Long Term High‐Salt Diet Induces Cognitive Impairments via Down‐Regulating SHANK1
The study identifies a novel mechanistic link between long‐term HS diet and cognitive impairment, wherein PKA/CREB axis inactivation leads to SHANK1 reduction, synaptic damage, and cognitive deficits. Abstract High‐salt (HS) diet is an established risk factor for cognitive impairment, but the underlying mechanisms remain unclear.
Cuiping Guo+10 more
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Exploreing the potential mechanism of Aitongxiao formula inhibiting hepatocellular carcinoma in vitro and in vivo based on network Pharmacology. [PDF]
Zhao X+6 more
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This study demonstrates that mutant FAT1 promotes ASCL2‐driven, CPT1A‐dependent fatty acid oxidation, leading to resistance to CPI‐613‐mediated TCA cycle inhibition in head and neck cancer. In vivo gene depletion of mutant FAT1 with LNP‐sgFAT1 suppresses tumor growth and restores CPI‐613 sensitivity, revealing a targetable metabolic bypass with ...
Fanghui Chen+11 more
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Deciphering anti-colorectal cancer potential of Avicennia alba bioactives via network pharmacology and in vitro validation. [PDF]
Irham LM+9 more
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Exploring the Mechanisms of Lijin Fang on Treg/Th17 Cell Imbalance in COPD Based on Network Pharmacology. [PDF]
Li ZH+10 more
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Integrating experimental and network pharmacology to explore the pharmacological mechanisms of Dioscin against glioblastoma. [PDF]
Huang J+5 more
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Network pharmacology approach to unveiling the mechanism of berberine in the amelioration of morphine tolerance. [PDF]
Shuai H+6 more
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Exploration of Liuwei Dihuang Pill on periodontitis based on network pharmacology and molecular docking. [PDF]
Luo Y+5 more
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Network Pharmacology Approaches to Myocardial Infarction Reperfusion Injury: Exploring Mechanisms, Pathophysiology, and Novel Therapies. [PDF]
Das J+13 more
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