Cargando…

The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models

Alzheimer’s disease (AD) presents a significant challenge to global healthcare systems, with current treatments offering only modest relief and often bringing unwanted side effects, necessitating the exploration of more effective and safer drugs. In this study, we employed the Caenorhabditis elegans...

Descripción completa

Detalles Bibliográficos
Autores principales: Fu, Hai-Jun, Zhou, Xing-Yue, Li, Ya-Ping, Chen, Xue, He, Yan-Ni, Qin, Da-Lian, Yu, Lu, Yu, Chong-Lin, Wu, Jian-Ming, Wu, An-Guo, Zhou, Xiao-Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672099/
https://www.ncbi.nlm.nih.gov/pubmed/38003724
http://dx.doi.org/10.3390/ijms242216536
_version_ 1785149490655657984
author Fu, Hai-Jun
Zhou, Xing-Yue
Li, Ya-Ping
Chen, Xue
He, Yan-Ni
Qin, Da-Lian
Yu, Lu
Yu, Chong-Lin
Wu, Jian-Ming
Wu, An-Guo
Zhou, Xiao-Gang
author_facet Fu, Hai-Jun
Zhou, Xing-Yue
Li, Ya-Ping
Chen, Xue
He, Yan-Ni
Qin, Da-Lian
Yu, Lu
Yu, Chong-Lin
Wu, Jian-Ming
Wu, An-Guo
Zhou, Xiao-Gang
author_sort Fu, Hai-Jun
collection PubMed
description Alzheimer’s disease (AD) presents a significant challenge to global healthcare systems, with current treatments offering only modest relief and often bringing unwanted side effects, necessitating the exploration of more effective and safer drugs. In this study, we employed the Caenorhabditis elegans (C. elegans) model, specifically the AD-like CL4176 strain expressing the human Aβ((1–42)) protein, to investigate the potential of Reineckia carnea extract and its fractions. Our results showed that the Reineckia carnea ether fraction (REF) notably diminished the paralysis rates of CL4176 worms. Additionally, REF also attenuated the neurotoxicity effects prompted by Tau proteins in the BR5270 worms. Moreover, REF was observed to counteract the accumulation of Aβ and pTau proteins and their induced oxidative stress in C. elegans AD-like models. Mechanistic studies revealed that REF’s benefits were associated with the induction of autophagy in worms; however, these protective effects were nullified when autophagy-related genes were suppressed using RNAi bacteria. Together, these findings highlight Reineckia carnea ether fraction as a promising candidate for AD treatment, warranting further investigation into its autophagy-inducing components and their molecular mechanisms.
format Online
Article
Text
id pubmed-10672099
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106720992023-11-20 The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models Fu, Hai-Jun Zhou, Xing-Yue Li, Ya-Ping Chen, Xue He, Yan-Ni Qin, Da-Lian Yu, Lu Yu, Chong-Lin Wu, Jian-Ming Wu, An-Guo Zhou, Xiao-Gang Int J Mol Sci Article Alzheimer’s disease (AD) presents a significant challenge to global healthcare systems, with current treatments offering only modest relief and often bringing unwanted side effects, necessitating the exploration of more effective and safer drugs. In this study, we employed the Caenorhabditis elegans (C. elegans) model, specifically the AD-like CL4176 strain expressing the human Aβ((1–42)) protein, to investigate the potential of Reineckia carnea extract and its fractions. Our results showed that the Reineckia carnea ether fraction (REF) notably diminished the paralysis rates of CL4176 worms. Additionally, REF also attenuated the neurotoxicity effects prompted by Tau proteins in the BR5270 worms. Moreover, REF was observed to counteract the accumulation of Aβ and pTau proteins and their induced oxidative stress in C. elegans AD-like models. Mechanistic studies revealed that REF’s benefits were associated with the induction of autophagy in worms; however, these protective effects were nullified when autophagy-related genes were suppressed using RNAi bacteria. Together, these findings highlight Reineckia carnea ether fraction as a promising candidate for AD treatment, warranting further investigation into its autophagy-inducing components and their molecular mechanisms. MDPI 2023-11-20 /pmc/articles/PMC10672099/ /pubmed/38003724 http://dx.doi.org/10.3390/ijms242216536 Text en © 2023 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
Fu, Hai-Jun
Zhou, Xing-Yue
Li, Ya-Ping
Chen, Xue
He, Yan-Ni
Qin, Da-Lian
Yu, Lu
Yu, Chong-Lin
Wu, Jian-Ming
Wu, An-Guo
Zhou, Xiao-Gang
The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models
title The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models
title_full The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models
title_fullStr The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models
title_full_unstemmed The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models
title_short The Protective Effects of Reineckia carnea Ether Fraction against Alzheimer’s Disease Pathology: An Exploration in Caenorhabditis elegans Models
title_sort protective effects of reineckia carnea ether fraction against alzheimer’s disease pathology: an exploration in caenorhabditis elegans models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10672099/
https://www.ncbi.nlm.nih.gov/pubmed/38003724
http://dx.doi.org/10.3390/ijms242216536
work_keys_str_mv AT fuhaijun theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT zhouxingyue theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT liyaping theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT chenxue theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT heyanni theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT qindalian theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT yulu theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT yuchonglin theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT wujianming theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT wuanguo theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT zhouxiaogang theprotectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT fuhaijun protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT zhouxingyue protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT liyaping protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT chenxue protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT heyanni protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT qindalian protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT yulu protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT yuchonglin protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT wujianming protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT wuanguo protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels
AT zhouxiaogang protectiveeffectsofreineckiacarneaetherfractionagainstalzheimersdiseasepathologyanexplorationincaenorhabditiselegansmodels