Shuliang Liu
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Role not yet determined Is this you? Add your title
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Shuliang Liu's research focuses on understanding the mechanisms of drug-induced neurotoxicity and investigating antimicrobial resistance in foodborne pathogens. Liu has studied the effects of inhalation anesthetics on neuronal development in rhesus monkeys and ketamine-induced neuronal damage in rat primary forebrain cultures, examining alterations in N-methyl-D-aspartate receptor function.
In parallel, Liu's work has addressed the prevalence and characterization of bacterial species, particularly Salmonella, in food animals in China. This research includes investigating antimicrobial resistance patterns and identifying resistance genes in Salmonella strains isolated from broiler chickens. Liu has also explored the production, purification, and characterization of exopolysaccharides from various Lactobacillus and Weissella species, examining their potential antioxidant and immunoregulatory activities. These exopolysaccharides have been isolated from sources such as yogurt cultures and traditional fermented foods like Sichuan paocai.
Liu has published extensively, with 143 total publications and an h-index of 36, reflecting significant contributions to the scientific literature. Key collaborators at the National Center for Toxicological Research include Fang Liu, Leah E. Latham, Tucker A. Patterson, and John Talpos, with whom Liu has co-authored multiple publications.
Metrics
- h-index: 36
- Publications: 143
- Citations: 3,833
Selected Publications
-
Assessing the developmental effects of fentanyl and impacts on lipidomic profiling using neural stem cell models (2025)
-
The effects of cannabidiol and its main metabolites on human neural stem cells (2025)
-
Assessing potential desflurane-induced neurotoxicity using nonhuman primate neural stem cell models (2025)
-
Establishment of neural stem cells from fetal monkey brain for neurotoxicity testing (2023)
-
Development of a primate model to evaluate the effects of ketamine and surgical stress on the neonatal brain (2023)
Collaboration Network
Top Collaborators
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Protective Effects of Xenon on Propofol-Induced Neurotoxicity in Human Neural Stem Cell-Derived Models
- Effects of Xenon-Based Anesthetic Exposure on the Expression Levels of Polysialic Acid Neural Cell Adhesion Molecule (PSA-NCAM) on Human Neural Stem Cell–Derived Neurons
Showing 5 of 16 shared publications
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Protective Effects of Xenon on Propofol-Induced Neurotoxicity in Human Neural Stem Cell-Derived Models
- Effects of Xenon-Based Anesthetic Exposure on the Expression Levels of Polysialic Acid Neural Cell Adhesion Molecule (PSA-NCAM) on Human Neural Stem Cell–Derived Neurons
Showing 5 of 13 shared publications
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Protective Effects of Xenon on Propofol-Induced Neurotoxicity in Human Neural Stem Cell-Derived Models
- Effects of Xenon-Based Anesthetic Exposure on the Expression Levels of Polysialic Acid Neural Cell Adhesion Molecule (PSA-NCAM) on Human Neural Stem Cell–Derived Neurons
Showing 5 of 12 shared publications
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Effects of Xenon-Based Anesthetic Exposure on the Expression Levels of Polysialic Acid Neural Cell Adhesion Molecule (PSA-NCAM) on Human Neural Stem Cell–Derived Neurons
- Application of microRNA profiling to understand sevoflurane-induced adverse effects on developing monkey brain
Showing 5 of 12 shared publications
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Protective Effects of Xenon on Propofol-Induced Neurotoxicity in Human Neural Stem Cell-Derived Models
- Effects of Xenon-Based Anesthetic Exposure on the Expression Levels of Polysialic Acid Neural Cell Adhesion Molecule (PSA-NCAM) on Human Neural Stem Cell–Derived Neurons
Showing 5 of 10 shared publications
- Minocycline Modulates Neuroinflammation Independently of Its Antimicrobial Activity in Staphylococcus aureus-Induced Brain Abscess
