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Leal-Garcia, M. E.

Publications and source records attributed to Leal-Garcia, M. E..

3 recordsLinked to original sources

L-selectin shedding regulates functional recovery and neutrophil clearance following spinal cord injury in a sex-dependent manner

During the acute phase of spinal cord injury (SCI), neutrophils infiltrate in large numbers and can exacerbate inflammation, secondary tissue damage, and neurological deficits. L-selectin is a signaling and adhesion receptor that has been shown to facilitate neutrophil recruitment and secondary injury after SCI. During neutrophil activation, L-selectin is typically cleaved or shed from the cell surface and augmenting L-selectin shedding can improve hindlimb recovery and tissue sparing following SCI in male mice. However, it is unclear how endogenous L-selectin shedding regulates neutrophil responses and functional recovery after SCI, particularly when also considering sex as a biological variable. In this study, we investigated the sex-dependent role of endogenous L-selectin shedding in neutrophil function and long-term outcomes in a murine thoracic contusion model of SCI. We found that endogenous L-selectin shedding improves long-term functional recovery and white matter sparing in female, but not male, mice. In addition, we demonstrate that L-selectin shedding alters neutrophil accumulation in a sex-dependent manner. While L-selectin shedding does not mediate neutrophil activation or effector functions, we found that neutrophil clearance is facilitated by L-selectin shedding in female mice alone. These results demonstrate that endogenous L-selectin shedding is a critical and sex-dependent mediator of neutrophil accumulation and clearance, as well as long-term functional outcomes, after SCI.

neuroscience↗

Sex-dependent effects of peptidylarginine deiminases on neutrophil function and long-term outcomes after spinal cord injury

Traumatic spinal cord injury (SCI) initiates an influx of peripheral immune cells to the spinal cord parenchyma that compound tissue damage and restrict functional recovery. Neutrophils infiltrate the spinal cord within the first day after injury, releasing extracellular traps (NETs) comprised of decondensed DNA, modified histones, and granule enzymes, that can worsen tissue damage. Peptidylarginine demininases (PADs), particularly PAD4, have been indicated as mediators of NET formation by facilitating the decondensation of nuclear chromatin via histone citrullination. Though PADs have been shown to be regulated by sex hormones, sex-differences in PAD regulation of neutrophil function in the context of CNS injury have yet to be explored. In this work, we investigated the role of PADs in recovery after SCI using Cl-amidine, a pan-PAD inhibitor. Strikingly, Cl-amidine treated mice exhibited sex-dependent changes to motor function, body weight, and white matter sparing after SCI. Acutely, Cl-amidine treated mice had reduced NET accumulation in the blood and decreased spinal cord neutrophil granularity. Analysis of publicly available scRNA-seq data revealed that female bone marrow neutrophils exhibited elevated Padi4 expression relative to their male counterparts. We then utilized Padi4 knockout (Padi4-/-) mice to assess the role of PAD4 in long-term recovery of male and female mice after SCI. While we observed no changes in motor recovery, a sex-dependent effect on tissue sparing was observed with Padi4 deficiency. These data are the first description of sex differences in PAD-mediated neutrophil function after SCI and highlight the importance of inclusion of both sexes in pre-clinical research.

neuroscience↗

Mature neutrophils promote long-term functional recovery after spinal cord injury in a sex-dependent manner

Neutrophils are abundant and complex innate immune cells that act as first responders to tissue injury, with critical roles in combating infection and initiating would healing. Following spinal cord injury (SCI), neutrophils are the first peripheral immune cells to infiltrate the injured spinal cord in large numbers. Despite the growing body of evidence demonstrating sex differences in neutrophil function, sex as a biological variable in neutrophil responses following SCI has yet to be thoroughly investigated. Here we provide novel evidence that neutrophil responses differ by sex following SCI with divergent effects on long-term outcomes. We show substantial sex-dependent shifts in the phenotype of circulating and intraspinal neutrophils across time following SCI. Depletion of neutrophils immediately after SCI reveals a previously unidentified role for mature neutrophils in promoting long-term functional recovery in a sex-dependent manner. Mechanistically, mature neutrophils acquire an inflammation-resolving phenotype in the acutely injured spinal cord and depletion of mature neutrophils exacerbates long-term macrophage accumulation following SCI in a sex-dependent manner. Collectively, our findings provide the first account of marked sex differences in the response of neutrophils to SCI and elucidate a novel and sex-dependent role for mature neutrophils in promoting resolution of inflammation and long-term recovery following SCI.

neuroscience↗