Overview of Stop Bleed
Quick Facts: Oxidized Cellulose
| Property | Description |
|---|---|
| Active ingredient | Cellulose, Oxidized (ORC) |
| Form | Absorbable fabric or powder |
| Pharmacological class | Local Hemostatic Agent |
| Common use | Adjunct to control minor hemorrhage |
| Origin | Derived from natural cellulose |
What Type of Agent is Stop Bleed (Oxidized Cellulose)?
Stop Bleed is the trade name for a product whose active ingredient is Cellulose, Oxidized, a specialized type of Local Hemostatic Agent. This material is clinically recognized for its role in surgical settings and trauma care, where it assists the body's natural coagulation processes. The substance is technically known as Oxidized Regenerated Cellulose (ORC), which is created by chemically treating purified, natural cellulose fibers to yield a highly reactive polymer. It is used as a topical hemostat utilized for various bleeding control needs.
As an adjunct to hemostasis, this ORC material is distinct from agents that affect internal blood chemistry; it provides external, mechanical support. It is a single-active-ingredient product intended solely for topical application directly onto a bleeding site.
Composition and Form: The Absorbable Surgical Matrix
The composition is entirely the Cellulose, Oxidized polymer, which is supplied in sterile dosage forms such as a highly conformable woven or knit fabric or a fine powder. The material’s structure allows it to achieve its effect upon contact with blood, when it swells and transforms into a sticky, dense gel. Its primary mechanism involves creating a localized, protective physical barrier upon contact with blood.
This material is classified as resorbable, meaning the body’s own physiological processes safely break down and eliminate the material over time, eliminating the need for manual removal—a practical benefit in many surgical and trauma care scenarios.
General Purpose of this Hemostatic Preparation
The general purpose of Oxidized Cellulose is to achieve local control of minor to moderate hemorrhage when standard physical pressure or vessel ligation is not immediately feasible. By rapidly forming this adherent physical barrier, the preparation provides vital mechanical clot stabilization, assisting the patient’s intrinsic clotting factors by offering immediate physical support at the site of bleeding.