- Microglia and Astrocyte Activation by Toll‐Like Receptor Ligands: Modulation by PPAR‐γ Agonists
- The Synthetic Peroxisome Proliferator-Activated Receptor-γ Agonist Ciglitazone Attenuates Neuroinflammation and Accelerates Encapsulation in Bacterial Brain Abscesses
- Microglial Activation by Citrobacter koseri Is Mediated by TLR4- and MyD88-Dependent Pathways
- MyD88 Expression by CNS-Resident Cells is Pivotal for Eliciting Protective Immunity in Brain Abscesses
Showing 5 of 6 shared publications
- The effects of cannabidiol and its main metabolites on human neural stem cells
- Development of a primate model to evaluate the effects of ketamine and surgical stress on the neonatal brain
- Establishment of neural stem cells from fetal monkey brain for neurotoxicity testing
- Assessing potential desflurane-induced neurotoxicity using nonhuman primate neural stem cell models
- Assessing the developmental effects of fentanyl and impacts on lipidomic profiling using neural stem cell models
Showing 5 of 6 shared publications
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Neural Cell Adhesion Molecules in Normal and Abnormal Neural Development
- Identifying Potential Biomarkers, Mechanisms and Protective Strategies for General Anesthetic‐Induced Neurotoxicity in the Developing Nonhuman Primate
- Minocycline Modulates Neuroinflammation Independently of Its Antimicrobial Activity in Staphylococcus aureus-Induced Brain Abscess
- Microglia and Astrocyte Activation by Toll‐Like Receptor Ligands: Modulation by PPAR‐γ Agonists
- The Synthetic Peroxisome Proliferator-Activated Receptor-γ Agonist Ciglitazone Attenuates Neuroinflammation and Accelerates Encapsulation in Bacterial Brain Abscesses
- MyD88 Expression by CNS-Resident Cells is Pivotal for Eliciting Protective Immunity in Brain Abscesses
- Minocycline Modulates Neuroinflammation Independently of Its Antimicrobial Activity in Staphylococcus aureus-Induced Brain Abscess
- Microglia and Astrocyte Activation by Toll‐Like Receptor Ligands: Modulation by PPAR‐γ Agonists
- The Synthetic Peroxisome Proliferator-Activated Receptor-γ Agonist Ciglitazone Attenuates Neuroinflammation and Accelerates Encapsulation in Bacterial Brain Abscesses
- MyD88 Expression by CNS-Resident Cells is Pivotal for Eliciting Protective Immunity in Brain Abscesses
- Lipidomics reveals a systemic energy deficient state that precedes neurotoxicity in neonatal monkeys after sevoflurane exposure
- Application of microRNA profiling to understand sevoflurane-induced adverse effects on developing monkey brain
- The effects of cannabidiol and its main metabolites on human neural stem cells
- Identifying Potential Biomarkers, Mechanisms and Protective Strategies for General Anesthetic‐Induced Neurotoxicity in the Developing Nonhuman Primate
- Minocycline Modulates Neuroinflammation Independently of Its Antimicrobial Activity in Staphylococcus aureus-Induced Brain Abscess
- The Synthetic Peroxisome Proliferator-Activated Receptor-γ Agonist Ciglitazone Attenuates Neuroinflammation and Accelerates Encapsulation in Bacterial Brain Abscesses
- MyD88 Expression by CNS-Resident Cells is Pivotal for Eliciting Protective Immunity in Brain Abscesses
- Inhalation anesthetic-induced neuronal damage in the developing rhesus monkey
- Ketamine-Induced Neuronal Damage and Altered N-Methyl-d-Aspartate Receptor Function in Rat Primary Forebrain Culture
- Neural Cell Adhesion Molecules in Normal and Abnormal Neural Development
- Protective Effects of Xenon on Propofol-Induced Neurotoxicity in Human Neural Stem Cell-Derived Models
- Effects of Xenon-Based Anesthetic Exposure on the Expression Levels of Polysialic Acid Neural Cell Adhesion Molecule (PSA-NCAM) on Human Neural Stem Cell–Derived Neurons
- Application of microRNA profiling to understand sevoflurane-induced adverse effects on developing monkey brain
- Development of a primate model to evaluate the effects of ketamine and surgical stress on the neonatal brain
- Establishment of neural stem cells from fetal monkey brain for neurotoxicity testing
- Assessing potential desflurane-induced neurotoxicity using nonhuman primate neural stem cell models
Similar Researchers
Based on overlapping research topics