RenovoDerm develops the Phoenix Wound Matrix, a fully synthetic, bioabsorbable scaffold that mimics the extracellular matrix to enhance tissue regeneration and reduce inflammation in acute and chronic wounds. This technology promotes faster healing and minimizes scar formation by creating a pro-healing environment that supports cellular adhesion and proliferation.
Funding
$850K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Founders
Product
Problem
Chronic and acute wounds often suffer from persistent inflammation and lack the necessary structural support for effective tissue regeneration. Current wound care solutions may not adequately address these issues, leading to delayed healing, increased risk of complications, and scar formation.
Solution
RenovoDerm's Phoenix Wound Matrix is a fully synthetic, bioabsorbable scaffold designed to mimic the natural extracellular matrix (ECM) and promote improved wound healing outcomes. The three-dimensional electrospun polymer matrix provides a microporous structure that facilitates cellular adhesion, infiltration, and proliferation. By creating a pro-healing environment, the Phoenix Wound Matrix supports native tissue regeneration, accelerates the healing process, and minimizes scar formation in acute wounds, chronic wounds, and burns. The matrix degrades into α-hydroxy acids and fatty acids, acting as a protective barrier while addressing chronicity and persistent inflammation.
Target Audience
The primary target audience includes medical specialists, podiatric surgeons, and wound care service providers treating acute and chronic wounds, as well as burns.
Features
- 3D electrospun synthetic polymer matrix mimicking native extracellular matrix (ECM) morphology
- Fully synthetic and bioabsorbable composition, eliminating risks associated with allogeneic and xenogeneic products
- Multi-dimensional, microporous scaffold designed to facilitate natural cellular adhesion, infiltration, and proliferation
- Promotes a pro-healing wound environment by supporting low pH and lactate expression
- Designed to mitigate the inflammatory response and decrease scar formation