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February 28, 2026Biomedical Materials0 citationsOpen Access

Spectrophotometric determination of LAP photoinitiator radicalization in ophthalmic applications

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PJPeter A. JansenVDVedshree DeshmukhPGPoulami Ghosh

Key Points

  • The aim is to evaluate the presence of non-radicalized LAP in hydrogels to assess cytotoxic potential in corneal applications.
  • Utilized spectrophotometric techniques to assess absorbance characteristics of LAP.
  • Conducted measurements at specific wavelength of 372 nm to determine LAP concentration.
  • Evaluated hydrogel materials produced via extrusion bioprinting.
  • Successfully confirmed LAP presence using absorbance measurements.
  • Findings showed that absorbance levels correlate with LAP concentration.
  • Demonstrated feasibility for assessing cytotoxic risks of crosslinking materials in hydrogels.

Abstract

The incidence of lamellar corneal transplantations is increasing. While a human donor cornea could potentially be used for up to two recipients, one anterior and one posterior part, it does not change the disparity between available donor grafts and patients needing corneal transplants. Additionally, donor grafts carry the risk of graft rejection due to foreign cellular material and disease transmission. We have investigated acellular synthetic graft materials to eliminate these drawbacks using hydrogel materials and the extrusion bioprinting process. To create these materials with higher moduli, the photocrosslinking process has advantages but needs an appropriate crosslinker material. We have shown that we can determine the presence of the non-radicalized crosslinker Lithium Phenyl (2,4,6-Trimethylbenzoyl) Phosphinate (LAP) with spectrophotometric methods, using the crosslinker absorbance characteristics. To show non radicalized LAP the measurement is done at 372 nm, and the measured absorbance level depends on the LAP concentration. This allows for a simple evaluation of crosslinked hydrogels to determine any remaining non radicalized LAP and with that potential cytotoxic or other effects of this crosslinking material and correct this situation if necessary. .

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Cite This Study

Jansen et al. (2026) studied this question.

synapsesocial.com/papers/69a286240a974eb0d3c00f1ahttps://doi.org/10.1088/1748-605x/ae4a62
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