Emily S. Day
#168,057
Most Influential Person Now
American biomedical engineer
Emily S. Day's AcademicInfluence.com Rankings
Emily S. Dayengineering Degrees
Engineering
#7913
World Rank
#9361
Historical Rank
Biomedical Engineering
#847
World Rank
#860
Historical Rank
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Engineering
Emily S. Day's Degrees
- Bachelors Biomedical Engineering University of California, Berkeley
Why Is Emily S. Day Influential?
(Suggest an Edit or Addition)According to Wikipedia, Emily S. Day is an American biomedical engineer. She is an associate professor at the University of Delaware where her research team engineers nanoparticles to enable high precision therapy of diseases including cancers, blood disorders, and maternal/fetal health complications.
Emily S. Day's Published Works
Published Works
- A new era for cancer treatment: gold-nanoparticle-mediated thermal therapies. (2011) (801)
- Gold nanoparticle-mediated photothermal therapy: applications and opportunities for multimodal cancer treatment. (2017) (455)
- Spherical Nucleic Acid Nanoparticle Conjugates as an RNAi-Based Therapy for Glioblastoma (2013) (448)
- Elucidating the fundamental mechanisms of cell death triggered by photothermal therapy. (2015) (408)
- Immunonanoshells for targeted photothermal ablation of tumor cells (2006) (283)
- Nanoparticles for thermal cancer therapy. (2009) (234)
- miR-182 integrates apoptosis, growth, and differentiation programs in glioblastoma (2015) (186)
- Nanoshell-mediated photothermal therapy improves survival in a murine glioma model (2011) (137)
- Antibody-conjugated gold-gold sulfide nanoparticles as multifunctional agents for imaging and therapy of breast cancer (2010) (118)
- The stabilization and targeting of surfactant-synthesized gold nanorods (2009) (94)
- Cancer Cell Membrane-Coated Nanoparticles for Cancer Management (2019) (88)
- Nanoshells for photothermal cancer therapy. (2010) (81)
- Vascular-targeted photothermal therapy of an orthotopic murine glioma model. (2012) (70)
- Spherical Nucleic Acid Nanoparticles: Therapeutic Potential (2018) (61)
- Nanoshell-mediated photothermal therapy can enhance chemotherapy in inflammatory breast cancer cells (2015) (56)
- Frizzled7 Antibody-Functionalized Nanoshells Enable Multivalent Binding for Wnt Signaling Inhibition in Triple Negative Breast Cancer Cells. (2017) (49)
- Using Gold Nanoparticles To Disrupt the Tumor Microenvironment: An Emerging Therapeutic Strategy. (2016) (48)
- Advances in targeted nanotherapeutics: From bioconjugation to biomimicry (2018) (47)
- Antibody-nanoparticle conjugates to enhance the sensitivity of ELISA-based detection methods (2017) (41)
- Evaluating the Mechanisms of Light-Triggered siRNA Release from Nanoshells for Temporal Control Over Gene Regulation. (2018) (41)
- Investigating the role of Hedgehog/GLI1 signaling in glioblastoma cell response to temozolomide (2018) (39)
- Spherical Nucleic Acid Architecture Can Improve the Efficacy of Polycation-Mediated siRNA Delivery (2018) (31)
- Nanoparticle-Mediated Co-Delivery of Notch-1 Antibodies and ABT-737 as a Potent Treatment Strategy for Triple-Negative Breast Cancer. (2020) (29)
- IR820-loaded PLGA nanoparticles for photothermal therapy of triple-negative breast cancer. (2019) (27)
- Gold Nanoshell-Linear Tetrapyrrole Conjugates for Near Infrared-Activated Dual Photodynamic and Photothermal Therapies (2019) (27)
- Evaluating Nanoshells and a Potent Biladiene Photosensitizer for Dual Photothermal and Photodynamic Therapy of Triple Negative Breast Cancer Cells (2018) (24)
- Layer-by-layer assembled PLGA nanoparticles carrying miR-34a cargo inhibit the proliferation and cell cycle progression of triple-negative breast cancer cells. (2019) (24)
- Layer-by-Layer Assembled Gold Nanoshells for the Intracellular Delivery of miR-34a (2018) (24)
- Dual Regulation of miR-34a and Notch Signaling in Triple-Negative Breast Cancer by Antibody/miRNA Nanocarriers (2020) (23)
