Unraveling Network Pharmacology-Based Therapeutics of Anthranilate Sulfonamides via Sirtuins/FOXO3a Cascade in Alzheimer's Disease.
1/5 보강
Sulfonamide-based compounds have been a clinically attractive scaffold for drug development and proven as antioxidant and antimicrobial agents, but their pharmacological derivatives containing anthran
APA
Ruankham W, Prachayasittikul V, et al. (2026). Unraveling Network Pharmacology-Based Therapeutics of Anthranilate Sulfonamides via Sirtuins/FOXO3a Cascade in Alzheimer's Disease.. Journal of neurochemistry, 170(2), e70377. https://doi.org/10.1111/jnc.70377
MLA
Ruankham W, et al.. "Unraveling Network Pharmacology-Based Therapeutics of Anthranilate Sulfonamides via Sirtuins/FOXO3a Cascade in Alzheimer's Disease.." Journal of neurochemistry, vol. 170, no. 2, 2026, pp. e70377.
PMID
41714304 ↗
Abstract 한글 요약
Sulfonamide-based compounds have been a clinically attractive scaffold for drug development and proven as antioxidant and antimicrobial agents, but their pharmacological derivatives containing anthranilates (SA1-4) and therapeutic targets are not clearly clarified. To unravel the neuroprotective roles and underlying mechanisms of SA1-4 against oxidative injury and healthy longevity crosstalk, a combination of in vitro experiments, in silico modeling, and network pharmacology was employed. Pretreatment with SA1-4 in human neuronal SH-SY5Y cells significantly regulated sirtuins (SIRTs)/forkhead box class O 3a (FOXO3a)-mediated longevity signaling pathway via targeting endogenous antioxidant enzymes (i.e., superoxide dismutase 2 [SOD2] and catalase [CAT]), apoptotic cascades (i.e., Bcl-2-associated X-protein [BAX] and B-cell lymphoma-2 [BCL-2]), mitochondrial balance, and ultimately led to the neuronal rescue. Molecular docking simulations support the possibility of the SA1-4 modulatory effect within the active binding site of SIRT1. Importantly, in silico predictions of pharmacokinetic profiles suggested that the synthetic compounds possessed preferable drug-like properties, good oral bioavailability, and safety profiles. Network pharmacology also revealed the involvement of SA1-4 and key targets-regulated SIRTs in neurodegeneration, including non-amyloidogenic cascade, tau phosphorylation, calcium homeostasis, insulin-mediated glucose uptake, and neuroinflammation. Therefore, SA1-4 exert promising multi-target therapeutic strategies against oxidative damage, potentially offering alternative anti-Alzheimer candidates for further clinical neurodegenerative and anti-aging therapeutics.
🏷️ 키워드 / MeSH 📖 같은 키워드 OA만
- Humans
- Sirtuins
- Alzheimer Disease
- Forkhead Box Protein O3
- Sulfonamides
- Network Pharmacology
- Molecular Docking Simulation
- Neuroprotective Agents
- ortho-Aminobenzoates
- Signal Transduction
- Cell Line
- Tumor
- Animals
- Alzheimer's disease
- anthranilic acid
- network pharmacology
- neuroprotection
- sirtuins/FOXO3a cascade
- sulfonamide
🏷️ 같은 키워드 · 무료전문 — 이 논문 MeSH/keyword 기반
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