Enzymatic and synthetic lignin isolates for UV radiation protection

Technology
Conceptual
University

A bio-based UV protection technology using enzymatic lignin isolates and synthetic lignin polymers derived from hydroxyphenyl propyl precursors. Designed for topical applications, the lignin-based formulation absorbs UV radiation to shield surfaces, with demonstrated efficacy in protecting fungal spores from UV degradation. Potential applications span personal care, agriculture, and coatings.

Overview

This technology leverages lignin, a natural biopolymer composed of polyaromatic phenolic rings found in lignocellulosic biomass, as an effective UV radiation absorber for topical applications. Lignin-based formulations can block UV penetration, protecting underlying surfaces in a manner analogous to how it shielded fungal spores from UV degradation in field conditions. The innovation encompasses both enzymatic lignin isolated from biomass sources and synthetic lignin polymerized from hydroxyphenyl propyl precursors, offering flexibility in sourcing and customization.

The core value proposition is a sustainable, bio-based alternative to conventional UV protection agents. Validated at the microbial level, where lignin-coated spores survived UV exposure for several days and successfully germinated to attack target insects, the technology demonstrates real-world UV-blocking capability. This evidence supports extension to broader topical uses where UV shielding is critical.

Technical specifications

Key features:

  • Lignin isolated from three biomass sources: softwood, hardwood, and herbaceous biomass via ball milling and enzymatic removal of cellulosic material
  • High-purity lignin achieved through freeze-drying isolation
  • Comprehensive characterization of lignin preparations using analytical instrumentation to assess quality
  • Synthetic lignin produced through enzyme-catalyzed polymerization of lignin monomeric precursors
  • Dispersion testing in topical formulations to evaluate ease of incorporation
  • UV absorption efficacy testing using laboratory-equivalent solar radiation sources
  • Durability assessments under simulated prolonged sun exposure conditions
  • Iterative formulation modifications based on performance outcomes
Technology readiness level

The technology has completed initial proof-of-concept validation at the microbial level, where lignin-based coatings successfully protected fungal spores from UV radiation over multi-day exposure periods. Future validation will expand to topical application testing, including dispersion characterization, UV absorption performance, and durability evaluation under laboratory-simulated solar conditions. Both enzymatic and synthetic lignin variants will undergo parallel assessment, with effective formulations coordinated with project sponsors. The technology is currently at an early-to-mid stage of development, progressing from microbial validation toward broader topical application readiness.


About Utah State University

Utah State University is a comprehensive public land‑grant research university (Carnegie R1) serving Utah through a flagship Logan campus and a statewide network. Industry connects through the Innovation Campus research park, where companies co‑locate with faculty and access shared facilities. USU’s Space Dynamics Laboratory, a US Space Force–sponsored University Affiliated Research Center, offers mission‑driven pathways for space and defense collaboration. Statewide Extension offices and field sites enable pilot deployments and real‑world validation across Utah’s diverse settings. Research is supported by competitive federal funding from agencies such as NSF, USDA, NASA, and DoD, with Technology Transfer Services managing IP, licensing, and SBIR/STTR support.

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