Endothelial cell injury with inflammatory cytokine and coagulation in patients with sepsis

Huan Ding1, Xiang-Yuan Cao1, Xi-Gang Ma1

  • 1Intensive Care Unit, General Hospital of Ningxia Medical University, Yinchuan 750004, China.

Insights

Soluble CD62P (s-CD62P) is an early biomarker for sepsis, indicating endothelial cell damage and promoting inflammation and coagulation. Elevated s-CD62P levels are linked to sepsis severity, suggesting anti-adhesion therapy targeting CD62P as a potential treatment.

Area of Science:

  • Biomarkers
  • Sepsis Pathophysiology
  • Endothelial Cell Biology

Background:

  • Limited research on CD62P's role in sepsis and endothelial cell injury.
  • Focus on cardiovascular diseases for CD62P studies.
  • Need to explore CD62P's association with inflammation and coagulation in sepsis.

Purpose of the Study:

  • Investigate soluble CD62P (s-CD62P) levels in sepsis patients.
  • Explore the mechanism linking endothelial cell injury, inflammation, and coagulation.
  • Provide evidence for anti-adhesion therapy targeting CD62P in sepsis.

Main Methods:

  • Prospective study of 70 critically ill patients (sepsis, SIRS, control).
  • ELISA to measure plasma s-CD62P, TNF-α, and hs-CRP.
  • Analysis of coagulation variables (PLT, PT, APTT, D-dimer, AT-III) and SOFA scores.

Main Results:

  • Sepsis patients showed significantly higher s-CD62P, TNF-α, and hs-CRP than controls.
  • Coagulation abnormalities (elevated D-dimer, PT, APTT; decreased PLT, AT-III) were observed in sepsis and SIRS groups.
  • s-CD62P levels correlated with inflammatory markers and coagulation parameters.

Conclusions:

  • Elevated plasma s-CD62P is an early sepsis biomarker.
  • s-CD62P contributes to endothelial cell damage in sepsis.
  • s-CD62P may drive coagulation and inflammatory responses, worsening sepsis severity.
Abstract

Related Concept Videos

Acute Inflammation II: Local and Systemic Effects01:25

Acute Inflammation II: Local and Systemic Effects

Acute inflammation produces a coordinated set of local and systemic changes that limit injury, eliminate pathogens, and initiate repair. These responses arise within minutes of infection, trauma, or chemical insult and are driven by vascular alterations and leukocyte-derived mediators. When the stimulus resolves, the reaction typically abates within days.Local EffectsAt the site of injury, arteriolar vasodilation increases blood flow, resulting in redness and warmth. Simultaneously, increased...
37
Inflammation01:38

Inflammation

Overview
46.0K
Introduction to Hemostasis01:05

Introduction to Hemostasis

Hemostasis is a complex physiological process that prevents excessive bleeding when a blood vessel is injured. It's crucial for maintaining the integrity of the circulatory system, as it ensures that our blood remains fluid while still within the vascular network and yet clots to prevent blood loss upon vessel injury.
The three phases of hemostasis involve many clotting factors present in plasma and several substances released by platelets and injured tissue cells. It is a fast, localized,...
13.6K
Inflammatory Response II: Inflammatory Exudate and Tissue Repair01:24

Inflammatory Response II: Inflammatory Exudate and Tissue Repair

The immune system's inflammatory response destroys the invading pathogen, permitting the tissue to heal. The changes during the cellular and vascular stages allow exudate formation at the site of inflammation. The inflammatory exudate released from the wound has high protein content and a specific gravity above 1.020.
The typical wound exudate is odorless, transparent, straw-colored, thin, and watery. Exudate, however, can differ depending on the state of wound healing. Likewise, the...
8.4K
Inflammatory Response I: Vascular and Cellular01:30

Inflammatory Response I: Vascular and Cellular

The inflammatory response is the body's defense against infection, injury, or irritation from bacteria, trauma, toxins, or heat. Inflammation helps locate and destroy pathogens and remove damaged tissue elements to heal the body. During this initial phase, fluid, blood products, and nutrients migrate to the injured area, resulting in redness, heat, swelling, ache, and loss of function. Moreover, signs of systemic inflammation include fever, increased WBC count, malaise, anorexia, nausea,...
15.5K
Extrinsic and Intrinsic Pathways of Hemostasis01:20

Extrinsic and Intrinsic Pathways of Hemostasis

Blood clotting or coagulation involves extrinsic and intrinsic pathways, which ultimately merge into the common pathway, forming a fibrin clot.
The Extrinsic Pathway
The extrinsic pathway of coagulation is typically initiated by tissue damage that exposes blood to tissue factor (TF), a protein released by the damaged tissue cells outside the blood vessels—this interaction with TF triggers biochemical reactions involving specific clotting factors. The key player here is Factor VII, which...
10.6K