- Polyethylenimine-Spherical Nucleic Acid Nanoparticles against Gli1 Reduce the Chemoresistance and Stemness of Glioblastoma Cells. (2018) (23)
- Photochemotherapeutic Properties of a Linear Tetrapyrrole Palladium(II) Complex displaying an Exceptionally High Phototoxicity Index. (2018) (20)
- Polymer nanocarriers for MicroRNA delivery. (2020) (19)
- Quantification of siRNA Duplexes Bound to Gold Nanoparticle Surfaces. (2017) (17)
- Photoresponsive miR-34a/Nanoshell Conjugates Enable Light-Triggered Gene Regulation to Impair the Function of Triple-Negative Breast Cancer Cells. (2020) (16)
- Design of nanomaterials for applications in maternal/fetal medicine. (2020) (14)
- Nanoparticles for Manipulation of the Developmental Wnt, Hedgehog, and Notch Signaling Pathways in Cancer (2019) (12)
- Inhibition of Wnt signaling by Frizzled7 antibody-coated nanoshells sensitizes triple-negative breast cancer cells to the autophagy regulator chloroquine (2020) (9)
- Best Practices for Preclinical In Vivo Testing of Cancer Nanomedicines (2020) (9)
- Diseases and conditions that impact maternal and fetal health and the potential for nanomedicine therapies. (2020) (8)
- Gold nanoparticle biodistribution in pregnant mice following intravenous administration varies with gestational age. (2021) (6)
- Membrane-wrapped nanoparticles for nucleic acid delivery. (2022) (4)
- Membrane-wrapped nanoparticles for photothermal cancer therapy (2022) (4)
- Enzyme-Linked Immunosorbent Assay to Quantify Targeting Molecules on Nanoparticles. (2018) (4)
- Nanoparticle-Mediated Gene Regulation as a Novel Strategy for Cancer Therapy (2017) (3)
- Jensen Therapy for Glioblastoma Spherical Nucleic Acid Nanoparticle Conjugates as an RNAi-Based (2013) (3)
- Biomimetic Nanoparticles for the Treatment of Hematologic Malignancies (2021) (3)
- Antibody Nanocarriers for Cancer Management. (2021) (2)
- Critical Evaluation of Different Lysosomal Labeling Methods Used to Analyze RNA Nanocarrier Trafficking in Cells. (2021) (2)
- Double-Edged Scissor': Legal Protection for Fashion Design (2007) (1)
- Isocorrole-Loaded Polymer Nanoparticles for Photothermal Therapy under 980 nm Light Excitation (2022) (1)
- Cancer Imaging and Thermal Therapy Facilitated by Nanoparticles and Multiphoton Microscopy (2010) (0)
- Molecularly-Targeted Gold-Based Nanoparticles for Cancer Imaging and Near-Infrared Photothermal Therapy (2011) (0)
- Introduction to Editorial Board Member: Professor Jennifer L. West (2021) (0)
- Biomedical Applications of Multi-Functional Silica-Based Gold Nanoshells (2011) (0)
- Layer-by-Layer Assembled Gold Nanoshells for the Intracellular Delivery of miR-34a (2018) (0)
- Spherical Nucleic Acid Nanoparticles: Therapeutic Potential (2018) (0)
- Soil Property Effects on Willamette Daisy (Erigeron decumbens) within William L. Finley National Wildlife Refuge (2015) (0)
- E-Selectin Targeted Gold Nanoshells to Inhibit Breast Cancer Cell Binding to Lung Endothelial Cells (2023) (0)
- Spectroscopic Near-Field Imaging of Flat Gold Nanoparticles (2006) (0)
- Megakaryocyte membrane‐wrapped nanoparticles for targeted cargo delivery to hematopoietic stem and progenitor cells (2022) (0)
- Preparation and Characterization of Optically-Resonant Atomically Flat Nanosurface Substrates for High-Resolution Scanning Probe Microscopy of Single Molecules (2006) (0)
- Abstract 5523: Gold nanoshells in the treatment of high-grade gliomas in a mouse model (2010) (0)
- Erratum to: Biomedical Nanotechnology (2017) (0)
- Single-Molecule STM Studies on Atomically-Flat Nanoparticles (2006) (0)
- Membrane-Wrapped Nanoparticles for Enhanced Chemotherapy of Acute Myeloid Leukemia. (2022) (0)
- Photothermal Therapy of Glioma in a Mouse Model With Near-Infrared Excited Nanoshells (2010) (0)
- Chapter 7 Nanoshells for Photothermal Cancer Therapy (2010) (0)
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What Schools Are Affiliated With Emily S. Day?
Emily S. Day is affiliated with the following schools: