• DocumentCode
    1252905
  • Title

    Laser-induced photodecomposition of amino acids and peptides: extrapolation to corneal collagen

  • Author

    Nikogosyan, David N. ; Görner, Helmut

  • Author_Institution
    Inst. for Nonlinear Sci., Univ. Coll. Cork, Ireland
  • Volume
    5
  • Issue
    4
  • fYear
    1999
  • Firstpage
    1107
  • Lastpage
    1115
  • Abstract
    Recent studies on the laser photochemistry of aromatic and aliphatic amino acids and small peptides in neutral aqueous solution are described. We report on major parameters such as photoionization and photodecomposition quantum yields for the cases of direct (and indirect) photolysis. Although four different UV laser sources were used, the impact is made on 193-nm-induced photoprocesses. The relative probabilities of photochemical damage of specific residues are estimated. It is shown that the peptide bond is likely to be the main target in collagen. Its scission could be the most important photochemical reaction taking place at 193-nm laser irradiation of the cornea. We have found strong arguments in favor of the ablative photodecomposition mechanism of photorefractive keratectomy
  • Keywords
    biological effects of laser radiation; biomolecular effects of radiation; eye; photoionisation; photolysis; proteins; 193 nm; ablative photodecomposition mechanism; aliphatic amino acids; aromatic amino acids; cornea; corneal collagen; direct photolysis; laser irradiation; laser photochemistry; laser-induced photodecomposition; neutral aqueous solution; peptide bond; photochemical damage; photodecomposition quantum yields; photoionization; photorefractive keratectomy; relative probabilities; small peptides; specific residues; ultraviolet laser sources; Amino acids; Bonding; Cornea; Electromagnetic wave absorption; Extrapolation; Ionization; Laser surgery; Peptides; Photochemistry; Photorefractive effect;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/2944.796337
  • Filename
    796337