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Biology subjects

Wade, C. E.

Publications and source records attributed to Wade, C. E..

2 recordsLinked to original sources

HS3ST1 regulates pulmonary inflammation and is a determinant of clinical outcomes after trauma and hemorrhagic shock

Mechanisms that promote organ injury after trauma and hemorrhagic shock (T/HS) remain poorly defined. Endothelial heparan sulfates with a 3-O-sulfate (3-OS) modification, controlled by the HS3ST1 gene, have anticoagulant and anti-inflammatory properties through their interaction with antithrombin. Our objective was to determine whether HS3ST1 deficiency drives organ injury and poor outcomes after T/HS. Hs3st1-/- and wild-type (WT) mice were subjected to T/HS followed by resuscitation with lactated ringers (LR) or fresh frozen plasma (FFP). While no differences were observed between WT and Hs3st1-/- LR resuscitated mice, lung injury and leukocyte infiltrates were significantly increased in FFP resuscitated Hs3st1-/-compared to WT mice. In vitro, leukocyte slow rolling and adherence was increased in HS3ST1 KO compared to WT cells. Among 472 T/HS patients, of which 31 (7%) were homozygous for the rs16881446 variant allele (GG), the number of ventilator free days was lower, and mortality was significantly higher in AG and GG patients. The rs16881446 genotype was independently associated with mortality. In conclusion, HS3ST1 deficiency mitigates organ protection from FFP resuscitation, partly through mediating EC:leukocyte engagement, and predicts mortality after T/HS. These findings identify a novel therapeutic target and prognostic tool that can be leveraged towards improved risk stratification after trauma.

cell biology↗

Donor Sex and Platelet Storage Influence the Therapeutic Effects of Platelet-Derived Extracellular Vesicles on Endothelial Barrier Function

Platelet-derived extracellular vesicles (PEVs) play an active role in vascular protection and repair and are being explored as a viable alternative to platelet therapy. Because platelet function and stability are shaped by donor sex and storage conditions, these same factors are likely to influence the PEVs they release. Understanding these influences is key to developing PEVs into a safe and dependable therapeutic option. In this study, we investigated how donor sex and platelet storage affect the therapeutic properties of PEVs. To address this, PEVs were isolated from platelets of healthy male and female donors. Platelets were either processed immediately after blood collection to represent a resting state or stored overnight at room temperature on a rocker to mimic platelet storage conditions. PEVs isolated from these preparations displayed similar size, morphology, and cellular uptake across groups, but their biological effects diverged. Female PEVs, particularly from resting platelets, provided the strongest protection against thrombin-induced endothelial barrier disruption, stabilized junctional proteins, and reduced oxidative stress. Male PEVs showed weaker barrier protection compared to female-derived PEVs but more pronounced modulation of certain inflammatory mediators. In addition, PEVs derived from resting platelets (RP-PEVs) consistently showed stronger protective effects than those from stored platelets (SP-PEVs), regardless of donor sex. These results highlight that donor sex and platelet storage influence PEVs function and underscore the need to account for both when developing PEV-based therapies. Key PointThe endothelial-protective effects of platelet-derived extracellular vesicles are modulated by platelet storage conditions and donor sex.

molecular biology↗