scholarly journals Elimination of hepatitis C virus in patients on the waiting list for liver transplantation

2021 ◽  
Vol 31 (4) ◽  
pp. 29-35
Author(s):  
E.A. Nabatchikova ◽  
T.P. Rozina ◽  
E.N. Nikulkina ◽  
E.L. Tanaschuk ◽  
S.A. Parfenova ◽  
...  

To study the changes in liver function and portal hypertension, and clinical outcomes after elimination of hepatitis C virus (HCV) by direct-acting antiviral agents in patients awaiting an orthotopic liver transplantation (OLT).

2022 ◽  
Vol 8 (1) ◽  
Author(s):  
Ryoga Hamura ◽  
Shinji Onda ◽  
Yoshihiro Shirai ◽  
Jungo Yasuda ◽  
Koichiro Haruki ◽  
...  

Abstract Background The administration of direct-acting antiviral agents in patients with liver cirrhosis and hepatitis C has been shown to improve liver function and long-term prognosis after sustained virological response (SVR) is achieved. However, in patients with portal hypertension (PH) at the time of SVR, PH may persist despite improvement in liver function. Case presentation An 82-year-old woman with liver cirrhosis due to hepatitis C was treated with direct-acting antiviral agents and achieved SVR. During follow-up, computed tomography revealed a low-density tumor in the left lateral region of the liver with dilation of the left intrahepatic bile duct. Considering the patient’s advanced age and PH persistence with a mild decrease in liver reserve function after SVR, preoperative percutaneous transhepatic portal embolization (PTPE) and partial splenic embolization (PSE) were performed concomitantly. Laparoscopic left hemihepatectomy was performed 8 days after the PTPE and PSE. The patient was discharged 8 days after surgery without any postoperative complications. Conclusions Laparoscopic left hemihepatectomy after preoperative management of PH was performed safely in a patient after the elimination of hepatitis C.


2020 ◽  
Vol 43 (8) ◽  
pp. 418-425
Author(s):  
Maria Isabel Guzman Ramos ◽  
Mercedes Manzano-García ◽  
M. de las Aguas Robustillo-Cortés ◽  
Juan Antonio Pineda ◽  
Ramón Morillo-Verdugo

2021 ◽  
Vol 45 (1) ◽  
Author(s):  
Stephen Ejeh ◽  
Adamu Uzairu ◽  
Gideon Adamu Shallangwa ◽  
Stephen E. Abechi

Abstract Background Hepatitis C virus (HCV) is a global medical condition that causes several life-threatening chronic diseases in the liver. The conventional interferon-free treatment regimens are currently in use by a blend of direct-acting antiviral agents (DAAs) aiming at the viral NS3 protease. However, major concerns may be the issue of DAA-resistant HCV strains and the limited availability to the DAAs due to their high price. Due to this crisis, the developments of a new molecule with high potency as an NS3/4A protease inhibitor of the hepatitis-C virus remain a high priority for medical research. This study aimed to use in-silico methods to identify high potent molecule as an NS3/4A protease inhibitor and investigating the binding energy of the identified molecule in comparison with approved direct-acting antiviral agents (Telaprevir, Simeprevir, and Voxilaprevir) through molecular docking. Results The model obtained by in-silico method have the following statistical records, coefficient of determination (r2) of 0.7704, cross-validation (q2LOO = 0.6914); external test set (r2(pred) = 0.7049) and Y-randomization assessment (cR2p = 0.7025). The results from the model were used to identify 12 new potential human HCV NS3/4A protease inhibitors, and it was observed that the identified molecule is well-fixed when docked with the receptor and was found to have the lowest binding energy of − 10.7, compared to approved direct-acting antiviral agents (Telaprevir, Simeprevir, and Voxilaprevir) with − 9.5, − 10.0, − 10.5 binding energy, respectively. Conclusion The binding affinity (− 10.7) of the newly identified molecule docked with 3D structures of HCV NS3/4a protease/helicase (PDB ID: 4A92) was found to be better than that of Telaprevir, Simeprevir, and Voxilaprevir (approved direct-acting antiviral agents) which are − 9.5, − 10.0, and − 10.5, respectively. Hence, a novel molecule was identified showing high potency as HCV NS3/4a protease inhibitors.


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