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4. T-cell engager antibodies enable T cells to control HBV infection and to target HBsAg-positive hepatoma in mice

8. Interferon-induced degradation of the persistent hepatitis B virus cccDNA form depends on ISG20

9. Interferon-γ and Tumor Necrosis Factor-α Produced by T Cells Reduce the HBV Persistence Form, cccDNA, Without Cytolysis

10. SUMO Modification of Hepatitis B Virus Core Mediates Nuclear Entry, Promyelocytic Leukemia Nuclear Body Association, and Efficient Formation of Covalently Closed Circular DNA

12. Specific and Nonhepatotoxic Degradation of Nuclear Hepatitis B Virus cccDNA

14. Efficient and reproducible depletion of hepatitis B virus from plasma derived extracellular vesicles

15. Molekulare Mechanismen der Zytokin-induzierten, nicht-zytolytischen Kontrolle der Persistenz des Hepatitis-B-Virus

18. The significance of clinical social work for the integration of the social dimension in the treatment of patients in a psychiatric hospital

19. Molecular Mechanisms of Cytokine-induced, Non-cytolytic Control of Hepatitis B Virus Persistence

20. Molecular Mechanisms of Cytokine-induced, Non-cytolytic Control of Hepatitis B Virus Persistence

22. Interferon-gamma and Tumor Necrosis Factor-alpha Produced by T Cells Reduce the HBV Persistence Form, cccDNA, Without Cytolysis

23. Lack of immunological DNA sensing in hepatocytes facilitates hepatitis B virus infection

28. Interferon-γ and Tumor Necrosis Factor-α Produced by T Cells Reduce the HBV Persistence Form, cccDNA, Without Cytolysis.

29. Structure of LdtMt2, an L,D-transpeptidase from Mycobacterium tuberculosis.

30. Analyses of HBV cccDNA Quantification and Modification.

31. [Specific degradation of nuclear hepatitis B virus covalently closed circular DNA].

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