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1. HSPA9/Mortalin mediates axo-protection and modulates mitochondrial dynamics in neurons

2. Borna disease virus docks on neuronal DNA double-strand breaks to replicate and dampens neuronal activity

3. Human Cytomegalovirus Infection Changes the Pattern of Surface Markers of Small Extracellular Vesicles Isolated From First Trimester Placental Long-Term Histocultures

4. Borna Disease Virus 1 Phosphoprotein Forms a Tetramer and Interacts with Host Factors Involved in DNA Double-Strand Break Repair and mRNA Processing

5. Effect of tryptase inhibition on joint inflammation: a pharmacological and lentivirus-mediated gene transfer study

6. PPARγ Is Activated during Congenital Cytomegalovirus Infection and Inhibits Neuronogenesis from Human Neural Stem Cells.

7. Borna disease virus phosphoprotein impairs the developmental program controlling neurogenesis and reduces human GABAergic neurogenesis.

8. Neurons are MHC class I-dependent targets for CD8 T cells upon neurotropic viral infection.

9. Mutation of the protein kinase C site in borna disease virus phosphoprotein abrogates viral interference with neuronal signaling and restores normal synaptic activity.

10. Borna disease virus blocks potentiation of presynaptic activity through inhibition of protein kinase C signaling.

11. Human infections by Bornaviruses: are they real?

12. Fatal encephalitis and Borna Disease Virus‐1 seropositivity in two kidney‐transplant patients living in the same non‐endemic area

13. Human cytomegalovirus infection is associated with increased expression of the lissencephaly gene PAFAH1B1 encoding LIS1 in neural stem cells and congenitally infected brains

14. Human cytomegalovirus infection is associated with increased expression of the lissencephaly gene <scp> PAFAH1B1 </scp> encoding <scp>LIS1</scp> in neural stem cells and congenitally infected brains

15. HSPA9/Mortalin Mediates Axo-Protection by Modulating Mitochondrial Dynamics in Neurons

16. Human cytomegalovirus infection changes the pattern of surface markers of small extracellular vesicles isolated from first trimester placental histocultures

17. Bornavirus et cellules cibles : une amitié presque sincère

18. Hippocampal expression of a virus-derived protein impairs memory in mice

19. Self-Aligned Functionalization Approach to Order Neuronal Networks at the Single-Cell Level

20. Integration of FinFETs and 3D nanoprobes devices on a common bio-platform for monitoring electrical activity of single neurons

21. Analysis of Borna Disease Virus Trafficking in Live Infected Cells by Using a Virus Encoding a Tetracysteine-Tagged P Protein

22. Effect of tryptase inhibition on joint inflammation: a pharmacological and lentivirus-mediated gene transfer study

23. Probing electrical activity of single neurons based on ID nanostructures: From extra to intracellular interfacing

24. Manipulation of the N-terminal sequence of the Borna disease virus X protein improves its mitochondrial targeting and neuroprotective potential

25. Nanowire based bioprobes for electrical monitoring of electrogenic cells

26. Neuronal retrograde transport of Borna disease virus occurs in signalling endosomes

27. Zika virus in semen and spermatozoa

28. Functional and Genetic Analysis of Two CD8 T Cell Subsets Defined by the Level of CD45RC Expression in the Rat

29. Borna Disease Virus Glycoprotein Is Required for Viral Dissemination in Neurons

30. Borna Disease Virus Phosphoprotein Modulates Epigenetic Signaling in Neurons To Control Viral Replication

31. 1-β- <scp>d</scp> -Arabinofuranosylcytosine Inhibits Borna Disease Virus Replication and Spread

32. A viral peptide that targets mitochondria protects against neuronal degeneration in models of Parkinson's disease

33. Experimental Infection: Pathogenesis of Neurobehavioral Disease

34. Molecular Mechanism of Tumorigenesis in Mice Transgenic for the Human T Cell Leukemia VirusTaxGene

35. Mechanism of Borna Disease Virus Entry into Cells

36. Infection of choroid plexus cells by human T cell leukaemia virus type I

37. Expression of tissue factor is increased in astrocytes within the central nervous system during persistent infection with borna disease virus

38. Analysis of the expression directed by two HTLV-I promoters in transgenic mice

39. Persistent, non‐cytolytic infection of neurons by Borna disease virus interferes with ERK 1/2 signaling and abrogates BDNF‐induced synaptogenesis

40. Production and purification of non replicative canine adenovirus type 2 derived vectors

41. Neurons as targets for T cells in the nervous system

42. Comparative Analysis of HTLV-I Promoter Activities Reveals No Disease-Linked Pattern of Expression

43. Analysis of proteolipid protein and Po transcripts in mice infected with Theiler's virus

44. Functional analysis of two long terminal repeats from the HTLV-I retrovirus

45. Protein kinase C-dependent phosphorylation of Borna disease virus P protein is required for efficient viral spread

46. In situ analysis of proteolipid protein gene transcripts during persistent Theiler's virus infection

47. Proteomic Analysis Reveals Selective Impediment of Neuronal Remodeling upon Borna Disease Virus Infection▿ †

48. High reproducibility of two-dimensional liquid chromatography using pH-driven fractionation with a pressure-resistant electrode

49. Borna Disease Virus Infection Impairs Synaptic Plasticity▿

50. Tracking antigen-specific CD8+ T cells in the rat using MHC class I multimers

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