Ethicon PROLENE Polypropylene Blue Non-Absorbable Microsurgical Suture USP 10-0 10 cm Double-Armed CTC-6L CS Ultima Conventional Cutting Needles (14 mm) HKK5631G (Box of 12)
This PROLENE® Polypropylene Blue Non-Absorbable Microsurgical Suture, product code HKK5631G, is engineered for highly delicate surgical procedures requiring exceptional precision and control. Manufactured from non-absorbable polypropylene monofilament, PROLENE® provides smooth tissue passage, minimal inflammatory response and long-term tensile stability.
The USP 10-0 diameter is intended for microsurgical and ophthalmic-level applications where ultra-fine suture calibre is essential. The compact 10 cm strand length supports meticulous handling in confined operative fields requiring precise placement.
This suture is bi-directional and supplied double-armed with two CTC-6L CS Ultima® conventional cutting needles (14 mm). The CS Ultima® conventional cutting configuration delivers sharp, controlled penetration in delicate tissue layers. Supplied sterile and single-use in a box of 12, this product is intended for professional microsurgical environments requiring dependable non-absorbable closure.
- Key Features
- Non-absorbable polypropylene monofilament
- USP 10-0 microsurgical diameter
- 10 cm strand length
- Bi-directional, double-armed configuration
- CTC-6L needle design (×2)
- 14 mm CS Ultima® conventional cutting needles
- Designed for ultra-fine tissue approximation
- Minimal tissue reactivity
- Sterile, single-use — Box of 12
- Technical Specifications
- Brand: PROLENE®
- Manufacturer: Ethicon
- Product Code: HKK5631G
- Category: Ethicon Wound Closure
- Suture Size: USP 10-0
- Length: 10 cm
- Colour: Blue
- Material: Polypropylene
- Absorbability: Non-absorbable
- Directionality: Bi-directional
- Needle Name: CTC-6L (×2)
- Needle Length: 14 mm
- Needle Point Type: CS Ultima® Conventional Cutting
- Pledget: No
- Strands per Pack: 1
- Quantity per Box: 12
- Unit of Measure: Box (12 Each)
- Suitable For
- Microsurgical procedures
- Ophthalmic-level tissue approximation
- Ultra-fine vascular repair
- Delicate layered closure
- Applications requiring permanent non-absorbable support