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1. Liver biopsy derived induced pluripotent stem cells provide unlimited supply for the generation of hepatocyte-like cells.

2. A novel monoclonal anti-CD81 antibody produced by genetic immunization efficiently inhibits Hepatitis C virus cell-cell transmission.

3. Genotype 1 hepatitis C virus envelope features that determine antiviral response assessed through optimal covariance networks.

4. Hepatocellular Carcinoma Xenografts Established From Needle Biopsies Preserve the Characteristics of the Originating Tumors

5. Organoid Models of Human Liver Cancers Derived from Tumor Needle Biopsies

6. Clearance of persistent hepatitis C virus infection using a claudin-1-targeting monoclonal antibody

7. Neutralizing Antibodies and Pathogenesis of Hepatitis C Virus Infection

8. EGFR and EphA2 are host factors for hepatitis C virus entry and possible targets for antiviral therapy

9. Synergy of entry inhibitors with direct-acting antivirals uncovers novel combinations for prevention and treatment of hepatitis C

10. Apolipoprotein E Mediates Evasion From Hepatitis C Virus Neutralizing Antibodies

11. Entry inhibitors and future treatment of hepatitis C

12. Exosome-mediated transmission of hepatitis C virus between human hepatoma Huh7.5 cells

13. Functional analysis of claudin-6 and claudin-9 as entry factors for hepatitis C virus infection of human hepatocytes using monoclonal antibodies

14. Hepatitis C Virus Envelope Glycoprotein Signatures Are Associated With Treatment Failure and Modulation of Viral Entry and Neutralization

15. Hepatitis C virus vaccines--progress and perspectives

16. The postbinding activity of scavenger receptor class B type I mediates initiation of hepatitis C virus infection and viral dissemination

17. Genotype 1 hepatitis C virus envelope features that determine antiviral response assessed through optimal covariance networks

18. Host-targeting agents for prevention and treatment of chronic hepatitis C - perspectives and challenges

19. Hepatitis C virus entry into hepatocytes: molecular mechanisms and targets for antiviral therapies

20. Viral entry and escape from antibody-mediated neutralization influence hepatitis C virus reinfection in liver transplantation

21. Neutralizing antibodies in hepatitis C virus infection

22. P0676 : Clearance of persistent hepatitis c virus infection using a monoclonal antibody specific for tight junction protein claudin-1

23. Hepatitis C Virus Cell-Cell Transmission and Resistance to Direct-Acting Antiviral Agents

24. 113 MONOCLONAL ANTI-CLAUDIN 1 ANTIBODIES FOR PREVENTION OF HEPATITIS C VIRUS RE-INFECTION IN LIVER TRANSPLANTATION

25. 1150 HEPATITIS C VIRUS LIVER TRANSPLANTATION ESCAPE VARIANT IS CHARACTERIZED BY BOTH ENHANCED TRIGLYCERIDE-RICH LIPOPROTEIN ASSOCIATION AND SENSITIVITY TO apoE ANTIBODIES

26. 784 CELL ENTRY FACTOR USAGE AND VIRAL EVASION IN HEPATITIS C VIRUS INFECTION IN VIVO

27. Monoclonal Anti-Claudin 1 Antibodies Prevent Hepatitis C Virus Infection of Primary Human Hepatocytes

28. 145 VIRAL ENTRY AND ESCAPE FROM ANTIBODY-MEDIATED NEUTRALIZATION ARE KEY DETERMINANTS FOR THE SELECTION OF HEPATITIS C VIRUS VARIANTS DURING LIVER TRANSPLANTATION

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