This content will become publicly available on November 18, 2026

Title: Innate immune signaling mediates differential acute and long-term outcomes of repeated vs single TBI in Drosophila
Abstract Traumatic brain injuries (TBIs) are a global source of hospitalization, long-term disability, and death. However, age, sex, and other demographics differ widely among patients and the variable characteristics of TBIs further obscure injury outcomes. Here, we used Drosophila melanogaster to assess the effects of mild, repeated TBI (multi-day, MD) compared to single, severe TBI (single-day, SD). In all genotypes tested, flies given an SD injury exhibited higher acute mortality, but in some genotypes, the surviving flies had a longer lifespan and better long-term locomotor ability than flies given an MD injury. We hypothesized that different immune responses to MD vs SD injury may mediate differences in short- and long-term outcomes. We measured antimicrobial peptide gene expression and found that it increased after each strike of the MD injury and was eventually equivalent or greater than in flies given SD injury. Additionally, increased expression of some immune genes persisted for up to four weeks, predominantly in flies given MD injuries. We measured TBI outcomes of mutant flies for each arm of the innate immune system (Imd and Toll) and found that Imd null mutants had worse short- and long-term survival across both injury conditions, indicating that Imd signaling is protective against both injury types. Interestingly, a partial loss of function mutant for Toll signaling led to higher acute mortality following SD injury, but lower acute mortality and longer lifespan after MD injury, suggesting that Toll signaling is detrimental following MD injury. However, weak and strong ubiquitous Gal4-driven RNAi knockdowns of Toll and Imd varied in their effects on acute mortality and lifespan, suggesting that the degree of immune signaling also contributes to TBI outcomes. Understanding differences in innate immune response to different types of TBI could enable development of targeted therapeutics.  more » « less
Award ID(s):
2313370
PAR ID:
10702779
Author(s) / Creator(s):
; ; ; ; ; ; ; ; ; ; ;
Editor(s):
Kaun, K
Publisher / Repository:
Genetics Society of America
Date Published:
Journal Name:
GENETICS
Volume:
232
Issue:
1
ISSN:
1943-2631
Format(s):
Medium: X
Sponsoring Org:
National Science Foundation
More Like this
  1. TBI occurs when sudden trauma to the head causes damage to the brain, leading to long-term health problems. Many features of TBI can be replicated in Drosophila, making them an ideal model. Previous research on male flies showed that TBI decreases lifespan and locomotion, both of which were ameliorated by dietary restriction (DR). Considering female flies are known to be more responsive to DR, we examined whether DR ameliorates the effect of TBI in females. We found DR significantly extended lifespan and improved climbing ability at 2 weeks post-TBI, consistent with prior results in males. 
    more » « less
  2. Infection with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) results in varied clinical outcomes, with virus-induced chronic inflammation and tissue injury being associated with enhanced disease pathogenesis. To determine the role of tissue damage on immune populations recruitment and function, a mathematical model of innate immunity following SARS-CoV-2 infection has been proposed. The model was fitted to published longitudinal immune marker data from patients with mild and severe COVID-19 disease and key parameters were estimated for each clinical outcome. Analytical, bifurcation, and numerical investigations were conducted to determine the effect of parameters and initial conditions on long-term dynamics. The results were used to suggest changes needed to achieve immune resolution. 
    more » « less
  3. null (Ed.)
    Traumatic brain injury (TBI) is a relatively common occurrence following accidents or violence, and often results in long-term cognitive or motor disability. Despite the high health cost associated with this type of injury, presently there are no effective treatments for many neurological symptoms resulting from TBI. This is due in part to our limited understanding of the mechanisms underlying brain dysfunction after injury. In this study, we used the mouse controlled cortical impact (CCI) model to investigate the effects of TBI, and focused on Reelin, an extracellular protein that critically regulates brain development and modulates synaptic activity in the adult brain. We found that Reelin expression decreases in forebrain regions after TBI, and that the number of Reelin-expressing cells decrease specifically in the hippocampus, an area of the brain that plays an important role in learning and memory. We also conducted in vitro experiments using mouse neuronal cultures and discovered that Reelin protects hippocampal neuronal cells from glutamate-induced neurotoxicity, a well-known secondary effect of TBI. Together our findings suggest that the loss of Reelin expression may contribute to neuronal death in the hippocampus after TBI, and raise the possibility that increasing Reelin levels or signaling activity may promote functional recovery. 
    more » « less
  4. Abstract The relationship between the early‐age activity of Mediterranean fruit flies (medflies) or other fruit flies and their lifespan has not been much studied, in contrast to the connections between lifespan and diet, sexual signaling, and reproduction. The objective of this study is to assess intra‐day and day‐to‐day activity profiles of female Mediterranean fruit flies and their role as biomarker of longevity as well as to explore the relationships between these activity profiles, diet, and age‐at‐death throughout the lifespan. We use advanced statistical methods from functional data analysis (FDA). Three distinct patterns of activity variations in early‐age activity profiles can be distinguished. A low‐caloric diet is associated with a delayed activity peak, while a high‐caloric diet is linked with an earlier activity peak. We find that age‐at‐death of individual medflies is connected to their activity profiles in early life. An increased risk of mortality is associated with increased activity in early age, as well as with a higher contrast between daytime and nighttime activity. Conversely, medflies are more likely to have a longer lifespan when they are fed a medium‐caloric diet and when their daily activity is more evenly distributed across the early‐age span and between daytime and nighttime. The before‐death activity profile of medflies displays two characteristic before‐death patterns, where one pattern is characterized by slowly declining daily activity and the other by a sudden decline in activity that is followed by death. 
    more » « less
  5. null (Ed.)
    Abstract Background Immune responses need to be initiated rapidly, and maintained as needed, to prevent establishment and growth of infections. At the same time, resources need to be balanced with other physiological processes. On the level of transcription, studies have shown that this balancing act is reflected in tight control of the initiation kinetics and shutdown dynamics of specific immune genes. Results To investigate genome-wide expression dynamics and trade-offs after infection at a high temporal resolution, we performed an RNA-seq time course on D. melanogaster with 20 time points post Imd stimulation. A combination of methods, including spline fitting, cluster analysis, and Granger causality inference, allowed detailed dissection of expression profiles, lead-lag interactions, and functional annotation of genes through guilt-by-association. We identified Imd-responsive genes and co-expressed, less well characterized genes, with an immediate-early response and sustained up-regulation up to 5 days after stimulation. In contrast, stress response and Toll-responsive genes, among which were Bomanins, demonstrated early and transient responses. We further observed a strong trade-off with metabolic genes, which strikingly recovered to pre-infection levels before the immune response was fully resolved. Conclusions This high-dimensional dataset enabled the comprehensive study of immune response dynamics through the parallel application of multiple temporal data analysis methods. The well annotated data set should also serve as a useful resource for further investigation of the D. melanogaster innate immune response, and for the development of methods for analysis of a post-stress transcriptional response time-series at whole-genome scale. 
    more » « less