Enhanced coagulation cascade activation and styptic effects of Zn@SiO nanocomposite.

Colloids Surf B Biointerfaces

Department of Nanotechnology, SRM Institute of Science and Technology, Kattankulathur, Chengalpattu, Tamilnadu, India. Electronic address:

Published: July 2024

AI Article Synopsis

  • Humans face significant bleeding that pressures the coagulation system to effectively control blood loss, particularly during severe trauma that can lead to serious health issues.
  • The Zn@SiO nanocomposite effectively promotes hemostasis by activating essential factors in the blood clotting process, leading to the formation of a stable fibrin mesh clot.
  • Various analytical techniques, including XRD, FTIR, and HRTEM, are used to characterize this composite and evaluate its performance in promoting red blood cell aggregation, platelet adhesion, fibrin and thrombus formation, and overall coagulation efficiency.

Article Abstract

Humans often have bleeding, which exerts substantial selective pressure on the coagulation system to optimize hemostasis in a variety of situations. Uncontrolled hemorrhage due to severe trauma leads to morbidity and mortality. Although nonbiological surfaces such as silicates can activate coagulation factor XII (FXII), the presence of Zn (Zinc) in the material stimulates and activates the various steps in the coagulation cascade. This results in blood clotting. The Zn@SiO nanocomposite has an excellent hemostatic property that establishes hemostasis by activating the factors responsible for the formation of a stable clot called fibrin mesh. This can be used as a hemostatic agent during surgeries and in any other trauma condition related to bleeding. Zn@SiO was synthesized and characterized with XRD, FTIR and HRTEM. It is analyzed for its RBC (Red Blood Corpuscles) aggregation and Platelet adhesion ability, fibrin formation, thrombus formation and prothrombin time (PT), Activated Partial Thromboplastin Time (aPTT), D-dimer for its ability to activate the coagulation cascade to achieve stable clotting.

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Source
http://dx.doi.org/10.1016/j.colsurfb.2024.113927DOI Listing

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