Cytal Wound Matrix 1-Layer 7cm*10cm
Part No.: WS0710
Manufacturer: ACell
Country of Origin: USA
Cytal® Wound Matrix is an advanced extracellular matrix (ECM) derived from porcine urinary bladder matrix (UBM). This decellularized, non-crosslinked, and fully resorbable biomaterial is designed to address challenging wound microenvironments. Cytal® facilitates a shift from a pro-inflammatory state to a pro-remodeling environment, promoting cellular infiltration, rapid revascularization, and the formation of site-appropriate, vascularized tissue. Supported by robust clinical evidence, Cytal® Wound Matrix offers a versatile solution for managing complex wounds, including those with exposed bone and tendon.
Features:
- Supports a Shift in the Inflammatory Response:
- Promotes a higher ratio of M2 (pro-remodeling) to M1 (pro-inflammatory) macrophages, fostering a healing-friendly microenvironment.
- Demonstrated in a prospective case-control study, where UBM significantly reduced M1 to M2 scores in both diabetic and non-diabetic patients, correlating with accelerated wound area reduction.
- Facilitates Rapid Revascularization:
- Features an open, porous structure that enables cellular infiltration and neovascularization.
- Promotes the ingrowth of vascular tissue over avascular structures, such as exposed bone and tendon.
- Supports the remodeling of site-appropriate, functional tissue.
- Provides Flexible Treatment Options:
- Creates a vascular wound environment conducive to follow-up treatments, including additional sheet products, skin grafting, or flap reconstruction.
- Effective in contaminated wounds post-cleaning and/or debridement, facilitating successful wound management.
- Robust Clinical Evidence:
- Demonstrated 86%, 100%, and 100% wound closure rates in three peer-reviewed, retrospective case series involving 73 patients with trauma and lower extremity wounds.
- Proven efficacy in managing challenging wounds with exposed bone and tendon.
Cytal® Wound Matrix 1 Layer (WS0710) is a scientifically validated, versatile solution for clinicians seeking to optimize wound healing in complex and challenging cases. Its ability to modulate the wound microenvironment and support rapid tissue regeneration makes it a valuable tool in advanced wound care.
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