Transmission and adaptation of chronic wasting disease to hamsters and transgenic mice: evidence for strains

GJ Raymond, LD Raymond, KD Meade-White… - Journal of …, 2007 - Am Soc Microbiol
GJ Raymond, LD Raymond, KD Meade-White, AG Hughson, C Favara, D Gardner…
Journal of virology, 2007Am Soc Microbiol
In vitro screening using the cell-free prion protein conversion system indicated that certain
rodents may be susceptible to chronic wasting disease (CWD). Therefore, CWD isolates
from mule deer, white-tailed deer, and elk were inoculated intracerebrally into various rodent
species to assess the rodents' susceptibility and to develop new rodent models of CWD. The
species inoculated were Syrian golden, Djungarian, Chinese, Siberian, and Armenian
hamsters, transgenic mice expressing the Syrian golden hamster prion protein, and RML …
Abstract
In vitro screening using the cell-free prion protein conversion system indicated that certain rodents may be susceptible to chronic wasting disease (CWD). Therefore, CWD isolates from mule deer, white-tailed deer, and elk were inoculated intracerebrally into various rodent species to assess the rodents' susceptibility and to develop new rodent models of CWD. The species inoculated were Syrian golden, Djungarian, Chinese, Siberian, and Armenian hamsters, transgenic mice expressing the Syrian golden hamster prion protein, and RML Swiss and C57BL10 wild-type mice. The transgenic mice and the Syrian golden, Chinese, Siberian, and Armenian hamsters had limited susceptibility to certain of the CWD inocula, as evidenced by incomplete attack rates and long incubation periods. For serial passages of CWD isolates in Syrian golden hamsters, incubation periods rapidly stabilized, with isolates having either short (85 to 89 days) or long (408 to 544 days) mean incubation periods and distinct neuropathological patterns. In contrast, wild-type mouse strains and Djungarian hamsters were not susceptible to CWD. These results show that CWD can be transmitted and adapted to some species of rodents and suggest that the cervid-derived CWD inocula may have contained or diverged into at least two distinct transmissible spongiform encephalopathy strains.
American Society for Microbiology