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1. Supermeres are functional extracellular nanoparticles replete with disease biomarkers and therapeutic targets

4. Human Vault Nanoparticle Targeted Delivery of Antiretroviral Drugs to Inhibit Human Immunodeficiency Virus Type 1 Infection

5. Vault Nanoparticles: Chemical Modifications for Imaging and Enhanced Delivery

6. Vault Nanoparticles Packaged with Enzymes as an Efficient Pollutant Biodegradation Technology

9. Polyribosomes Are Molecular 3D Nanoprinters That Orchestrate the Assembly of Vault Particles

10. Bioengineered Vaults: Self-Assembling Protein Shell–Lipophilic Core Nanoparticles for Drug Delivery

11. Development of the Vault Particle as a Platform Technology

12. Smart Vaults: Thermally-Responsive Protein Nanocapsules

13. Targeted Vault Nanoparticles Engineered with an Endosomolytic Peptide Deliver Biomolecules to the Cytoplasm

14. Vaults Are Dynamically Unconstrained Cytoplasmic Nanoparticles Capable of Half Vault Exchange

15. Immobilization of Recombinant Vault Nanoparticles on Solid Substrates

16. Utilization of a Protein “Shuttle” To Load Vault Nanocapsules with Gold Probes and Proteins

17. Vault Nanoparticles Containing an Adenovirus-Derived Membrane Lytic Protein Facilitate Toxin and Gene Transfer

18. Targeting Vault Nanoparticles to Specific Cell Surface Receptors

19. The La RNA-binding protein interacts with the vault RNA and is a vault-associated protein.

20. A very early induction of major vault protein accompanied by increased drug resistance in U-937 cells

21. Assembly of Vault-like Particles in Insect Cells Expressing Only the Major Vault Protein*

22. Up-regulation of vaults may be necessary but not sufficient for multidrug resistance

23. Vaults and Telomerase Share a Common Subunit, TEP1*

24. The sequence of a cDNA encoding the major vault protein from Rattus norvegicus

25. Vaults Are Up-regulated in Multidrug-resistant Cancer Cell Lines*

26. Relationship of LRP-human major vault protein toin vitro and clinical resistance to anticancer drugs

27. Role of axonal components during myelination

28. Role of axonal components during myelination

29. DictyosteliumVaults: Disruption of the Major Proteins Reveals Growth and Morphological Defects and Uncovers a New Associated Protein *

30. Evidence that vault ribonucleoprotein particles localize to the nuclear pore complex

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