Jessica Webber
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.
Researcher
Also affiliated: Wayne State University (1987); Royal Glamorgan Hospital (2021); Webber International University (2016); Abbott (United Kingdom) (1987); University of Florida (2023); Abbott (United States) (1986–1988); Chelsea and Westminster Hospital (2002); Cardiff University (2013–2019)
Faculty Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Jessica Webber's research focuses on understanding disease mechanisms, particularly in the context of cancer and infection. Her work has involved investigating the role of scavenger receptors in tumor progression and the associated immune cell responses in mouse models of breast cancer. Webber has also explored the impact of antibiotic resistance development in patients with Gram-negative infections. Her scholarship metrics include an h-index of 13, with 36 total publications and 705 citations. She has collaborated with researchers at the University of Arkansas for Medical Sciences, including Steven R. Post, Thomas J. Kelly, Christy Simecka, and Asangi R. Kumarapeli, on shared publications.
Metrics
- h-index: 13
- Publications: 36
- Citations: 709
Selected Publications
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Class A scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer (2026)
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Macrophage Class A Scavenger Receptors Bind Tumor‐Associated Carbohydrate Antigens and Promote Breast Cancer Growth and Metastases in Mice (2020)
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Sclerostin Antibody Treatment Stimulates Bone Formation to Normalize Bone Mass in Male Down Syndrome Mice (2017)
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CD8+ T cells stimulate Na-Cl co-transporter NCC in distal convoluted tubules leading to salt-sensitive hypertension (2017)
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Abstract 092: Novel Mechanism of Salt-sensitive Hypertension: CD8 <sup>+</sup> T Cells Stimulate Sodium Chloride Co-transporter NCC in Kidney (2016)
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Advanced Small Animal Conformal Radiation Therapy Device (2016)
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A34 Session 10: Adjunctive Therapeutic Approaches (2014)
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Photothermal nanodrugs: potential of TNF-gold nanospheres for cancer theranostics (2013)
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Hyperthermia-enhanced indocyanine green delivery for laser-induced thermal ablation of carcinomas (2013)
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Abstract 4644: A novel strategy for targeted drug delivery to the tumor vasculature by radiation-induced receptor expression on endothelial cells (2012)
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Abstract 1570: Thermal ablation improves oxygenation in remaining viable tumor (2011)
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Tumor-Endothelial Cell Three-dimensional Spheroids: New Aspects to Enhance Radiation and Drug Therapeutics (2011)
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Dual thermal ablation modality of solid tumors in a mouse model (2011)
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Indocyanine green enhanced near infrared laser treatment of SCK tumors in a mouse model pilot study (2011)
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An alternating focused ultrasound system for thermal therapy studies in small animals (2011)
Collaboration Network
Top Collaborators
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
- Class A Scavenger receptors promote tumor progression and induce a unique macrophage phenotype in a mouse model of spontaneous breast cancer
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