Lingyu She's research while affiliated with Yanbian University and other places

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Publications (8)


Norboldine improves cognitive impairment and pathological features in Alzheimer's Disease by activating AMPK/GSK3β/Nrf2 signaling pathway
  • Article

June 2024

Journal of Ethnopharmacology

Yuqing Zeng

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Li Xiong

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Hao Tang

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[...]

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Xia Zhao
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β-amyloid binds to microglia Dectin-1 to induce inflammatory response in the pathogenesis of Alzheimer's disease

June 2023

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16 Reads

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3 Citations

International Journal of Biological Sciences

Microglia-mediated neuroinflammation is closely related to the development of Alzheimer's disease (AD). In the early stages of the inflammation response, pattern recognition receptors (PRRs) play a key role in clearing damaged cells and defending against infection by recognizing endogenous and exogenous ligands. However, the regulation of pathogenic microglial activation and its role in AD pathology remains poorly understood. Here we showed that a pattern recognition receptor called Dectin-1, expressed on microglia, mediates the pro-inflammatory responses of beta-amyloid (Aβ). Knockout of Dectin-1 reduced Aβ1-42 (Aβ42)-induced microglial activation, inflammatory responses, and synaptic and cognitive deficits in Aβ42-infused AD mice. Similar results were obtained in the BV2 cell model. Mechanistically, we showed that Aβ42 could directly bind to Dectin-1, causing Dectin-1 homodimerization and activating downstream spleen tyrosine kinase (Syk)/nuclear factor-κB (NF-κB) signaling pathway to induce the expression of inflammatory factors and, in turn, AD pathology. These results suggest the important role of microglia Dectin-1 as a new direct receptor for Aβ42 in microglial activation and AD pathology and provide a potential therapeutic strategy for neuroinflammation in AD.


Ginsenoside Rk3 ameliorates Aβ-induced neurotoxicity in APP/PS1 model mice via AMPK signaling pathway

February 2023

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10 Reads

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22 Citations

Biomedicine & Pharmacotherapy

Alzheimer's disease (AD) has become a major public health problem affecting the elderly population, and there is currently no effective treatment. Although the pathogenesis of AD is unclear, neurotoxicity induced by oxidative stress plays an important role in the progression of AD. Ginseng, the root and rhizome of Panax ginseng C. A. Meyer, is used not only as an herbal medicine but also as a functional food to support bodily functions. Ginsenoside Rk3 (Rk3), the main bioactive component in ginseng, has a strong antioxidant effect and has not been reported in AD. In this study, we showed that Rk3 improved neuronal apoptosis, decreased intracellular reactive oxygen species (ROS) production and restored mitochondrial membrane potential in PC12 and primary neuronal cells. In vivo, we found that Rk3 improved spatial learning and memory deficit in precursor protein (APP)/presenilin 1 (PS1) double transgenic mouse model of AD. Additionally, Rk3 increases glutathione reductase (GSH) and superoxide dismutase (SOD) levels while inhibits malondialdehyde (MDA) production, apoptosis and activation of glial cells in APP/PS1 mice. Mechanistically, we found that the protective effect of Rk3 is in correlation with the activation of AMPK/Nrf2 signaling pathway. In conclusion, the findings of this study provide support for Rk3 as a new strategy for the treatment of AD.


The role and therapeutic implication of protein tyrosine phosphatases in Alzheimer’s disease

July 2022

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20 Reads

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6 Citations

Biomedicine & Pharmacotherapy

Protein tyrosine phosphatases (PTPs) are important regulator of neuronal signal transduction and a growing number of PTPs have been implicated in Alzheimer’s disease (AD). In the brains of patients with AD, there are a variety of abnormally phosphorylated proteins, which are closely related to the abnormal expression and activity of PTPs. β-Amyloid plaques (Aβ) and hyperphosphorylated tau protein are two pathological hallmarks of AD, and their accumulation ultimately leads to neurodegeneration. Studies have shown that protein phosphorylation signaling pathways mediates intracellular accumulation of Aβ and tau during AD development and are involved in synaptic plasticity and other stress responses. Here, we summarized the roles of PTPs related to the pathogenesis of AD and analyzed their therapeutic potential in AD.

Citations (5)


... Furthermore, Frondoside A, a saponin isolated from sea cucumber, can reduce the level of ROS in nematodes, decrease the oligomerization of Aβ proteins, and inhibit their toxicity (Tangrodchanapong et al., 2020). The neuroprotective properties of parthenolide include the reduction of oxidative stress by regulating the AMPK/GSK3β (ser9)/Nrf2 signaling pathway, thus inhibiting the apoptosis cascade, and playing a role in reducing the toxicity of Aβ proteins (Sun et al., 2023). Thus, the expansion of research into natural product research has been of great importance for the development of new anti-AD drugs. ...

Reference:

P-hydroxybenzaldehyde protects Caenorhabditis elegans from oxidative stress and β-amyloid toxicity
Parthenolide alleviates cognitive dysfunction and neurotoxicity via regulation of AMPK/GSK3β(Ser9)/Nrf2 signaling pathway
  • Citing Article
  • November 2023

Biomedicine & Pharmacotherapy

... Nrf2 is the "smashing door" to tightly regulate the antioxidant system (She et al. 2024). When cells are stimulated by ROS, Nrf2's conformation changes and it moves from the cytoplasm to the nucleus. ...

Ginsenoside RK1 improves cognitive impairments and pathological changes in Alzheimer's disease via stimulation of the AMPK/Nrf2 signaling pathway
  • Citing Article
  • October 2023

Phytomedicine

... Although these studies suggest a beneficial role of Dectin-1 signaling in various neurodegenerative diseases, there have also been several conflicting studies. A recent study showed that knockout of Dectin-1 ameliorated cognitive deficits and neurodegeneration in AD mice 22 . Similarly, adeno-associated virus-mediated knockdown of Dectin-1 alleviated motor deficits and neurodegeneration in a Parkinson's disease (PD) rat model 23 . ...

β-amyloid binds to microglia Dectin-1 to induce inflammatory response in the pathogenesis of Alzheimer's disease
  • Citing Article
  • June 2023

International Journal of Biological Sciences

... mounting research has suggested that oxidative stress and inflammation were the major factors accompanying the development and progression of AD (Cui et al., 2019;Ren et al., 2023). Diminished SOD levels and elevated MDA levels tended to aggravate neuronal apoptosis and spatial learning and memory deficits (She et al., 2023). Further, the secretion of IL-1-β and TGF-β1 were associated with mitochondrial metabolic activity, immunomodulation as well as neuroprotection in the brain, and thus they could be considered as novel therapeutic targets for the therapy of AD (Cui et al., 2019;Kapoor and Chinnathambi, 2023). ...

Ginsenoside Rk3 ameliorates Aβ-induced neurotoxicity in APP/PS1 model mice via AMPK signaling pathway
  • Citing Article
  • February 2023

Biomedicine & Pharmacotherapy

... Overall, STEP61 is an important PTP in the pathogenesis of AD, and further research is needed to understand its precise mechanism in this disease. Targeting STEP61 with inhibitors may offer a novel approach to treating AD and reducing the burden on patients, families, and communities affected by this devastating disease (Zhao et al. 2022). Table 1 gives the basic information regarding STEP protein (Eswaran et al. 2006). ...

The role and therapeutic implication of protein tyrosine phosphatases in Alzheimer’s disease
  • Citing Article
  • July 2022

Biomedicine & Pharmacotherapy