stopped. Continuing with the search for natural pharmacological treatments, flavonoids are a family of compounds with proven neuroprotective effects and multi-targeting behavior. The American genus <i>Dalea</i> L. (Fabaceae) is an important source of bioactive flavonoids. In this opportunity, we tested the neuroprotective potential of three prenylated flavanones isolated from <i>Dalea</i> species in a new in vitro pre-clinical AD model previously developed by us. Our approach consisted in exposing neural cells to conditioned media (<i>3xTg-AD ACM</i>) from neurotoxic astrocytes derived from hippocampi and cortices of old 3xTg-AD mice, mimicking a local neurodegenerative microenvironment. Flavanone <b>1</b> and <b>3</b> showed a neuroprotective effect against <i>3xTg-AD ACM</i>, being <b>1</b> more active than <b>3</b>. The structural requirements to afford neuroprotective activity in this model are a 5’-dimethylallyl and 4’-hydroxy at the B ring. In order to search the mechanistic performance of the most active flavanone, we focus on the flavonoid-mediated regulation of GSK-3β-mediated tau phosphorylation previously reported. Flavanone <b>1</b> treatment decreased the rise of hyperphosphorylated tau protein neuronal levels induced after <i>3xTg-AD ACM</i> exposure and inhibited the activity of GSK-3β. Finally, direct exposure of these neurotoxic 3xTg-AD astrocytes to flavanone <b>1</b> resulted in toxicity to these cells and reduced the neurotoxicity of 3xTg-AD ACM as well. Our results allow us to present compound <b>1</b> as a natural prenylated flavanone that could be used as a precursor to development and design of future drug therapies for AD.</p>","PeriodicalId":19193,"journal":{"name":"Neurotoxicity Research","volume":"58 1","pages":""},"PeriodicalIF":2.9000,"publicationDate":"2024-04-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Prenylated Flavanone Isolated from Dalea Species as a Potential Multitarget-Neuroprotector in an In Vitro Alzheimer’s Disease Mice Model\",\"authors\":\"Maria D. Santi, Diego Carvalho, Rosina Dapueto, Manuela Bentura, Maia Zeni, Loreto Martínez-González, Ana Martínez, Mariana A. Peralta, Ana Rey, Javier Giglio, Maria G. Ortega, Eduardo Savio, Juan A. Abin-Carriquiry, Florencia Arredondo\",\"doi\":\"10.1007/s12640-024-00703-5\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Alzheimer’s disease (AD) involves a neurodegenerative process that has not yet been prevented, reversed, or stopped. Continuing with the search for natural pharmacological treatments, flavonoids are a family of compounds with proven neuroprotective effects and multi-targeting behavior. The American genus <i>Dalea</i> L. (Fabaceae) is an important source of bioactive flavonoids. In this opportunity, we tested the neuroprotective potential of three prenylated flavanones isolated from <i>Dalea</i> species in a new in vitro pre-clinical AD model previously developed by us. Our approach consisted in exposing neural cells to conditioned media (<i>3xTg-AD ACM</i>) from neurotoxic astrocytes derived from hippocampi and cortices of old 3xTg-AD mice, mimicking a local neurodegenerative microenvironment. Flavanone <b>1</b> and <b>3</b> showed a neuroprotective effect against <i>3xTg-AD ACM</i>, being <b>1</b> more active than <b>3</b>. The structural requirements to afford neuroprotective activity in this model are a 5’-dimethylallyl and 4’-hydroxy at the B ring. In order to search the mechanistic performance of the most active flavanone, we focus on the flavonoid-mediated regulation of GSK-3β-mediated tau phosphorylation previously reported. Flavanone <b>1</b> treatment decreased the rise of hyperphosphorylated tau protein neuronal levels induced after <i>3xTg-AD ACM</i> exposure and inhibited the activity of GSK-3β. Finally, direct exposure of these neurotoxic 3xTg-AD astrocytes to flavanone <b>1</b> resulted in toxicity to these cells and reduced the neurotoxicity of 3xTg-AD ACM as well. 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Prenylated Flavanone Isolated from Dalea Species as a Potential Multitarget-Neuroprotector in an In Vitro Alzheimer’s Disease Mice Model
Alzheimer’s disease (AD) involves a neurodegenerative process that has not yet been prevented, reversed, or stopped. Continuing with the search for natural pharmacological treatments, flavonoids are a family of compounds with proven neuroprotective effects and multi-targeting behavior. The American genus Dalea L. (Fabaceae) is an important source of bioactive flavonoids. In this opportunity, we tested the neuroprotective potential of three prenylated flavanones isolated from Dalea species in a new in vitro pre-clinical AD model previously developed by us. Our approach consisted in exposing neural cells to conditioned media (3xTg-AD ACM) from neurotoxic astrocytes derived from hippocampi and cortices of old 3xTg-AD mice, mimicking a local neurodegenerative microenvironment. Flavanone 1 and 3 showed a neuroprotective effect against 3xTg-AD ACM, being 1 more active than 3. The structural requirements to afford neuroprotective activity in this model are a 5’-dimethylallyl and 4’-hydroxy at the B ring. In order to search the mechanistic performance of the most active flavanone, we focus on the flavonoid-mediated regulation of GSK-3β-mediated tau phosphorylation previously reported. Flavanone 1 treatment decreased the rise of hyperphosphorylated tau protein neuronal levels induced after 3xTg-AD ACM exposure and inhibited the activity of GSK-3β. Finally, direct exposure of these neurotoxic 3xTg-AD astrocytes to flavanone 1 resulted in toxicity to these cells and reduced the neurotoxicity of 3xTg-AD ACM as well. Our results allow us to present compound 1 as a natural prenylated flavanone that could be used as a precursor to development and design of future drug therapies for AD.
期刊介绍:
Neurotoxicity Research is an international, interdisciplinary broad-based journal for reporting both basic and clinical research on classical neurotoxicity effects and mechanisms associated with neurodegeneration, necrosis, neuronal apoptosis, nerve regeneration, neurotrophin mechanisms, and topics related to these themes.
Published papers have focused on:
NEURODEGENERATION and INJURY
Neuropathologies
Neuronal apoptosis
Neuronal necrosis
Neural death processes (anatomical, histochemical, neurochemical)
Neurodegenerative Disorders
Neural Effects of Substances of Abuse
NERVE REGENERATION and RESPONSES TO INJURY
Neural Adaptations
Neurotrophin mechanisms and actions
NEURO(CYTO)TOXICITY PROCESSES and NEUROPROTECTION
Excitatory amino acids
Neurotoxins, endogenous and synthetic
Reactive oxygen (nitrogen) species
Neuroprotection by endogenous and exogenous agents
Papers on related themes are welcome.