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APP typically refers to the amyloid precursor protein, best known for its role in Alzheimer’s disease. -APP is mainly distributed in the synapses of neurons in the brain and Aβ peptide was produced from APP proteolysis by β-secretase and γ-secretase complex. -decreased APP in 5×FAD mice ameliorated their amyloid plaques and behavior activity. • APP is found to be upregulated in some cancers such as certain breast cancers, colon cancers, and lung cancers. Elevated levels may influence processes such as cell proliferation, adhesion, migration, and even invasion. |
3864- | ACNs, | Anthocyanins Potentially Contribute to Defense against Alzheimer’s Disease |
- | Review, | AD, | NA |
4300- | BBR, | Effect of berberine on cognitive function and β-amyloid precursor protein in Alzheimer’s disease models: a systematic review and meta-analysis |
- | Review, | AD, | NA |
3684- | BBR, | Neuroprotective effects of berberine in animal models of Alzheimer’s disease: a systematic review of pre-clinical studies |
- | Review, | AD, | NA |
3678- | BBR, | Network pharmacology study on the mechanism of berberine in Alzheimer’s disease model |
- | Review, | AD, | NA |
3680- | BBR, | Network pharmacology reveals that Berberine may function against Alzheimer’s disease via the AKT signaling pathway |
- | in-vivo, | AD, | NA |
3854- | CAP, | Capsaicin consumption reduces brain amyloid-beta generation and attenuates Alzheimer’s disease-type pathology and cognitive deficits in APP/PS1 mice |
- | in-vivo, | AD, | NA |
3701- | Chol, | Lifelong choline supplementation ameliorates Alzheimer's disease pathology and associated cognitive deficits by attenuating microglia activation |
- | in-vivo, | AD, | NA |
3712- | FA, | Ferulic Acid: A Hope for Alzheimer’s Disease Therapy from Plants |
- | Review, | AD, | NA |
3715- | FA, | CUR, | PS, | The Additive Effects of Low Dose Intake of Ferulic Acid, Phosphatidylserine and Curcumin, Not Alone, Improve Cognitive Function in APPswe/PS1dE9 Transgenic Mice |
- | in-vivo, | AD, | NA |
3723- | Gb, | Can We Use Ginkgo biloba Extract to Treat Alzheimer’s Disease? Lessons from Preclinical and Clinical Studies |
- | Review, | AD, | NA |
4302- | Gins, | Panax ginseng: A modulator of amyloid, tau pathology, and cognitive function in Alzheimer's disease |
- | Review, | AD, | NA |
- | Review, | AD, | NA | - | Review, | Stroke, | NA |
3767- | H2, | The role of hydrogen therapy in Alzheimer's disease management: Insights into mechanisms, administration routes, and future challenges |
- | Review, | AD, | NA |
3769- | H2S, | Research progress of hydrogen sulfide in Alzheimer's disease from laboratory to hospital: a narrative review |
- | Review, | AD, | NA |
2385- | MET, | Metformin activates chaperone-mediated autophagy and improves disease pathologies in an Alzheimer disease mouse model |
- | in-vitro, | AD, | H4 | - | in-vitro, | NA, | HEK293 | - | in-vivo, | NA, | NA | - | in-vitro, | NA, | SH-SY5Y |
3735- | MF, | Examining the effects of extremely low-frequency magnetic fields on cognitive functions and functional brain markers in aged mice |
- | in-vivo, | AD, | NA |
3835- | Moringa, | Moringa Oleifera Alleviates Aβ Burden and Improves Synaptic Plasticity and Cognitive Impairments in APP/PS1 Mice |
- | in-vivo, | AD, | NA |
3810- | mushLions, | Key Mechanisms and Potential Implications of Hericium erinaceus in NLRP3 Inflammasome Activation by Reactive Oxygen Species during Alzheimer’s Disease |
- | Review, | NA, | NA |
3743- | RF, | Repeated electromagnetic field stimulation lowers amyloid-β peptide levels in primary human mixed brain tissue cultures |
- | in-vitro, | AD, | NA |
3943- | Shank, | Protective Mechanisms of Nootropic Herb Shankhpushpi (Convolvulus pluricaulis) against Dementia: Network Pharmacology and Computational Approach |
- | Review, | AD, | NA |
4314- | VitB1/Thiamine, | Unraveling the molecular mechanisms of vitamin deficiency in Alzheimer's disease pathophysiology |
- | Review, | AD, | NA |
4037- | VitB12, | FA, | Mechanistic Link between Vitamin B12 and Alzheimer’s Disease |
- | Review, | AD, | NA |
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