Jamaican fruit bats are susceptible to henipaviruses but rapidly control infection.

Julianne Bullock Brown Bulloch Arthur Wickenhagen Shane Gallogly Franziska Kaiser Jonathan E Schulz Trenton Bushmaker Reshma Koolaparambil Mukesh Brandi N Williamson Kailin Hawes Anthony McBain Jessica Prado-Smith Chad S Clancy Brian J Smith Julia R Port Emmie de Wit Sarah van Tol

Abstract

Henipaviruses (HNV), Hendra (HeV) and Nipah (NiV) virus, cause severe pulmonary and neurologic disease in humans and other mammals. Bats in the genus Pteropus naturally host HeV and NiV, but their feasibility in experimental studies is limited due to their large size, low fertility rate, and unavailability outside of their native range. Understanding bat-henipavirus interactions that regulate shedding and replication could improve mitigation of spillover events and illuminate the factors that differentiate severe and controlled HNV infection. Here, we assessed the suitability of the Jamaican fruit bat (JFB) ( Artibeus jamaicensis ) to model HNV infection in vitro and in vivo . JFB primary kidney cells were permissive to HNVs, and HeV and NiV antagonized the induction of the innate antiviral response. JFBs were inoculated via the intranasal and oral routes (IN/PO) with HeV or NiV or intravenously (IV) with HeV and monitored for 7 days. Following IN/PO exposure, infection was quenched rapidly and limited HeV RNA was detected in oral swabs and tissues while NiV RNA was found in only one oral swab. HeV IV inoculation resulted in robust, disseminated infection and viral RNA was detected in oral, rectal, and environmental swabs. Overall, these results support that JFBs are susceptible to both viruses, but replication is quenched rapidly in vivo following IN/PO exposure. Future studies will optimize the in vivo model to leverage the JFB to further our understanding of bat-henipavirus interactions. Henipaviruses (HNV) spillover from pteropid bat species and cause severe diseases in humans. Many gaps limit our understanding of HNV-bat interactions that influence spillover and effective control of infection. Here, we evaluate the Jamaican fruit bat (JFB) as a henipavirus model. We demonstrate that JFB cells are permissive all HNVs evaluated, and that JFBs support Hendra virus replication and shedding without signs of clinical disease.

Supporting text Virus Host Location

Evidence records

7 total
Zoonotic Surveillance
3 records · 1 evidence types
Evidence type
3 records
OVE11897
Key finding

HeV RNA was detected in oral, rectal, and environmental swabs from intravenously inoculated Jamaican fruit bats.

Virus
Host
Experimental system
Location
Not specified
Supporting text

JFBs were inoculated via the intranasal and oral routes (IN/PO) with HeV or NiV or intravenously (IV) with HeV and monitored for 7 days. HeV IV inoculation resulted in robust, disseminated infection and viral RNA was detected in oral, rectal, and environmental swabs.

Method
viral RNA detection
Sample type
oral swabs | rectal swabs | environmental swabs
OVE11898
Key finding

After intranasal/oral exposure, limited HeV RNA was detected in Jamaican fruit bat oral swabs and tissues.

Virus
Host
Experimental system
Location
Not specified
Supporting text

JFBs were inoculated via the intranasal and oral routes (IN/PO) with HeV or NiV or intravenously (IV) with HeV and monitored for 7 days. Following IN/PO exposure, infection was quenched rapidly and limited HeV RNA was detected in oral swabs and tissues while NiV RNA was found in only one oral swab.

Method
viral RNA detection
Sample type
oral swabs | tissues
OVE11899
Key finding

After intranasal/oral exposure, NiV RNA was detected in only one Jamaican fruit bat oral swab.

Virus
Host
Experimental system
Location
Not specified
Supporting text

JFBs were inoculated via the intranasal and oral routes (IN/PO) with HeV or NiV or intravenously (IV) with HeV and monitored for 7 days. Following IN/PO exposure, infection was quenched rapidly and limited HeV RNA was detected in oral swabs and tissues while NiV RNA was found in only one oral swab.

Method
viral RNA detection
Sample type
oral swab
Experimental Infection
4 records · 2 evidence types
Evidence type
1 records
OVE11900
Key finding

Jamaican fruit bats supported Hendra virus replication and shedding without clinical disease in a controlled infection model.

Virus
Host
Experimental system
Location
Not specified
Supporting text

We demonstrate that JFB cells are permissive all HNVs evaluated, and that JFBs support Hendra virus replication and shedding without signs of clinical disease.

Method
monitoring for clinical signs | viral RNA detection in swabs and tissues
Experimental system
In vivo Jamaican fruit bat infection model
Evidence type
3 records
OVE11894
Key finding

Jamaican fruit bat primary kidney cells are permissive to henipaviruses, and Hendra and Nipah viruses antagonize innate antiviral induction.

Virus
Host
Experimental system
Location
Not specified
Supporting text

JFB primary kidney cells were permissive to HNVs, and HeV and NiV antagonized the induction of the innate antiviral response.

Method
cell culture infection/permissivity assay | innate antiviral response induction/antagonism assay
Experimental system
primary bat kidney cell culture
OVE11896
Key finding

Intravenous Hendra virus inoculation in Jamaican fruit bats caused robust, disseminated infection with viral RNA detected in oral, rectal, and environmental swabs.

Virus
Host
Experimental system
Location
Not specified
Supporting text

JFBs were inoculated via the intranasal and oral routes (IN/PO) with HeV or NiV or intravenously (IV) with HeV and monitored for 7 days. HeV IV inoculation resulted in robust, disseminated infection and viral RNA was detected in oral, rectal, and environmental swabs.

Method
experimental inoculation (IV) | viral RNA detection (e.g., qRT-PCR)
Sample type
oral swabs | rectal swabs | environmental swabs
Experimental system
in vivo bat challenge (intravenous inoculation)
OVE11895
Key finding

Intranasal/oral exposure of Jamaican fruit bats to Hendra or Nipah virus led to rapidly quenched infection with only limited or rare viral RNA detection.

Virus
Host
Experimental system
Location
Not specified
Supporting text

JFBs were inoculated via the intranasal and oral routes (IN/PO) with HeV or NiV and monitored for 7 days. Following IN/PO exposure, infection was quenched rapidly and limited HeV RNA was detected in oral swabs and tissues while NiV RNA was found in only one oral swab.

Method
experimental inoculation (IN/PO) | viral RNA detection (e.g., qRT-PCR)
Sample type
oral swabs | tissues
Experimental system
in vivo bat challenge (intranasal/oral exposure)