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Revolutionizing Bleeding Control: The Impact of Endoscopic Powder in MIS


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Effective control of haemostasis is critical to the success of any surgical procedure. Beyond minimizing intraoperative blood loss, it significantly reduces the risks associated with transfusions and postoperative complications. Yet, minimally invasive surgeries—like laparoscopic and endoscopic interventions—make bleeding control more complex because of restricted maneuverability and visibility.

With the rise of less invasive surgery, adaptable and efficient haemostatic agents are more vital than ever, especially where standard techniques fail.

Why Bleeding Control in MIS is Difficult


Compared to open surgeries, MIS—such as laparoscopic and endoscopic procedures—offers numerous benefits like reduced recovery time and smaller scars. These positive factors, however, increase the complexity of haemostasis. The lack of space, restricted visibility, and absence of tactile cues make diffuse or irregular bleeding especially tough to address.

Traditional methods—sutures, ligation, or electrocautery—are often impractical in these settings. Here, topical haemostats such as endoscopic powders become essential, helping to control bleeding and improve surgical efficiency.

Spotlight on Surgi-ORC®-Based Endoscopic Powder


Among haemostatic powders, plant-based, absorbable types like Surgi-ORC® have demonstrated both safety and effectiveness. Introduced decades ago as a sheet, oxidized regenerated cellulose (ORC) is now available in powder form for today’s MIS challenges.

Why Surgi-ORC®-Based Endoscopic Powder Stands Out


• Effective Haemostasis: ORC facilitates platelet adhesion and aggregation to accelerate clotting
• Conformability: The powder’s granular shape adapts to wounds, covering both large and deep surfaces
• No Animal Content: Plant origin means reduced risk of allergic or infectious complications
• Antibacterial Environment: The oxidation process lowers pH, creating an acidic microenvironment that offers bactericidal benefits
• Biocompatible and Absorbable: Completely resorbed by the body with no cytotoxic effects, even near nerves or vessels

These characteristics make Surgi-ORC® endoscopic powder an ideal choice for managing mild to moderate bleeding—especially capillary, venous, or small arterial oozing in confined spaces.

Delivery Devices: Enhancing Precision in MIS


The choice of delivery device plays a major role in the powder’s performance during MIS. Bellows pump applicators are commonly used for precise powder placement in minimally invasive settings.

How Bellows Applicators Function


Bellows applicators, which look like syringes, have various tip lengths for applying powder via laparoscopic ports. The bellows mechanism lets surgeons deposit powder accurately without blocking the field of view.

Key Considerations for Optimal Use


• Orientation: How you hold the device (vertically or horizontally) influences powder distribution more than how hard you squeeze
• Powder Properties: The grain size and flowability, plus moisture sensitivity, impact delivery
• Operator Technique: Delivery efficiency varies based on how quickly and forcefully the bellows are compressed [5]

Real-World Applications of Endoscopic Powder


In surgical settings where access is limited or structures are delicate, endoscopic powder proves invaluable. Its adaptability allows direct application to large, raw surfaces or narrow anatomical crevices.

Common Uses Include:

• Minimally Endoscopic Powder invasive liver surgeries
• Cardiothoracic MIS cases
• Laparoscopic gynaecologic interventions
• Endoscopic submucosal dissections (ESD)
• Urologic procedures

Endoscopic powders boost surgical efficiency by speeding up haemostasis, cutting transfusion needs, and improving results.

Clinical Data Supporting ORC Powder


A postmarket clinical study evaluating SURGICEL® Powder (ORC-based haemostatic agent) in 103 patients undergoing various surgical procedures reported:

• 87.4% of patients had bleeding stopped in 5 minutes; 92.2% within 10 minutes
• Effective in both open and MIS procedures
• No product-related complications—no rebleeding, thromboembolism, or adverse reactions
• Surgeons noted its ease of use, accuracy, and minimal need for extra measures

Overall, the data shows SURGICEL® Powder as a safe, effective, and adaptable haemostatic agent—especially when conventional tools aren’t enough.

Final Thoughts


As MIS continues to evolve, so does the demand for advanced haemostatic tools. ORC-based endoscopic powders offer surgeons rapid, flexible, and reliable bleeding control options.

Whether you're managing bleeding in a deep pelvic space, a raw liver surface, or a narrow endoscopic field, ORC endoscopic powder delivers the performance and flexibility modern surgery requires—safely and effectively.

References


1. Zhang Y, Song D, Huang H, Liang Z, Liu H, Huang Y, Zhong C, Ye G. Minimally invasive hemostatic materials: tackling a dilemma of fluidity and adhesion by photopolymerization in situ. Scientific Reports. 2017 Nov 10;7(1):15250.

2. De la Torre RA, Bachman SL, Wheeler AA, Bartow KN, Scott JS. Hemostasis and hemostatic agents in minimally invasive surgery. Surgery. 2007 Oct 1;142(4):S39-45.

3. Al-Attar N, de Jonge E, Kocharian R, Ilie B, Barnett E, Berrevoet F. Safety and hemostatic effectiveness of SURGICEL® powder in mild and moderate intraoperative bleeding. Clinical and Applied Thrombosis/Hemostasis. 2023 Jul;29:10760296231190376.

4. Xiao X, Wu Z. A narrative review of different hemostatic materials in emergency treatment of trauma. Emerg Med Int. 2022;2022: 6023261

5. Stark M, Wang AY, Corrigan B, Woldu HG, Azizighannad S, Cipolla G, Kocharian R, De Leon H. Comparative analyses of the hemostatic efficacy and surgical device performance of powdered oxidized regenerated cellulose and starch-based powder formulations. Research and Practice in Thrombosis and Haemostasis. 2025 Jan 1;9(1):102668.

6. Bustamante-Balén M, Plumé G. Role of hemostatic powders in the endoscopic management of gastrointestinal bleeding. World Journal of Gastrointestinal Pathophysiology. 2014 Aug 15;5(3):284.

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