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Biology subjects

Hoehl, R. M.

Publications and source records attributed to Hoehl, R. M..

3 recordsLinked to original sources

Oropouche virus infects human placenta explants and trophoblast organoids

Clinical and epidemiologic evidence from the recent outbreak of Oropouche virus (OROV) has demonstrated increased severity in clinical disease and adverse pregnancy outcomes including miscarriage, stillbirth, and neonatal demise. Serological evidence suggests vertical transmission of OROV may be responsible. OROV has not been studied in the context of pregnancy and has unknown ability to infect the relevant tissues of the maternal-fetal interface, which have anti-viral properties; therefore, the mechanisms of vertical transmission are unknown. We used polarized human trophoblast stem cell organoids and human placenta explants to demonstrate that OROV (BeAn19991) infects and replicates in human tissues of the maternal-fetal interface including chorionic villi and the microbial-resistant cell, syncytiotrophoblast. Viral replication is robust within the first 24 hours post infection, and tissues from earlier gestations may be more susceptible to infection. These data indicate tissues at the maternal-fetal interface are susceptible to OROV infection and may facilitate vertical transmission, leading to adverse pregnancy outcomes.

microbiology↗

Vaccine strains of Rift Valley fever virus exhibit attenuation at the maternal-fetal placental interface

Rift Valley fever virus (RVFV) infection causes abortions in ruminant livestock and is associated with an increased likelihood of miscarriages in women. Using sheep and human placenta explant cultures, we sought to identify tissues at the maternal-fetal interface targeted by RVFV. Sheep villi and fetal membranes were highly permissive to RVFV infection resulting in markedly higher virus titers than human cultures. Sheep cultures were most permissive to wild-type RVFV and {Delta}NSm infection, while live attenuated RVFV vaccines (LAVs; MP-12, {Delta}NSs, and {Delta}NSs/{Delta}NSm) exhibited reduced replication. The human fetal membrane restricted wild-type and LAV replication, and when infection occurred, it was prominent in the maternal-facing side. Type-I and type-III interferons were induced in human villi exposed to LAVs lacking the NSs protein. This study supports the use of sheep and human placenta explants to understand vertical transmission of RVFV in mammals and whether LAVs are attenuated at the maternal-fetal interface. TeaserVaccine strains of Rift Valley fever virus have reduced infection and replication capacity in mammalian placenta

microbiology↗

Congenital Rift Valley fever in Sprague Dawley rats is associated with diffuse infection and pathology of the placenta

Rift Valley fever (RVF) is a disease of animals and humans associated with abortions in ruminants and, more recently, late-gestation miscarriages in African women. Here, we use a rat model of congenital RVF to identify cellular tropism, pathology, and local immune responses occurring in the placenta during vertical transmission. Infection of pregnant rats during late gestation (embryonic day 14) resulted in vertical transmission to the placenta and widespread viral infection throughout the decidua, basal zone, and labyrinth zone. Some pups delivered from infected dams appeared normal while others had gross signs of teratogenicity including fetal death. Histopathological lesions were detected in placenta from pups regardless of teratogenicity, while teratogenic pups had more widespread hemorrhage throughout multiple placenta layers. Teratogenic events were also associated with significant increases in pro-inflammatory cytokines, type I interferons, and chemokines within the placental tissue. Thus, we found that RVFV displays a high degree of tropism for all placental tissue layers, and that the degree of hemorrhage and inflammatory mediator production is highest in placenta from pups with adverse outcomes. This is the first detailed pathological study of the mechanisms of RVFV infection of placental tissue in a tractable rodent model of congenital RVF disease.

microbiology↗