MUMBAI, India, July 7 -- Intellectual Property India has published a patent application (202641063565 A) filed by Ashwin Raj. P; Gautham. S; Mari Maheshwaran. B; Suriya. G; Ms. Geethanjali K; and Dr J Bindhu on May 20, 2026, for Iron(iii)-Immobilized Electrospun Chitson Nanofiber Systems Incorporated With Jackfruit Peel Bioactive Extract For Controlled Release And Angioenesis Promoting Wound Therapy.

Inventors include Ashwin Raj. P; Gautham. S; Mari Maheshwaran. B; Suriya. G; Ms. Geethanjali K; and Dr J Bindhu.

The application for the patent was published on July 03, 2026, under issue no. 27/2026.

Abstract: The present invention relates to iron(lll)-immobilized electrospun nanofiber systems designed for controlled iron ion release and angiogenesis-promoting wound therapy applications. The invention discloses biodegradable polymer-based electrospun nanofibers immobilized with iron(III) ions or iron oxide nanostructures to enhance vascularization, cellular proliferation, antimicrobial activity, and accelerated tissue regeneration. The iron-functionalized nanofibrous scaffold enables sustained release ofFe'+ ions, stimulating angiogenesis-related pathways, promoting endothelial cell proliferation, collagen synthesis, and extracellular matrix remodeling. The electrospun nanofiber architecture mimics the native extracellular matrix with high porosity and surface area, facilitating oxygen permeability, nutrient transport, and cell attachment. The developed system demonstrates controlled therapeutic ion delivery, enhanced fibroblast migration, antimicrobial protection, and improved wound healing suitable for chronic, diabetic, ischemic, and burn wound management applications.The system further incorporates jackfruit-derived bioactive phytocompounds rich in flavonoids, phenolics, artocarpin, and antioxidant biomolecules for enhanced antimicrobial, anti-inflammatory, collagen-promoting, and tissue regenerative activity. The synergistic combination of iron-mediated angiogenesis and jackfruit-derived bioactive compounds accelerates chronic wound repair and improves cellular regeneration

Disclaimer: Curated by HT Syndication.