Trauma is a leading cause of death in both military and civilian populations worldwide. Although medical advances have improved the overall morbidity and mortality often associated with trauma, additional research and innovative advancements in therapeutic interventions are needed to optimize patient outcomes. Cell-based therapies present a novel opportunity to improve trauma and critical care at both the acute and chronic phases that often follow injury. Although this field is still in its infancy, animal and human studies suggest that stem cells may hold great promise for the treatment of brain and spinal cord injuries, organ injuries, and extremity injuries such as those caused by orthopedic trauma, burns, and critical limb ischemia. However, barriers in the translation of cell therapies that include regulatory obstacles, challenges in manufacturing and clinical trial design, and a lack of funding are critical areas in need of development. In 2015, the Department of Defense Combat Casualty Care Research Program held a joint military-civilian meeting as part of its effort to inform the research community about this field and allow for effective planning and programmatic decisions regarding research and development. The objective of this article is to provide a "state of the science" review regarding cellular therapies in trauma and critical care, and to provide a foundation from which the potential of this emerging field can be harnessed to mitigate outcomes in critically ill trauma patients.
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http://dx.doi.org/10.1097/SHK.0000000000000482 | DOI Listing |
J Trauma Nurs
January 2025
Author Affiliations: NOVA Southeastern University, Kiran Patel College of Allopathic Medicine, Fort Lauderdale, Florida (Nunes Espat, Breeding, Nasef, and Amin); University of Hawaii, John A. Burns School of Medicine, Honolulu, Hawaii (Chin); Department of Surgery, Division of Trauma and Surgical Critical Care, Orlando Regional Medical Center, Orlando, Florida (Dr Elkbuli); and Department of Surgical Education, Orlando Regional Medical Center, Orlando, Florida (Dr Elkbuli).
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Objective: This review aims to analyze trends in the incidence, type, region, and onset of injuries in professional tennis players, with particular attention to gender distribution, to improve guidelines and reduce injury impacts on performance and career longevity.
J Trauma Nurs
January 2025
Author Affiliations: Department of Management and Organization, Bayburt University, Bayburt, Turkey (Dr Koroglu Kaba); Akdağmadeni School of Health, Yozgat Bozok University, Yozgat, Turkey (Dr Bal); and Nursing Department, Faculty of Health Sciences, Karadeniz Technical University, Trabzon, Turkey (Dr Ozturk).
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Methods: A phenomenological approach was used to guide this study, exploring the lived experiences of nurse managers who worked during the 2023 earthquakes in Kahramanmaras, Turkey.
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Department of Pediatrics, Yale Medicine, Pediatric Critical Care Medicine, New Haven, CT, USA.
Extracorporeal Membrane Oxygenation (ECMO) use is associated with substantial psychiatric morbidity in patients and their families. This systematic review and meta-analysis quantifies the prevalence of post-traumatic stress disorder (PTSD), anxiety, and depression among ECMO survivors and their families. Included studies enrolled patients on ECMO or their families and reported at least one trauma-related psychopathology.
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Division of Trauma and Surgical Critical Care, The Warren Alpert Medical School of Brown University, Rhode Island Hospital, Providence, Rhode Island.
Background: Orthopedic trauma patients are at high risk for venous thromboembolic (VTE) complications. Despite this, VTE prophylaxis is often held peri-operatively out of concern for increased bleeding and associated complications. This review's purpose is to examine guidelines and studies on withholding prophylactic anticoagulation peri-operatively.
View Article and Find Full Text PDFBurns Trauma
January 2025
Department of Critical Care Medicine, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, No. 321 Zhongshan Road, Gulou District, Nanjing, Jiangsu 210008, China.
Background: Non-thyroidal illness syndrome is commonly observed in critically ill patients, characterized by the inactivation of systemic thyroid hormones (TH), which aggravates metabolic dysfunction. Recent evidence indicates that enhanced TH inactivation is mediated by the reactivation of type 3 deiodinase (Dio3) at the tissue level, culminating in a perturbed local metabolic equilibrium. This study assessed whether targeted inhibition of Dio3 can maintain tissue metabolic homeostasis under septic conditions and explored the mechanism behind Dio3 reactivation.
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