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Multi-layer amniotic tissue grafts

VIA Matrix™ multi-layer amniotic membrane allografts can be used as a tissue barrier or wound covering to help provide protection to damaged tissue1,2 in numerous applications, including wound care, venous leg ulcers, dermatology, and pressure wounds, among others.

Layers are never delaminated:
structural integrity of the amnion, intermediate/spongy, and chorion is maintained
Suitable scaffold:
allowing the attachment of human dermal fibroblasts3
Retention of naturally occurring structural components:
collagen and hyaluronic acid.3

VIA Matrix™ is manufactured using VIVEX’s Integrity Processing™ methodology, which helps to maintain the inherent levels of key extracellular matrices, including carbohydrates, growth factors, and cytokines. The proprietary Integrity Processing™ preserves up to 700+ signaling proteins, including growth factors and cytokines3. VIA Matrix™ is processed in accordance with FDA regulations and AATB standards. E-Beam sterilization provides a sterility assurance level (SAL) of 10-6. VIA Matrix can be stored at room temperature and has a shelf-life of five years.

PRODUCT INFORMATION
Preparation Time
None
Shelf life
Up to 5 years (at ambient temperature of 2°C to 30°C)
Product Composition
Amnion, its intermediate/spongy layer and the chorion layers of the amniotic sac
Final Preparation
Tissue graft
HCPCS Code
Q4309
ORDERING INFORMATION
SIZE
CODE
UPC
2x3cm
VMA020300S
850023053855
4x4cm
VMA040400S
850023053848
4x6cm
VMA040600S
850023053862
10x11cm
VMA101100S
850023053923
REFERENCES
1 Delcroix Gaetan J. R., et. al. “Preserving the Natural Regenerative Potential of Amniotic Membrane.” VIVEX Biologics, 2017.
2 Koob, Thomas J., et. al. “Properties of Dehydrated Human Amnion/Chorion Composite Grafts: Implications for Wound Repair and Soft Tissue Regeneration.” Journal of Biomedical Materials Research B: Applied Biomaterials, 2014, vol. 102B, pp. 1353-1362.
3 Data on file at Vivex Biologics, Inc.
For more information on our VIA Matrix™ product,
download our brochure.