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Menna, V.

Publications and source records attributed to Menna, V..

2 recordsLinked to original sources

Prenatal Zika Virus Exposure Disrupts Social-Emotional Development and Cortical Visual Function in Infant Macaques

Prenatal exposure to Zika virus (ZIKV) results in a spectrum of outcomes, ranging from severe birth defects and early childhood developmental delays to no apparent deficits. However, the mechanisms underlying these outcomes, particularly in the context of different maternal infection conditions, remain poorly defined. In this study, we employed a translational rhesus macaque model of prenatal ZIKV infection to evaluate longitudinal visual and auditory development from 1 to 12 months of age and characterize neurodevelopmental outcomes at 12 months. Pregnant macaques, either flavivirus-naive or with prior dengue virus (DENV) exposure, were inoculated in the first trimester ([~]30 or 45 gestational days) with an Asian or African lineage of ZIKV or received a saline injection as controls. Maternal plasma viremia duration, viral RNA burden at the maternal-fetal interface, and neutralizing antibody titers did not differ between inoculation cohorts or controls. At 12 months, ZIKV-exposed infants demonstrated altered maternal attachment behaviors and reduced inhibition when approaching sensory stimuli compared to controls. Visual pathway function, assessed by electrophysiology, was significantly impaired at 3 months but normalized by 12 months. Hearing loss was more common among ZIKV-exposed infants, although not statistically significant. Developmental outcomes were associated with prenatal ZIKV exposure itself, independent of viremia duration, neutralizing antibody titer, viral lineage, or maternal DENV immunity, and were not mediated by visual impairment or hearing loss. These findings highlight that any prenatal ZIKV exposure can disrupt early neurobehavioral development and visual function, underscoring the need for prevention strategies focused on maternal infection and early intervention.

microbiology↗

Quantification of Early Gait Development: Expanding the Application of Catwalk Technology to an Infant Rhesus Macaque Model

BackgroundUnderstanding gait development is essential for identifying motor impairments in neurodevelopmental disorders. Defining typical gait development in a rhesus macaque model is critical prior to characterizing abnormal gait. The goal of this study was to 1) explore the feasibility of using the Noldus Catwalk to assess gait in infant rhesus macaques and 2) provide preliminary normative data of gait development during the first month of life. New methodThe Noldus Catwalk was used to assess gait speed, dynamic and static paw measurements, and interlimb coordination in twelve infant rhesus macaques at 14, 21, and 28 days of age. All macaque runs were labeled as a diagonal or non-diagonal walking pattern. ResultsInfant rhesus macaques primarily used a diagonal (mature) walking pattern as early as 14 days of life. Ten infant rhesus macaques (83.3%) were able to successfully walk across the Noldus Catwalk at 28 days of life. Limited differences in gait parameters were observed between timepoints because of the variability within the group at 14, 21, and 28 days. Comparison with existing methods: No prior gait analysis system has been used to provide objective quantification of gait parameters for infant macaques. ConclusionsThe Catwalk system can be utilized to quantify gait in infant rhesus macaques less than 28 days old. Future applications to infant rhesus macaques could provide a better understanding of gait development and early differences within various neurodevelopmental disorders. Highlights- Infant rhesus macaque gait parameters can successfully be captured by the Catwalk - At 14 days of life, macaques were consistently using a diagonal walking pattern - Limited developmental change occurs in gait parameters over the first month of life - Infant macaque gait parameters had high within group variability at each timepoint Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=190 HEIGHT=200 SRC="FIGDIR/small/516450v1_ufig1.gif" ALT="Figure 1"> View larger version (41K): org.highwire.dtl.DTLVardef@6185edorg.highwire.dtl.DTLVardef@9fa472org.highwire.dtl.DTLVardef@e54919org.highwire.dtl.DTLVardef@12231cc_HPS_FORMAT_FIGEXP M_FIG C_FIG Note: Brown and grey-colored macaques were created in biorender

animal behavior and cognition↗