50 results on '"Voltà-Durán, Eric"'
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2. Paradoxical cell targeting of calreticulin-empowered, protein-only nanoparticles
3. Lyophilization of biomimetic amyloids preserves their regulatable, endocrine-like functions for nanoparticle release
4. Site-directed cysteine coupling of disulfide-containing non-antibody carrier proteins (THIOCAPs)
5. High-precision targeting and destruction of cancer-associated PDGFR-β+ stromal fibroblasts through self-assembling, protein-only nanoparticles
6. The spectrum of building block conformers sustains the biophysical properties of clinically-oriented self-assembling protein nanoparticles
7. Engineering non-antibody human proteins as efficient scaffolds for selective, receptor-targeted drug delivery
8. A refined cocktailing of pro-apoptotic nanoparticles boosts anti-tumor activity
9. Controlling self-assembling and tumor cell-targeting of protein-only nanoparticles through modular protein engineering
10. Efficient Delivery of Antimicrobial Peptides in an Innovative, Slow-Release Pharmacological Formulation
11. Hybrid Micro-/Nanoprotein Platform Provides Endocrine-like and Extracellular Matrix-like Cell Delivery of Growth Factors
12. Endosomal escape for cell-targeted proteins. Going out after going in
13. Biofabrication of Self-Assembling Covalent Protein Nanoparticles through Histidine-Templated Cysteine Coupling
14. The Diphtheria Toxin Translocation Domain Impairs Receptor Selectivity in Cancer Cell-Targeted Protein Nanoparticles
15. A diphtheria toxin-based nanoparticle achieves specific cytotoxic effect on CXCR4+ lymphoma cells without toxicity in immunocompromised and immunocompetent mice
16. Raw data to support the manuscript 'Engineering non-antibody human proteins as efficient scaffolds for selective, receptor-targeted drug delivery'
17. Raw data from Self-Assembled Nanobodies as Selectively Targeted, Nanostructured and Multivalent Materials
18. Raw data from a MS with the tentative title : Cell penetration of receptor-targeted protein-only nanoparticles assisted by the translocation domain of the diphtheria toxin
19. An In Silico Methodology That Facilitates Decision Making in the Engineering of Nanoscale Protein Materials
20. The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
21. An In Silico Methodology That Facilitates Decision Making in the Engineering of Nanoscale Protein Materials
22. The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies
23. Insights on the emerging biotechnology of histidine-rich peptides
24. Design and engineering of tumor-targeted, dual-acting cytotoxic nanoparticles
25. Cap a la millora de la teràpia dirigida contra el càncer : nanopartícules antitumorals amb doble funcionalitat
26. Biofabrication of functional protein nanoparticles through simple His-tag engineering
27. Self-Assembled Nanobodies as Selectively Targeted, Nanostructured, and Multivalent Materials
28. Biparatopic Protein Nanoparticles for the Precision Therapy of CXCR4+ Cancers
29. Dataset for the following MS with provisional title : Ion-dependent slow protein release from in vivo disintegrating micro-granules
30. Raw data to support the manuscript with the following intended title : The poly-histidine tag H6 mediates structural and functional properties of disintegrating bacterial amyloids
31. Biofabrication of functional protein nanoparticles through simple His-tag engineering
32. Ion-dependent slow protein release from in vivo disintegrating micro-granules
33. In vitro fabrication of microscale secretory granules
34. Self-assembled nanobodies as selectively targeted, nanostructured, and multivalent materials
35. Design and engineering of tumor-targeted, dual-acting cytotoxic nanoparticles
36. In Vitro Fabrication of Microscale Secretory Granules
37. Ion-dependent slow protein release from in vivo disintegrating micro-granules
38. Nanostructure Empowers Active Tumor Targeting in Ligand-Based Molecular Delivery
39. Engineering Protein Nanoparticles Out from Components of the Human Microbiome
40. Engineering Secretory Amyloids for Remote and Highly Selective Destruction of Metastatic Foci
41. Controlling self-assembling and tumor cell-targeting of protein-only nanoparticles through modular protein engineering
42. Engineering Secretory Amyloids for Remote and Highly Selective Destruction of Metastatic Foci.
43. Biparatopic Protein Nanoparticles for the Precision Therapy of CXCR4 + Cancers.
44. Analysis of EPI-X4 binding to CXCR4 : raw data to be linked to a scientific publication
45. Dataset for the following MS with provisional title : Ion-dependent slow protein release from in vivo disintegrating micro-granules
46. Raw data from a MS with the tentative title : $b Cell penetration of receptor-targeted protein-only nanoparticles assisted by the translocation domain of the diphtheria toxin
47. Raw data to support the manuscript with the following intended title : The poly-histidine tag H6 mediates structural and functional properties of disintegrating bacterial amyloidt
48. Protein conformation and formation of protein-only nanoparticles
49. Raw data to support the manuscript "Engineering non-antibody human proteins as efficient scaffolds for selective, receptor-targeted drug delivery"
50. Raw data from Self-Assembled Nanobodies as Selectively Targeted, Nanostructured and Multivalent Materials
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