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1. Recent Advances on Surface-Modified GBM Targeted Nanoparticles: Targeting Strategies and Surface Characterization.

2. Melatonin loaded hybrid nanomedicine: DoE approach, optimization and in vitro study on diabetic retinopathy model.

3. Insights into kinetics, release, and behavioral effects of brain-targeted hybrid nanoparticles for cholesterol delivery in Huntington's disease.

4. Enzyme Stability in Nanoparticle Preparations Part 1: Bovine Serum Albumin Improves Enzyme Function.

5. In vitro treatment of congenital disorder of glycosylation type Ia using PLGA nanoparticles loaded with GDP‑Man.

6. Targeting Brain Disease in MPSII: Preclinical Evaluation of IDS-Loaded PLGA Nanoparticles.

7. Reduced plaque size and inflammation in the APP23 mouse model for Alzheimer's disease after chronic application of polymeric nanoparticles for CNS targeted zinc delivery.

8. Hybrid nanoparticles as a new technological approach to enhance the delivery of cholesterol into the brain.

9. Qualitative and semiquantitative analysis of the protein coronas associated to different functionalized nanoparticles.

10. Protein corona and nanoparticles: how can we investigate on?

11. Targeted Polymeric Nanoparticles for Brain Delivery of High Molecular Weight Molecules in Lysosomal Storage Disorders.

12. Nanoparticle transport across the blood brain barrier.

13. Cholesterol-loaded nanoparticles ameliorate synaptic and cognitive function in Huntington's disease mice.

14. PLGA Nanoparticles Loaded Cerebrolysin: Studies on Their Preparation and Investigation of the Effect of Storage and Serum Stability with Reference to Traumatic Brain Injury.

15. Use of Polylactide-Co-Glycolide-Nanoparticles for Lysosomal Delivery of a Therapeutic Enzyme in Glycogenosis Type II Fibroblasts.

16. Application of Polymeric Nanoparticles for CNS Targeted Zinc Delivery In Vivo.

17. PEG-g-chitosan nanoparticles functionalized with the monoclonal antibody OX26 for brain drug targeting.

18. Characterization of lysosome-destabilizing DOPE/PLGA nanoparticles designed for cytoplasmic drug release.

19. Detection of PLGA-based nanoparticles at a single-cell level by synchrotron radiation FTIR spectromicroscopy and correlation with X-ray fluorescence microscopy.

20. Insight on the fate of CNS-targeted nanoparticles. Part II: Intercellular neuronal cell-to-cell transport.

21. Insight on the fate of CNS-targeted nanoparticles. Part I: Rab5-dependent cell-specific uptake and distribution.

22. Brain-targeted polymeric nanoparticles: in vivo evidence of different routes of administration in rodents.

24. Can leptin-derived sequence-modified nanoparticles be suitable tools for brain delivery?

25. The role of protamine amount in the transfection performance of cationic SLN designed as a gene nanocarrier.

26. Sialic acid as a potential approach for the protection and targeting of nanocarriers.

27. Investigation on mechanisms of glycopeptide nanoparticles for drug delivery across the blood-brain barrier.

28. Development of novel Zn2+ loaded nanoparticles designed for cell-type targeted drug release in CNS neurons: in vitro evidences.

29. Nuclear localization of cationic solid lipid nanoparticles containing Protamine as transfection promoter.

30. pDNA condensation capacity and in vitro gene delivery properties of cationic solid lipid nanoparticles.

31. Chapter 3 - Colloidal systems for CNS drug delivery.

32. Polymeric nanoparticles for the drug delivery to the central nervous system.

33. Re-dispersible cationic solid lipid nanoparticles (SLNs) freeze-dried without cryoprotectors: characterization and ability to bind the pEGFP-plasmid.

34. Nanoparticles as Blood–Brain Barrier Permeable CNS Targeted Drug Delivery Systems

35. Optimization of an Injectable Hydrogel Depot System for the Controlled Release of Retinal-Targeted Hybrid Nanoparticles.

36. Glioblastoma Multiforme Selective Nanomedicines for Improved Anti-Cancer Treatments.

37. Novel Curcumin loaded nanoparticles engineered for Blood-Brain Barrier crossing and able to disrupt Abeta aggregates

41. Immunonanosystems to CNS Pathologies

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