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HSN G1 demonstrates multifaceted therapeutic strategy against Alzheimer disease in APP PS1 mouse model.

PMID: 42020486 · DOI: 10.1038/s41598-026-49541-9 · Scientific reports, 2026 · Jeong Won Ahn, Eun-Jung Yoon, Hyun Soo Kim, Yunseo Choi, Jiwon Jeong, Kongara Damodar, Yeong-Min Yoo, Dongsun Park, Seon
📄 Abstract

Current therapeutic approaches for Alzheimer's disease (AD) demonstrate limited efficacy and fail to address disease progression. In the present study, we present HSN-G1, a novel ginsenoside-enriched pharmaceutical formulation that employs a dual-target mechanism through the modulation of amyloid clearance pathways and cholinergic neurotransmission. HSN-G1 demonstrates a reproducible ginsenoside profile enriched with Re (33.27 mg/g), Rd (25.00 mg/g), and Rg3 stereoisomers (12.18 mg/g), ensuring pharmaceutical-grade reproducibility. HSN-G1 enhanced amyloid-beta (Aβ) clearance in microglial cells, with significantly greater effects observed in SRA-overexpressing cells, suggesting SRA-dependent clearance mechanisms. In APP/PS1 transgenic mice, six-week oral administration of HSN-G1 (100-400 mg/kg) elicited significant dose-dependent improvements in cognitive performance. Male mice exhibited more stable and consistent enhancements in both passive avoidance and spatial memory tests compared to vehicle controls (p < 0.001), while both sexes demonstrated comparable reductions in brain Aβ levels (approximately 45%) and differential increases in acetylcholine (73% in males; 55% in females, p < 0.01). HSN-G1 administration enhanced the expression of neurotrophic factors, with NGF upregulation predominantly observed in males, whereas BDNF, CNTF, and GDNF were consistently elevated across both sexes. These findings establish HSN-G1 as a promising disease-modifying agent with standardized composition and therapeutic efficacy, surpassing the limitations of conventional single-target approaches. The superior efficacy of HSN-G1 compared to existing treatments validates its potential for clinical development, highlighting the significance of sex-specific therapeutic responses in future AD therapeutics.

Confidence: 0.23 · 11 полей извлечено
Идентификация (6 полей)
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Механизм действия (21 полей)
Mechanism
dual-target mechanism through modulation of amyloid clearance pathways and cholinergic neurotransmission
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Mutations (obesity/lean)
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Activity (obesity)
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Activity temporal
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Energy balance
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Fat metabolism
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Lipolysis
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Thermogenesis
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Muscle metabolism
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Inflammation
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Glucose metabolism
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AA metabolism
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Hormonal pathways
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Cell death
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Adipocyte fibrosis
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Экспрессия (8 полей)
Tissue expression
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In vitro
microglial cells, SRA-overexpressing cells
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In vivo
APP/PS1 transgenic mice, six-week oral administration, cognitive performance tests, brain Aβ levels, acetylcholine levels, neurotrophic factor expression
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In silico
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Genetic association
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Ex vivo
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Animal model
APP/PS1 transgenic mice
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Diet/model
oral administration of HSN-G1 (100-400 mg/kg)
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Клиника (11 полей)
Drug
HSN-G1
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Indication
Alzheimer's disease
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Patient subgroups
Male mice showed more stable cognitive improvements; both sexes showed Aβ reduction; NGF upregulation predominantly in males; BDNF, CNTF, GDNF elevated in both sexes
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Trial stage
Preclinical (animal model)
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MOA weight loss
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Endpoints
Dose-dependent cognitive improvements; ~45% reduction in brain Aβ levels; increased acetylcholine (73% in males, 55% in females); enhanced neurotrophic factors (NGF, BDNF, CNTF, GDNF)
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Approved
False
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