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Portfors, C.

Publications and source records attributed to Portfors, C..

2 recordsLinked to original sources

Viral susceptibility and innate immune competency of Carollia perspicillata bat cells produced for virological studies

Multiple viruses that are highly pathogenic in humans are known to have evolved in bats. How bats tolerate infection with these viruses, however, is poorly understood. As viruses engage in a wide range of interactions with their hosts, it is essential to study bat viruses in a system that resembles their natural environment like bat-derived in vitro cellular models. However, stable and accessible bat cell lines are not widely available for the broader scientific community. Here, we generated in vitro reagents for the Sebas short-tailed bat (Carollia perspicillata), tested multiple methods of immortalization, and characterized their susceptibility to virus infection and response to immune stimulation. Using a pseudotyped virus library and authentic virus infections, we show that these C. perspicillata cell lines derived from a diverse array of tissues are susceptible to viruses bearing the glycoprotein of numerous orthohantaviruses, including Andes and Hantaan virus and are also susceptible to live hantavirus infection. Furthermore, stimulation with synthetic double-stranded RNA prior to infection with VSV and MERS-CoV induced a protective antiviral response, demonstrating the suitability of our cell lines to study the bat antiviral immune response. Taken together, the approaches outlined here will inform future efforts to develop in vitro tools for virology from non-model organisms and these C. perspicillata cell lines will enable studies on virus-host interactions in bats.

microbiology↗

Hearing thresholds in the bat Carollia perspicillata vary by sex but not age

Bats rely heavily on auditory perception for critical behaviors including navigation (echolocation) and conspecific communication. However, there is little information on the impacts of age and sex on the bat auditory system. Here, we used auditory brainstem response recordings to measure auditory thresholds in Carollia perspicillata (Sebas short-tailed bat). We did not detect an age-related threshold shift at the age range examined (1-8 years old), suggesting that bats may be relatively resistant to age-related hearing loss. We had considerably more young bats (aged 1-2 years) than older animals (aged 4-8 years) so our results should be interpreted with caution. However, they are consistent with other studies showing that bats exhibit fewer signs of aging relative to other small mammals. In addition, we show significantly lower auditory thresholds among females compared to age-matched males, similar to sex differences reported in other mammals. Finally, we found increased thresholds in a single non-pigmented bat relative to age- and sex-matched conspecifics. While preliminary, this finding suggests that pigmentation may be important for inner ear function in bats, similar to results from other mammals.

neuroscience↗