Xuehua Li
Post Doctoral Fellow
Also affiliated: North Sichuan Medical University (2025); Nanjing University of Chinese Medicine (2012); Capital Medical University (2021); Southwest Medical University (2025); Affiliated Hospital of Southwest Medical University (2025); Meizhou City People's Hospital (2009); Yunnan Center for Disease Control And Prevention (2012–2023); Chengdu University (2023); Beijing Friendship Hospital (2021)
Orthopaedics Surgery, College of Medicine
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Xuehua Li's research has investigated mechanisms of injury and recovery, particularly in the context of early brain injury following subarachnoid hemorrhage. In this area, Li has studied how low-dose lipopolysaccharide (LPS) may alleviate injury by modulating microglial polarization through specific signaling pathways. Li's work also extends to bone health and mechanobiology, examining treatments to mitigate age- and doxorubicin-induced bone loss in mice. Additionally, Li has explored the properties of composite films derived from *Periplaneta americana* remnants, evaluating their potential for wound healing applications due to antioxidant, antibacterial, and anti-inflammatory characteristics. Other research interests include the role of Piezo1 in mitochondrial function and the protective effects of glycyrrhizic acid against acute lung injury in neonatal rats.
Metrics
- h-index: 9
- Publications: 15
- Citations: 271
Positions
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Post Doctoral Fellow publications 2021–2025University of Arkansas for Medical Sciences Orthopaedics Surgery, College of Medicine Institutional directory
Selected Publications
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Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice (2025)
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Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments (2024)
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Piezo1 stimulates mitochondrial function via cAMP signaling (2022)
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New Advances in Osteocyte Mechanotransduction (2021)
Grants & Funding
As listed on this researcher's institutional profile.
- The role of Piezo 1 in bone homeostasis and mechanotransduction NIH/Nat. Inst. of Arthritis & Musculoskeletal & Skin Diseases Co-Investigator
Collaboration Network
Top Collaborators
- New Advances in Osteocyte Mechanotransduction
- Piezo1 stimulates mitochondrial function via <scp>cAMP</scp> signaling
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- New Advances in Osteocyte Mechanotransduction
- Piezo1 stimulates mitochondrial function via <scp>cAMP</scp> signaling
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Piezo1 stimulates mitochondrial function via <scp>cAMP</scp> signaling
- Piezo1 stimulates mitochondrial function via <scp>cAMP</scp> signaling
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Mitigating aging and doxorubicin induced bone loss in mature mice via mechanobiology based treatments
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
- Different effects of moderate tibial loading and Yoda1 on breast cancer-induced osteolysis in aged mice
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