Bioprocess Development of a Human Monoclonal Antibody against MERS-CoV: Analytical and Preclinical Studies.

Publication date: Jul 01, 2026

Middle East Respiratory Syndrome coronavirus (MERS-CoV) is a zoonotic virus first identified in 2012, responsible for severe respiratory illness and a high case fatality rate of approximately 35%. MERS-CoV is primarily transmitted from dromedary camels to humans, but human-to-human transmission, particularly in healthcare settings, has led to outbreaks beyond the Middle East, including a major epidemic in South Korea in 2015. Despite its significant public health threat and potential for future outbreaks, no approved vaccines or therapeutic agents are available for MERS-CoV. To address this urgent need, the Korea National Institute of Health (KNIH) developed therapeutic monoclonal antibodies derived from B cells of convalescent MERS patients. Among these, KNIH-88, a non-receptor-binding domain (non-RBD) S1-specific antibody, was selected for preclinical development. In this study, KNIH-88 was produced with high purity under controlled manufacturing conditions and extensively characterized for structural and physicochemical properties, including molecular weight, charge, hydrophobicity, and high molecular weight (HMW) profile. KNIH-88 demonstrated strong binding affinity to MERS-CoV Spike protein and potent neutralizing activity in vitro. To ensure stability and facilitate rapid deployment in outbreak scenarios, a lyophilized formulation of KNIH-88 was developed, maintaining structural integrity and biological activity under long-term storage. Collectively, these findings support KNIH-88 as a promising therapeutic antibody for MERS-CoV, combining potent antiviral efficacy, structural stability, and a formulation suitable for stockpiling and emergency use in endemic regions.

Concepts Keywords
Camels Analytical characterization
Coronavirus Bioprocess development
Healthcare Formulation stability
Hydrophobicity Monoclonal antibody
Seoul Preclinical evaluation

Semantics

Type Source Name
disease MESH Middle East Respiratory Syndrome
disease MESH emergency

Original Article

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