Investigating the impact of aspartame on Alzheimer's disease through network toxicology and molecular docking.
ネットワーク毒性学と分子ドッキングによるアスパルテームのアルツハイマー病への影響の調査 (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 未確定
- 出版年
- 2025
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
本研究は、アルツハイマー病(AD)と環境因子の関連に着目し、人工甘味料アスパルテームの神経毒性がAD病態に関与する分子機構を、ネットワーク毒性学と分子ドッキングにより推測した。複数データベースからアスパルテームとADの共通標的75個を抽出し、PPIネットワーク解析によりBCL2、PPARG、TNF、IL1β、MAPK3、ESR1、CASP3を中核標的と特定した。GO解析ではタンパク質代謝、神経炎症、アポトーシス、酸化ストレスへの関与が示され、KEGG経路ではTNF、MAPK、PI3K-Aktシグナル伝達経路が濃縮された。分子ドッキングではアスパルテームと中核標的との結合親和性が確認された。これらから、アスパルテームは多標的・多経路を介して神経炎症、アポトーシス、アミロイドβ代謝などADの主要病態に関与する可能性が示唆された。ただし、生物学的効果の確認には今後の実験研究が必要である。
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抄録
Introduction: Alzheimer's disease (AD) is a prevalent neurodegenerative disorder, and the relationship between its pathogenesis and environmental factors has garnered increasing scholarly interest. Aspartame, a widely utilized artificial sweetener, has potential neurotoxic effects that remain incompletely understood. This study employs network toxicology and molecular docking to speculate on the potential molecular mechanisms by which aspartame is involved in the pathological process of AD.Methods: By integrating data from multiple databases, including ChEMBL, SwissTargetPrediction, OMIM, and GeneCards, we obtained the shared targets of aspartame and AD. A protein-protein interaction (PPI) network was constructed using the STRING database and Cytoscape software to discern the core targets. Subsequently, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses were performed via the DAVID database, and molecular docking validation of the core targets was conducted using AutoDock Vina.Results: In this study, a total of 298 targets associated with aspartame and 2,042 targets related to AD were identified. Seventy-five common targets were discovered, with BCL2, PPARG, TNF, IL1β, MAPK3, ESR1, and CASP3 were hypothesized as key core targets. GO functional analysis indicated that these targets are predominantly involved in biological processes such as protein metabolism, neuroinflammation, apoptosis, and oxidative stress. Furthermore, KEGG pathway analysis revealed significant enrichment in pathways TNF signaling, MAPK signaling, and PI3K-Akt signaling, among others. Molecular docking studies have shown that aspartame has A certain binding affinity with some core targets.Discussion: It is speculated that aspartame may be involved in the key pathological processes of AD through multi-target and multi-pathway mechanisms, including neuroinflammation, apoptosis and amyloid-beta (Aβ) metabolism. This computational study speculates that aspartame, as an environmental exposure factor, is involved in the potential molecular mechanism of AD pathogenesis, thereby providing a theoretical basis for evaluating its neurotoxicity. Further experimental studies are needed in the future to confirm its biological effects.
DOI 10.3389/fnut.2025.1733469
PMID 41586222
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