Publicaciones (31) Publicaciones de MARCELO CALDERON

2024

  1. Bringing innovative wound care polymer materials to the market: Challenges, developments, and new trends

    Advanced Drug Delivery Reviews, Vol. 207

  2. Core-Shell Nanogels With Raspberry Architecture and Amine Loading in the Core via Precipitation Polymerization: A Mechanistic Study

    Macromolecules, Vol. 57, Núm. 13, pp. 6035-6048

  3. Elastomeric Protein Bioactive Eutectogels for Topical Drug Delivery

    Advanced Functional Materials, Vol. 34, Núm. 18

  4. Eutectogels as Promising Materials in Biocatalysis

    ChemCatChem, Vol. 16, Núm. 12

  5. Freezing-Tolerant Supramolecular Adhesives from Tannic Acid-Based Low-Transition-Temperature Mixtures

    ACS Materials Letters, Vol. 6, Núm. 8, pp. 3726-3735

  6. Hybrid Nanogel-Wrapped Anisotropic Gold Nanoparticles Feature Enhanced Photothermal Stability

    Small

  7. Leveraging novel innovative thermoresponsive polymers in microneedles for targeted intradermal deposition

    International Journal of Pharmaceutics, Vol. 652

  8. Modulating the Mucosal Drug Delivery Efficiency of Polymeric Nanogels Tuning their Redox Response and Surface Charge

    Advanced Functional Materials

  9. Multiresponsive Nanogels for the Selective Delivery of Antimicrobial Drugs to Mucosal Tissues

    Biomacromolecules, Vol. 25, Núm. 9, pp. 5968-5978

  10. Nanogels: Smart tools to enlarge the therapeutic window of gene therapy

    International Journal of Pharmaceutics, Vol. 653

  11. On the Progress of 3D Printed Hydrogels Through Fourier Transform Rheology

    Springer Proceedings in Materials (Springer), pp. 61-64

  12. Polyglycerol-Functionalized β-Cyclodextrins as Crosslinkers in Thermoresponsive Nanogels for the Enhanced Dermal Penetration of Hydrophobic Drugs

    Small, Vol. 20, Núm. 32

  13. Polypeptide-based multilayer nanoarchitectures: Controlled assembly on planar and colloidal substrates for biomedical applications

    Advances in Colloid and Interface Science, Vol. 331

  14. Unveiling the Potential of Surface Polymerized Drug Nanocrystals in Targeted Delivery

    ACS Applied Materials and Interfaces, Vol. 16, Núm. 36, pp. 47124-47136