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2. Insights on the emerging biotechnology of histidine-rich peptides

4. Paradoxical cell targeting of calreticulin-empowered, protein-only nanoparticles.

5. Hybrid Micro-/Nanoprotein Platform Provides Endocrine-like and Extracellular Matrix-like Cell Delivery of Growth Factors.

6. Efficient Delivery of Antimicrobial Peptides in an Innovative, Slow-Release Pharmacological Formulation.

7. High-precision targeting and destruction of cancer-associated PDGFR-β + stromal fibroblasts through self-assembling, protein-only nanoparticles.

8. Endosomal escape for cell-targeted proteins. Going out after going in.

9. The Diphtheria Toxin Translocation Domain Impairs Receptor Selectivity in Cancer Cell-Targeted Protein Nanoparticles.

10. A diphtheria toxin-based nanoparticle achieves specific cytotoxic effect on CXCR4 + lymphoma cells without toxicity in immunocompromised and immunocompetent mice.

11. An In Silico Methodology That Facilitates Decision Making in the Engineering of Nanoscale Protein Materials.

12. The Poly-Histidine Tag H6 Mediates Structural and Functional Properties of Disintegrating, Protein-Releasing Inclusion Bodies.

13. Engineering non-antibody human proteins as efficient scaffolds for selective, receptor-targeted drug delivery.

14. Ion-dependent slow protein release from in vivo disintegrating micro-granules.

15. Biofabrication of functional protein nanoparticles through simple His-tag engineering.

16. Self-Assembled Nanobodies as Selectively Targeted, Nanostructured, and Multivalent Materials.

17. Biparatopic Protein Nanoparticles for the Precision Therapy of CXCR4 + Cancers.

18. Design and engineering of tumor-targeted, dual-acting cytotoxic nanoparticles.

19. A refined cocktailing of pro-apoptotic nanoparticles boosts anti-tumor activity.

20. Engineering Protein Nanoparticles Out from Components of the Human Microbiome.

21. Engineering Secretory Amyloids for Remote and Highly Selective Destruction of Metastatic Foci.

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