Core Scientific Creations


Core Scientific Creations is dedicated to developing cutting-edge healthcare technologies with a mission to provide healthcare providers worldwide with innovative tools to improve patient care. Their products, such as WoundClot™, offer superior bleeding control across the entire spectrum of care, from point of injury to perioperative and restorative care, utilizing natural cellulose-based materials that rapidly convert into a gel to achieve hemostasis.

Industries

manufacturing
medical-device

Nr. of Employees

small (1-50)

Core Scientific Creations


Products

Veterinarian hemostatic gauze

Cellulose-based hemostatic gauze formulated for control of mild, moderate, and severe bleeding in veterinary applications.

Surgical implantable hemostatic gauze

Bioabsorbable, non-oxidized cellulosic hemostatic intended for intraoperative control of capillary, venous, and arterial bleeding; a CE Class III implantable designation is referenced for this surgical format.

Trauma hemostatic gauze (pre-hospital)

Gauze format intended for traumatic wounds and moderate to severe bleeding in pre-hospital and emergency responder settings.

Twin-pack hemostatic gauze (post-procedure/hemodialysis)

Two-piece packaged gauze intended to control post-hemodialysis or post-procedure bleeding and enable sequential or additional application.


Services

E-commerce catalog for ordering hemostatic gauze products and initiating price enquiries.

Expertise Areas

  • Hemostatic biomaterials development
  • Surgical hemostasis and implantable hemostats
  • Pre-hospital and trauma hemorrhage control
  • Emergency medicine product supply and EMS applications
  • Show More (3)

Key Technologies

  • 3D gel-forming cellulose biomaterials
  • Cellulose-based bioabsorbable hemostats
  • Intrinsic coagulation pathway activation design (XI/XII)
  • Formulation technologies for high-capacity blood absorption
  • Show More (2)

News & Updates

Preliminary study examining the safety of long-term application of hemostatic dressings in a swine model, indicating potential risks such as coagulopathy and embolus formation.


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