Department of Materials Science & Engineering, Stanford University
Affiliated withStanford University
Research Area
Santiago Correa is currently a Ruth L. Kirschstein F32 Postdoctoral Fellow in the Materials Science and Engineering Department at Stanford University, where he works on immunomodulatory biomaterials in the Appel Lab. Santiago is primarily interested in developing nanotechnology for both macro- and nanoscale drug delivery vehicles. Prior to his postdoctoral work, Santiago received his PhD in Biological Engineering from MIT, where he investigated how nanoparticle surface chemistry could be engineered to target ovarian cancer and to fabricate multifunctional nanomaterials in the Hammond Lab. As a graduate student, Santi was supported by several grants and fellowships including a Siebel Scholars Fellowship, a Sloan Scholars Fellowship, MIT's Lemelson Engineering Presidential Fellowship, and a NSF Graduate Research Fellowship. Santiago obtained his BS in Biomedical Engineering from Yale University, where he conducted research on the foreign body response to brain implants in the Kyriakides Lab.
Article Total : 1 | Year |
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![]() Publication title Cited by 21 | 2021 |
Article | Year |
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Theranostic Layer-by-Layer Nanoparticles for Simultaneous Tumor Detection and Gene Silencing. Angewandte Chemie (International ed. in English)| PubMed ID: 31747099 | 2020 |
Binary Targeting of siRNA to Hematologic Cancer Cells using Layer-by-Layer Nanoparticles. Advanced functional materials| PubMed ID: 31839764 | 2019 |
A co-formulation of supramolecularly stabilized insulin and pramlintide enhances mealtime glucagon suppression in diabetic pigs. Nature biomedical engineering| PubMed ID: 32393892 | 2020 |
An ultrafast insulin formulation enabled by high-throughput screening of engineered polymeric excipients. Science translational medicine| PubMed ID: 32611683 | 2020 |
Nanoparticles Presenting Potent TLR7/8 Agonists Enhance Anti-PD-L1 Immunotherapy in Cancer Treatment. Biomacromolecules| PubMed ID: 32816460 | 2020 |
Lipidome-based Targeting of STAT3-driven Breast Cancer Cells Using Poly-L-glutamic acid-coated Layer-by-Layer Nanoparticles. Molecular cancer therapeutics| PubMed ID: 33536189 | 2021 |