20 results on '"Rao, Estella"'
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2. Comparison between iMSD and 2D-pCF analysis for molecular motion studies on in vivo cells: The case of the epidermal growth factor receptor
3. Functional enzymatic assays to predict the potency of extracellular vesicles
4. αS1-Casein-Loaded Proteo-liposomes as Potential Inhibitors in Amyloid Fibrillogenesis: In Vivo Effects on a C. elegans Model of Alzheimer’s Disease
5. Microalgae as a novel biofactory for biocompatible and bioactive extracellular vesicles
6. Microalgae as a novel biofactory for biocompatible and bioactive extracellular vesicles
7. αS1-Casein-Loaded Proteo-liposomes as Potential Inhibitors in Amyloid Fibrillogenesis: In Vivo Effects on a C. elegans Model of Alzheimer's Disease.
8. Extracellular Vesicles From Microalgae: Uptake Studies in Human Cells and Caenorhabditis elegans
9. Isolation of Extracellular Vesicles From Microalgae: A Renewable and Scalable Bioprocess
10. Nanoalgosomes: Introducing extracellular vesicles produced by microalgae
11. Agarose/κ-carrageenan-based hydrogel film enriched with natural plant extracts for the treatment of cutaneous wounds
12. Direct observation of alpha-lactalbumin, adsorption and incorporation into lipid membrane and formation of lipid/protein hybrid structures
13. Water Extract of Cryphaea heteromalla (Hedw.) D. Mohr Bryophyte as a Natural Powerful Source of Biologically Active Compounds
14. Recombinant mussel protein Pvfp-5β: A potential tissue bioadhesive
15. Direct observation of alpha-lactalbumin, adsorption and incorporation into lipid membrane and formation of lipid/protein hybrid structures
16. Comparison between iMSD and 2D-pCF analysis for molecular motion studies on in vivo cells: The case of the epidermal growth factor receptor
17. Stirring effects in amyloid fibril formation
18. EXPLORATION OF MICROALGAE-DERIVED EXTRACELLULAR VESICLES: CELLULAR UPTAKE OF NANOALGOSOMES.
19. Characterization Of Casein-Loaded Proteoliposomes, Potential Inhibitors In Amyloid Fibrillogenesis
20. α S1 -Casein-Loaded Proteo-liposomes as Potential Inhibitors in Amyloid Fibrillogenesis: In Vivo Effects on a C. elegans Model of Alzheimer's Disease.
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