Defining the Mechanistic Binding of Viral Particles to a Multi-modal Anion Exchange Resin
BIOTECHNOLOGY PROGRESS
Authors: Brown, Matthew R.; Burnham, Michael S.; Lute, Scott C.; Johnson, Sarah A.; Walsh, Alison A.; Brorson, Kurt A.; Roush, David J.
Abstract
A multi-tiered approach to determine the binding mechanism of viral clearance utilizing a multi-modal anion exchange resin was applied to a panel of four viral species that are typically used in validating viral clearance studies (i.e., X-MuLV, MVM, REO3, and PrV). First, virus spiked buffer-only experiments were conducted to evaluate the virus's affinity for single mode and multi-modal chromatography resins under different buffer conditions in a chromatography column setting. From these results we hypothesize that the mechanisms of binding of the viruses involve binding to both the hydrophobic and anionic functional groups. This mechanistic view agreed with the general surface characteristics of the different virus species in terms of isoelectric point and relative hydrophobicity values. This hypothesized mechanistic binding was then tested with commercially relevant, in-process materials, in which competitive binding occurred between the load components (e.g., viruses, target product, and impurities) and the resin. (C) 2018 American Institute of Chemical Engineers
Natural infection of a variant pseudorabies virus leads to bovine death in China
TRANSBOUNDARY AND EMERGING DISEASES
Authors: Cheng, Zilong; Kong, Zhengjie; Liu, Peng; Fu, Zhendong; Zhang, Jiandong; Liu, Mengda; Shang, Yingli
Abstract
Pseudorabies virus (PRV) infects numerous species of domestic and wild animals leading to severe diseases especially in swine and cattle. Since 2011, the variant PRVs were identified in pigs, which were genetically different from classic strains. Although variant PRV infection is widely observed in pigs, there is still no report of variant PRV infection in cattle. Here, we reported a natural infection of variant PRV leading to acute bovine death in Eastern China. Our study suggests that the new variant PRV strains could be a potential threat to cattle industry and possibly to the public health of human.