Monoclonal antibodies: Principles and applications of immmunodiagnosis and immunotherapy for hepatitis C virus
WORLD JOURNAL OF HEPATOLOGY
Authors: Tabll, Ashraf; Abbas, Aymn T.; El-Kafrawy, Sherif; Wahid, Ahmed
Abstract
Hepatitis C virus (HCV) is a major health problem worldwide. Early detection of the infection will help better management of the infected cases. The monoclonal antibodies (mAb) of mice are predominantly used for the immunodiagnosis of several viral, bacterial, and parasitic antigens. Serological detection of HCV antigens and antibodies provide simple and rapid methods of detection but lack sensitivity specially in the window phase between the infection and antibody development. Human mAb are used in the immunotherapy of several blood malignancies, such as lymphoma and leukemia, as well as for autoimmune diseases. In this review article, we will discuss methods of mouse and human monoclonal antibody production. We will demonstrate the role of mouse mAb in the detection of HCV antigens as rapid and sensitive immunodiagnostic assays for the detection of HCV, which is a major health problem throughout the world, particularly in Egypt. We will discuss the value of HCV-neutralizing antibodies and their roles in the immunotherapy of HCV infections and in HCV vaccine development. We will also discuss the different mechanisms by which the virus escape the effect of neutralizing mAb. Finally, we will discuss available and new trends to produce antibodies, such as egg yolk-based antibodies (IgY), production in transgenic plants, and the synthetic antibody mimics approach.
Utilization of increased risk for transmission of infectious disease donor organs in solid organ transplantation: Retrospective analysis of disease transmission and safety
TRANSPLANT INFECTIOUS DISEASE
Authors: Irwin, Linda; Kotton, Camille N.; Elias, Nahel; Palafox, Julie; Basler, Debra; Shao, Sarah H.; Lester, William; Zhang, Xiaofeng; Kimball, Brendan; Trencher, Carrie; Fishman, Jay A.
Abstract
The inadequate supply of transplantable organs necessitates new approaches to organ availability. Serologies and nucleic acid testing (NAT) for hepatitis C virus (HCV), hepatitis B virus (HBV), and human immunodeficiency virus (HIV) are used in microbiologic screening of potential organ donors. Organs from donors considered at high risk (Centers for Disease Control and Prevention, CDC 1994) or increased risk (U.S. Public Health Service, PHS 2013) for transmission of viral infection to recipients may provide an expanded source of organs for transplantation. We review a single-center experience with 257 adult organ recipients of organs from donors meeting either CDC 1994 or PHS 2013 risk criteria between 2011 and 2016. Tracking these transplants required modification of the Transplant Center electronic database to identify all recipients of increased-risk donor (IRD) organs, documentation of informed consent, and microbiologic testing data. No transmissions of HIV, HBV, or HCV were identified by NAT or clinically. Nine patients developed positive serologic assays for one of the tested viruses; all recipients were retested and remain negative by NAT. Notably, post-transplant HBV core serologies reverted to negative on re-testing; these positive serologies are likely false positives caused by receipt of blood products. Use of IRD organs can be performed safely with appropriate informed consent and rigorous pre- and post-transplant microbiological testing.