Biography and Research Information
OverviewAI-generated summary
Laura Osborn's research investigates the impact of early life stress on skeletal health and pain sensitivity in offspring. Her work has explored how maternal stress during lactation can affect bone density in young rats, and how early life stress influences postsurgical pain outcomes. Osborn also studies the effects of stress on the gut microbiome composition and maternal care behaviors in adult offspring, examining their impact on mechanical sensitivity. Additionally, her publications include research on paclitaxel-induced peripheral neuropathy in mice, focusing on myelin degradation as a driver of cold hypersensitivity and exploring the metabolism of synthetic cannabinoids in liver microsomes.
Metrics
- h-index: 2
- Publications: 16
- Citations: 26
Selected Publications
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Degraded myelin is associated with cold hypersensitivity in paclitaxel-induced peripheral neuropathy (2026)
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Impact of Early Life Stress on the Composition of Gut Microbiome (2026)
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A Novel Model of Paclitaxel-Induced Peripheral Neuropathy Produces aClinically Relevant Phenotype in Mice (2026)
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Stress During Lactation: A Hidden Link to Offspring Bone Health (2025)
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Impact of Maternal Care Behaviors on Mechanical Sensitivity of Adult Offspring (2025)
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Effect of Early Life Stress on Skeletal Health (2024)
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Behavioral Effects of Repeated Paclitaxel Cycles on Paclitaxel-Induced Peripheral Neuropathy Resolution (2024)
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The Persistence Of Rodent Mechanical Hypersensitivity Following Chronic Constriction Injury From Chronic Early-Life Stress (2024)
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Similar 5F-APINACA Metabolism between CD-1 Mouse and Human Liver Microsomes Involves Different P450 Cytochromes (2022)
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Methamphetamine‐Induced Proteomic Changes Within the Neuroinflammatory TLR4 Pathway Persist After Long‐Term Self‐Administration in Rats (2022)
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Dual mechanisms suppress meloxicam bioactivation relative to sudoxicam (2020)
Collaboration Network
Top Collaborators
- A novel model of paclitaxel-induced peripheral neuropathy produces a clinically relevant phenotype in mice
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- The Persistence Of Rodent Mechanical Hypersensitivity Following Chronic Constriction Injury From Chronic Early-Life Stress
- Behavioral Effects of Repeated Paclitaxel Cycles on Paclitaxel-Induced Peripheral Neuropathy Resolution
- Effect of Early Life Stress on Skeletal Health
Showing 5 of 7 shared publications
- A novel model of paclitaxel-induced peripheral neuropathy produces a clinically relevant phenotype in mice
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- The Persistence Of Rodent Mechanical Hypersensitivity Following Chronic Constriction Injury From Chronic Early-Life Stress
- Behavioral Effects of Repeated Paclitaxel Cycles on Paclitaxel-Induced Peripheral Neuropathy Resolution
- Effect of Early Life Stress on Skeletal Health
Showing 5 of 7 shared publications
- A novel model of paclitaxel-induced peripheral neuropathy produces a clinically relevant phenotype in mice
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- The Persistence Of Rodent Mechanical Hypersensitivity Following Chronic Constriction Injury From Chronic Early-Life Stress
- Effect of Early Life Stress on Skeletal Health
- Impact of Maternal Care Behaviors on Mechanical Sensitivity of Adult Offspring
Showing 5 of 6 shared publications
- A novel model of paclitaxel-induced peripheral neuropathy produces a clinically relevant phenotype in mice
- Impact of Maternal Care Behaviors on Mechanical Sensitivity of Adult Offspring
- Degraded myelin is associated with cold hypersensitivity in paclitaxel-induced peripheral neuropathy
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- Effect of Early Life Stress on Skeletal Health
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- Effect of Early Life Stress on Skeletal Health
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- Effect of Early Life Stress on Skeletal Health
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- Effect of Early Life Stress on Skeletal Health
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- Effect of Early Life Stress on Skeletal Health
- Stress During Lactation: A Hidden Link to Offspring Bone Health
- Effect of Early Life Stress on Skeletal Health
- Methamphetamine‐Induced Proteomic Changes Within the Neuroinflammatory TLR4 Pathway Persist After Long‐Term Self‐Administration in Rats
- Methamphetamine‐Induced Proteomic Changes Within the Neuroinflammatory TLR4 Pathway Persist After Long‐Term Self‐Administration in Rats
- Methamphetamine‐Induced Proteomic Changes Within the Neuroinflammatory TLR4 Pathway Persist After Long‐Term Self‐Administration in Rats
- Methamphetamine‐Induced Proteomic Changes Within the Neuroinflammatory TLR4 Pathway Persist After Long‐Term Self‐Administration in Rats
- Methamphetamine‐Induced Proteomic Changes Within the Neuroinflammatory TLR4 Pathway Persist After Long‐Term Self‐Administration in Rats
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