Lance C. Bridges
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Also affiliated: East Carolina University (2011–2017); University of Virginia Health System (2005–2011); Oklahoma Medical Research Foundation (2003); University of Oklahoma Health Sciences Center (1999–2005); University of Virginia (2005–2011)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Lance C. Bridges studies the interactions between ADAM proteins and integrins, focusing on their roles in cell adhesion and migration. His research has investigated how specific ADAM family members selectively modulate integrin-mediated cell migration. Bridges has also explored the function of MDC-L (ADAM 28), a metalloprotease disintegrin expressed by human lymphocytes, as a ligand for the integrin α4β1. His work has examined the molecular mechanisms underlying these interactions, including the requirement for an extended surface of the disintegrin domain for integrin α4β1 adhesion to ADAM 28. Further research has explored ADAM13's role in cranial neural crest development through the cleavage of Class B Ephrins and its regulation of Wnt signaling. Bridges' scholarship metrics include an h-index of 14, with 29 total publications and 825 total citations.
Metrics
- h-index: 14
- Publications: 29
- Citations: 830
Selected Publications
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77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma (2026)
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Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma (2020)
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Xenopus ADAM19 regulates Wnt signaling and neural crest specification by stabilizing ADAM13 (2018)
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Multiple non-catalytic ADAMs are novel integrin α4 ligands (2017)
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Kinetic and Thermodynamic Analysis of Acetyl-CoA Activation ofStaphylococcus aureusPyruvate Carboxylase (2017)
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RAR α/ RXR synergism potentiates retinoid responsiveness in cutaneous T‐cell lymphoma cell lines (2017)
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Conservation and divergence of ADAM family proteins in the Xenopus genome (2010)
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All-trans-Retinoic Acid Induces Integrin-Independent B-Cell Adhesion to ADAM Disintegrin Domains (2008)
Collaboration Network
Top Collaborators
- Xenopus ADAM19 regulates Wnt signaling and neural crest specification by stabilizing ADAM13
- Conservation and divergence of ADAM family proteins in the Xenopus genome
- Multiple non-catalytic ADAMs are novel integrin α4 ligands
- RAR α/ RXR synergism potentiates retinoid responsiveness in cutaneous T‐cell lymphoma cell lines
- Kinetic and Thermodynamic Analysis of Acetyl-CoA Activation ofStaphylococcus aureusPyruvate Carboxylase
- RAR α/ RXR synergism potentiates retinoid responsiveness in cutaneous T‐cell lymphoma cell lines
- Kinetic and Thermodynamic Analysis of Acetyl-CoA Activation ofStaphylococcus aureusPyruvate Carboxylase
- Multiple non-catalytic ADAMs are novel integrin α4 ligands
- Multiple non-catalytic ADAMs are novel integrin α4 ligands
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- All-trans-Retinoic Acid Induces Integrin-Independent B-Cell Adhesion to ADAM Disintegrin Domains
- All-trans-Retinoic Acid Induces Integrin-Independent B-Cell Adhesion to ADAM Disintegrin Domains
- All-trans-Retinoic Acid Induces Integrin-Independent B-Cell Adhesion to ADAM Disintegrin Domains
- Conservation and divergence of ADAM family proteins in the Xenopus genome
- Conservation and divergence of ADAM family proteins in the Xenopus genome
- Conservation and divergence of ADAM family proteins in the Xenopus genome
- Conservation and divergence of ADAM family proteins in the Xenopus genome
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