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1.
Am J Trop Med Hyg ; 110(4): 819-825, 2024 Apr 03.
Article in English | MEDLINE | ID: mdl-38377600

ABSTRACT

In tropical countries, acute febrile illnesses represent a complex clinical problem for general practitioners. We describe the prevalence of different etiologies of acute febrile illnesses occurring among French service members and their families, excluding children, in general practice in French Guiana. From June 2017 to March 2020, patients with a fever ≥37.8°C with a duration of less than 15 days who sought medical care at the army medical centers in Cayenne and Kourou were prospectively enrolled. Based on clinical presentation, blood, urine, nasopharyngeal, and stool samples were collected for diagnostic testing for viruses, bacteria, and parasites (by direct examination, microscopic examination of blood smears, culture, serology, or polymerase chain reaction), and standardized biological tests were systematically performed. Among 175 patients retained for analysis, fever with nonspecific symptoms was predominant (46.9%), with 10 Plasmodium vivax malaria cases, 8 dengue infections, and 6 cases of Q fever. The second most frequent cause of acute febrile illness was upper respiratory tract infections (32.0%) due to influenza virus (n = 18) or human rhinovirus (n = 10). Among the causes of acute febrile illness in French Guiana, clinicians should first consider arboviruses and malaria, as well as Q fever in cases of elevated C-reactive protein with nonspecific symptoms and influenza in cases of signs and symptoms associated with upper respiratory tract infections. Despite an expanded microbiological search, the etiology of 51.4% of acute febrile illnesses remain unknown. Further investigations will be necessary to identify the etiology of acute febrile illnesses, including new pathogens, in French Guiana.


Subject(s)
Influenza, Human , Malaria , Q Fever , Child , Adult , Humans , French Guiana/epidemiology , Q Fever/complications , Malaria/complications , Malaria/epidemiology , Malaria/diagnosis , Fever/etiology , Fever/complications , Influenza, Human/complications
2.
Cells ; 12(11)2023 05 31.
Article in English | MEDLINE | ID: mdl-37296643

ABSTRACT

Cytokines secreted by individual immune cells regulate tissue regeneration and allow communication between various cell types. Cytokines bind to cognate receptors and trigger the healing process. Determining the orchestration of cytokine interactions with their receptors on their cellular targets is essential to fully understanding the process of inflammation and tissue regeneration. To this end, we have investigated the interactions of Interleukin-4 cytokine (IL-4)/Interleukin-4 cytokine receptor (IL-4R) and Interleukin-10 cytokine (IL-10)/Interleukin-10 cytokine receptor (IL-10R) using in situ Proximity Ligation Assays in a regenerative model of skin, muscle and lung tissues in the mini-pig. The pattern of protein-protein interactions was distinct for the two cytokines. IL-4 bound predominantly to receptors on macrophages and endothelial cells around the blood vessels while the target cells of IL-10 were mainly receptors on muscle cells. Our results show that in situ studies of cytokine-receptor interactions can unravel the fine details of the mechanism of action of cytokines.


Subject(s)
Cytokines , Interleukin-10 , Swine , Animals , Cytokines/metabolism , Interleukin-4 , Endothelial Cells/metabolism , Swine, Miniature , Receptors, Interleukin-10
4.
Am J Disaster Med ; 14(4): 247-252, 2022.
Article in English | MEDLINE | ID: mdl-35325460

ABSTRACT

BACKGROUND: In France, in 2015, prehospital emergency doctors were faced with civilian casualties in hemorrhagic shock resulting from terrorist attacks with automatic rifle fire and explosive weapons. The present study aimed to evaluate the impact of these attacks on the advanced life support (ALS) team's practices and equipment and on physician training in the prehospital management of traumatic hemorrhagic shock. METHODS: This before-and-after multicenter study evaluated professional practices based on a questionnaire sent to emergency department heads and medical practitioners in 370 ALS teams in metropolitan France. RESULTS: We analyzed 672 responses from 209 (56.5 percent) ALS teams in 91 of 95 emergency medical services (EMS) headquarters. Of these 91, 73 (80.2 percent) had a protocol in use for managing traumatic hemorrhagic shock after the attacks, compared with 45 (49.5 percent) who had protocols in use before the attacks (p < 0.001). Ultrasound equipment was available in 49 (53.8 percent) of the EMS headquarters after the attacks, compared to 39 (42.9 percent) before (p < 0.001). Limb tourniquets were available in 90 (98.9 percent) EMS headquarters after the attacks, versus 27 (29.7 percent) before (p < 0.001). Tranexamic acid was available in 88 (96.7 percent) EMS headquarters after the attacks, versus 71 (78 percent) before (p < 0.001). During the post-attack period, training in war medicine did not affect individual practices, neither for using the shock index or the Focused Assessment with Sonography for Trauma (FAST) nor the tourniquet. However, this training was associated with more frequent use of hemostatic dressings (p = 0.002). CONCLUSION: Following the attacks in Paris and Nice, ALS teams received additional equipment and training to prepare for future mass causality events.


Subject(s)
Emergency Medical Services , Shock, Hemorrhagic , Terrorism , Humans , Paris , Retrospective Studies , Shock, Hemorrhagic/therapy
5.
Front Physiol ; 13: 999011, 2022.
Article in English | MEDLINE | ID: mdl-36726379

ABSTRACT

Hemorrhage is the leading cause of death in severe trauma injuries. When organs or tissues are subjected to prolonged hypoxia, danger signals-known as damage-associated molecular patterns (DAMPs)-are released into the intercellular environment. The endothelium is both the target and a major provider of damage-associated molecular patterns, which are directly involved in immuno-inflammatory dysregulation and the associated tissue suffering. Although damage-associated molecular patterns release begins very early after trauma, this release and its consequences continue beyond the initial treatment. Here we review a few examples of damage-associated molecular patterns to illustrate their pathophysiological roles, with emphasis on emerging therapeutic interventions in the context of severe trauma. Therapeutic intervention administered at precise points during damage-associated molecular patterns release may have beneficial effects by calming the inflammatory storm triggered by traumatic hemorrhagic shock.

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