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Astragaloside IV-induced Nrf2 nuclear translocation ameliorates lead-related cognitive impairments in mice
Chunlei Yu1, Jing Zhang2, Xiaoming Li1
1The Institute of Medicine, Qiqihar Medical University, Qiqihar 161006, China.
Abstract:
Recently, oxidative stress is a common denominator in the pathogenesis of metal-induced neurotoxicity. Thus, antioxidant therapy is considered as a promising strategy for treating lead-related cognitive impairment. Here, we tested the hypothesis that astragaloside IV (AS-IV) ameliorates lead-associated cognitive deficits through Nrf2-dependent antioxidant mechanisms. Male Nrf2-KO and WT mice received drinking water with 2000 ppm lead and/or AS-IV by gavage for 8 weeks starting at 4 weeks of age. Morris water maze test and biochemical assays were employed to study cognition-enhancing and antioxidant effects of AS-IV. The signaling pathways involved were analyzed using RT-PCR and western blot technology. Significantly, AS-IV attenuated Morris water maze-based cognitive impairment in lead-intoxicated mice. Importantly, cognition-enhancing effect of AS-IV was lost in Nrf2-KO mice. In parallel, AS-IV suppressed lead acetate (PbAc)-induced oxidative stress, as measured by MDA. Mechanistically, AS-IV can up-regulate the expressions of the GCLc and HO-1 at the level of transcription and translation, but not SOD, TrxR activity, GCLm, Trx1, and NQO1 expression. Interestingly, AS-IV induced accumulation of Nrf2 in the nucleus, whereas Nrf2 mRNA levels were unchanged. Furthermore, AS-IV treatment resulted in elevated levels of phosphorylated Akt (active form) and phosphorylated GSK-3β (inactive forms) but decreased level of phosphorylated Fyn. Collectively, our findings indicate that AS-IV may target Nrf2 to attenuate lead-triggered oxidative stress and subsequent cognitive impairments, suggesting that AS-IV is a potential candidate for the treatment of lead-associated cognitive diseases.
Insights
Astragaloside IV (AS-IV) improves cognitive deficits caused by lead exposure by activating the Nrf2 pathway, reducing oxidative stress. This effect was not observed in Nrf2-knockout mice, highlighting Nrf2
Area of Science:
- Neuroscience
- Toxicology
- Pharmacology
Background:
- Oxidative stress is a key factor in lead-induced neurotoxicity and cognitive impairment.
- Antioxidant therapies show promise for treating lead-related cognitive deficits.
Purpose of the Study:
- To investigate if astragaloside IV (AS-IV) ameliorates lead-associated cognitive deficits via Nrf2-dependent antioxidant mechanisms.
- To explore the molecular pathways involved in AS-IV's effects on lead-intoxicated mice.
Main Methods:
- Morris water maze test to assess cognitive function.
- Biochemical assays to measure oxidative stress (MDA).
- RT-PCR and western blot to analyze gene and protein expression (Nrf2, GCLc, HO-1, Akt, GSK-3β, Fyn).
Main Results:
- AS-IV significantly attenuated cognitive impairment in lead-intoxicated mice.
- The cognition-enhancing effect of AS-IV was abolished in Nrf2-knockout mice.
- AS-IV suppressed lead-induced oxidative stress, upregulated GCLc and HO-1 expression, and increased nuclear Nrf2 accumulation.
Conclusions:
- AS-IV ameliorates lead-induced cognitive impairment by targeting the Nrf2 pathway to reduce oxidative stress.
- AS-IV demonstrates potential as a therapeutic agent for lead-associated cognitive diseases.

