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Jessica C Cardenas

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Articles 67
Citations 1195
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Recent Articles
1.
Lu X, Tang L, Wu Y, Hilton T, Chen X, Houck K, et al.
Blood Adv . 2025 Feb; PMID: 39913776
Traumatic brain injury (TBI) causes endothelial injuries both at the site of injury and in remote regions of the brain. TBI-induced endotheliopathy also disseminates to extracranial organs, such as the...
2.
Del Pilar Huby Vidaurre M, Mokhtari A, Osborn B, Cotton B, Wang Y, Xu Y, et al.
Shock . 2025 Jan; PMID: 39847723
Introduction: Trauma and hemorrhagic shock (T/HS) are associated with multiple organ injury. Antithrombin (AT) has anti-inflammatory and organ protective activity through its interaction with endothelial heparan sulfate containing a 3-O-sulfate...
3.
Baird E, Lammers D, Abraham P, Hashmi Z, Griffin R, Stephens S, et al.
J Surg Res . 2025 Jan; 306():283-289. PMID: 39823999
Introduction: Previous studies suggested that type O blood may be associated with increased mortality and/or thrombotic complications among trauma patients. The purpose of this analysis was to evaluate the relationship...
4.
Takahashi K, Yamakawa K, Siletz A, Katsura M, Holcomb J, Wade C, et al.
Res Pract Thromb Haemost . 2024 Oct; 8(7):102568. PMID: 39430866
Background: Traumatic fibrinolytic dysfunction is often categorized into 3 phenotypes based on the result of thromboelastography (TEG) lysis at 30 minutes (LY30): fibrinolysis shutdown, physiologic fibrinolysis, and hyperfibrinolysis. However, the...
5.
Richter R, Odum J, Margaroli C, Cardenas J, Zheng L, Tripathi K, et al.
Front Cell Dev Biol . 2024 Aug; 12:1390794. PMID: 39114570
Heparan sulfate (HS) in the vascular endothelial glycocalyx (eGC) is a critical regulator of blood vessel homeostasis. Trauma results in HS shedding from the eGC, but the impact of trauma...
6.
Lubkin D, Mueck K, Hatton G, Brill J, Sandoval M, Cardenas J, et al.
Trauma Surg Acute Care Open . 2024 Apr; 9(1):e001193. PMID: 38596569
Objectives: Some centers have recommended including concentrated fibrinogen replacement in massive transfusion protocols (MTPs). Given our center's policy of aggressive early balanced resuscitation (1:1:1), beginning prehospital, we hypothesized that our...
7.
Sanders K, Hatton G, Mankame A, Allen A, Cunningham S, Van Gent J, et al.
J Trauma Acute Care Surg . 2024 Mar; 97(5):690-696. PMID: 38523132
Introduction: Venous thromboembolism (VTE) is a leading cause of morbidity and mortality in trauma patients, despite chemoprophylaxis. Statins have been shown capable of acting upon the endothelium. We hypothesized that...
8.
Schriner J, Triolo F, Gill B, Cardenas J, Olson S, Cox Jr C
Cytotherapy . 2023 Dec; 26(2):194-200. PMID: 38127031
Background Aims: Mesenchymal stromal cells (MSCs) are multipotent adult cells that can be isolated from tissues including bone marrow [MSC(BM)], adipose [MSC(AT)] and umbilical cord [MSC(CT)]. Previous studies have linked...
9.
Watson C, Saaid H, Vedula V, Cardenas J, Henke P, Nicoud F, et al.
Ann Biomed Eng . 2023 Nov; 52(3):467-486. PMID: 37914979
Venous thromboembolism (VTE) is a massive clinical challenge, annually affecting millions of patients globally. VTE is a particularly consequential pathology, as incidence is correlated with extremely common risk factors, and...
10.
Olson S, Osborn B, Cotton M, Krocker J, Koami H, White N, et al.
J Surg Res . 2023 Oct; 293:639-646. PMID: 37837820
Introduction: Major traumatic injury is associated with early hemorrhage-related and late-stage deaths due to multiple organ failure (MOF). While improvements to hemostatic resuscitation have significantly reduced hemorrhage-related deaths, the incidence...