Publications by authors named "Liufei Yang"

In relapsing-remitting multiple sclerosis (RRMS) patients, an enlarged perivascular space, cognitive impairment, and inflammatory immune response has been associated with the glymphatic dysfunction. Therefore, we employed the diffusion tensor image analysis along the perivascular space (DTI-ALPS) to evaluate glymphatic function in RRMS patients. The study included 39 RRMS patients and 34 age- and gender-matched healthy controls (HC).

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  • Lactate plays a crucial role in reducing neuroinflammation and neuronal injury after ischemic stroke by regulating microglial responses through HIF-1α.
  • Administration of lactate post-reperfusion results in decreased infarct size, reduced neuronal apoptosis, and improved neurological functions in mice subjected to middle cerebral artery occlusion (MCAO).
  • There is a notable alteration in inflammatory markers and signaling pathways, indicating that lactate not only modifies inflammation but also involves CCL7 as a key player in the neuroprotective effects against cerebral ischemia-reperfusion injury.
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  • * Tetramethylpyrazine was tested as a potential treatment to mitigate these impairments, showing positive effects on learning and memory, as well as reducing neuronal damage.
  • * The study concluded that tetramethylpyrazine enhances synaptic plasticity in the hippocampus, helping to reverse the negative effects of sevoflurane on developing brains.
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Synchronization in complex networks is a ubiquitous and important phenomenon with implications in various fields. Excessive synchronization may lead to undesired consequences, making desynchronization techniques essential. Exploiting the Proximal Policy Optimization algorithm, this work studies reinforcement learning-based pinning control strategies for synchronization suppression in global coupling networks and two types of irregular coupling networks: the Watts-Strogatz small-world networks and the Barabási-Albert scale-free networks.

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Background: Lipid metabolism has a crucial role in neural repair in neurodegenerative diseases. We recently revealed that lipogenesis-mediated interleukin-33 (IL-33) upregulation lead to blood-brain barrier (BBB) repair after ischemic stroke. However, manipulating the key enzyme fatty acid synthase (FASN) to enhance lipogenesis was very challenging.

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Causality detection methods based on mutual cross mapping have been fruitfully developed and applied to data originating from nonlinear dynamical systems, where the causes and effects are non-separable. However, these pairwise methods still have shortcomings in discriminating typical network structures, including common drivers, indirect dependencies, and facing the curse of dimensionality, when they are stepping to causal network reconstruction. A few endeavors have been devoted to conquer these shortcomings.

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Anesthetics such as sevoflurane are commonly administered to infants and children. However, the possible neurotoxicity caused by prolonged or repetitive exposure to it should be a concern. The neuroprotective effects of metformin are observed in many models of neurological disorders.

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Metabolic adaption drives microglial inflammatory responses, and lactate shapes immunological and inflammatory states. However, whether lactate was involved in the regulation of microglial inflammatory responses after cerebral ischemia remains unclear. In this study, the expression of iNOS, arginase-1, phosphorylated NF-κB p65 and IκB-α, and HIF-1α in BV2 cells after oxygen-glucose deprivation (OGD) were detected by western blotting and immunofluorescence.

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