Effect of continuous wave, quasi-continuous wave and pulsed laser radiation on functional characteristics of fish spermatozoa. 2021

V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
The State Scientific Institution "В.I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus", 220072 Minsk, 68-2 Nezavisimosti ave., Belarus. Electronic address: v.plavskii@ifanbel.bas-net.by.

For the first time, using sturgeon sperm as a model system, sensitive to optical radiation, the comparative studies of biological effect of continuous wave, quasi-continuous wave, nano- and picosecond laser radiation under conditions with equal average irradiance (3 mW/cm2) and wavelength (532 nm) have been carried out. Analyzing the parameters of spermatozoa motion it has been shown that, depending on the energy dose and mode of laser operation, the radiation may have both stimulatory and inhibitory effect on the velocity of motion and spermatozoa motility duration as well as on sustaining of functional characteristics of cold-stored sperm. The possibility of increasing the fertilization rate due to use of the sperm preliminary treated with laser radiation is demonstrated. For the first time, the possibility of enhancement of biological effect going from continuous wave to quasi-continuous wave laser radiation at equal irradiance and wavelength has experimentally been proven. It is shown that the difference in biological effect of continuous wave, quasi-continuous wave, nano- and picosecond laser radiation is due to amplitude (peak) values of intensity. Using fluorescence analysis and luminol-dependent chemiluminescence assay, evidence for the participation of endogenous flavins and metal-free porphyrins in sensitized ROS formation (singlet oxygen, hydrogen peroxide, and hydroxyl radicals) in sturgeon sperm was obtained. Mechanisms of photochemical and photothermal reactions explaining the difference in efficacy of action of laser radiation in above modes are discussed.

UI MeSH Term Description Entries
D007834 Lasers An optical source that emits photons in a coherent beam. Light Amplification by Stimulated Emission of Radiation (LASER) is brought about using devices that transform light of varying frequencies into a single intense, nearly nondivergent beam of monochromatic radiation. Lasers operate in the infrared, visible, ultraviolet, or X-ray regions of the spectrum. Masers,Continuous Wave Lasers,Pulsed Lasers,Q-Switched Lasers,Continuous Wave Laser,Laser,Laser, Continuous Wave,Laser, Pulsed,Laser, Q-Switched,Lasers, Continuous Wave,Lasers, Pulsed,Lasers, Q-Switched,Maser,Pulsed Laser,Q Switched Lasers,Q-Switched Laser
D008163 Luminescent Measurements Techniques used for determining the values of photometric parameters of light resulting from LUMINESCENCE. Bioluminescence Measurements,Bioluminescent Assays,Bioluminescent Measurements,Chemiluminescence Measurements,Chemiluminescent Assays,Chemiluminescent Measurements,Chemoluminescence Measurements,Luminescence Measurements,Luminescent Assays,Luminescent Techniques,Phosphorescence Measurements,Phosphorescent Assays,Phosphorescent Measurements,Assay, Bioluminescent,Assay, Chemiluminescent,Assay, Luminescent,Assay, Phosphorescent,Assays, Bioluminescent,Assays, Chemiluminescent,Assays, Luminescent,Assays, Phosphorescent,Bioluminescence Measurement,Bioluminescent Assay,Bioluminescent Measurement,Chemiluminescence Measurement,Chemiluminescent Assay,Chemiluminescent Measurement,Chemoluminescence Measurement,Luminescence Measurement,Luminescent Assay,Luminescent Measurement,Luminescent Technique,Measurement, Bioluminescence,Measurement, Bioluminescent,Measurement, Chemiluminescence,Measurement, Chemiluminescent,Measurement, Chemoluminescence,Measurement, Luminescence,Measurement, Luminescent,Measurement, Phosphorescence,Measurement, Phosphorescent,Measurements, Bioluminescence,Measurements, Bioluminescent,Measurements, Chemiluminescence,Measurements, Chemiluminescent,Measurements, Chemoluminescence,Measurements, Luminescence,Measurements, Luminescent,Measurements, Phosphorescence,Measurements, Phosphorescent,Phosphorescence Measurement,Phosphorescent Assay,Phosphorescent Measurement,Technique, Luminescent,Techniques, Luminescent
D008297 Male Males
D011166 Porphyrins A group of compounds containing the porphin structure, four pyrrole rings connected by methine bridges in a cyclic configuration to which a variety of side chains are attached. The nature of the side chain is indicated by a prefix, as uroporphyrin, hematoporphyrin, etc. The porphyrins, in combination with iron, form the heme component in biologically significant compounds such as hemoglobin and myoglobin. Porphyrin
D004307 Dose-Response Relationship, Radiation The relationship between the dose of administered radiation and the response of the organism or tissue to the radiation. Dose Response Relationship, Radiation,Dose-Response Relationships, Radiation,Radiation Dose-Response Relationship,Radiation Dose-Response Relationships,Relationship, Radiation Dose-Response,Relationships, Radiation Dose-Response
D005306 Fertilization The fusion of a spermatozoon (SPERMATOZOA) with an OVUM thus resulting in the formation of a ZYGOTE. Conception,Fertilization, Delayed,Fertilization, Polyspermic,Conceptions,Delayed Fertilization,Delayed Fertilizations,Fertilizations,Fertilizations, Delayed,Fertilizations, Polyspermic,Polyspermic Fertilization,Polyspermic Fertilizations
D005415 Flavins Derivatives of the dimethylisoalloxazine (7,8-dimethylbenzo[g]pteridine-2,4(3H,10H)-dione) skeleton. Flavin derivatives serve an electron transfer function as ENZYME COFACTORS in FLAVOPROTEINS.
D006861 Hydrogen Peroxide A strong oxidizing agent used in aqueous solution as a ripening agent, bleach, and topical anti-infective. It is relatively unstable and solutions deteriorate over time unless stabilized by the addition of acetanilide or similar organic materials. Hydrogen Peroxide (H2O2),Hydroperoxide,Oxydol,Perhydrol,Superoxol,Peroxide, Hydrogen
D000068936 Theranostic Nanomedicine An integrated nano-scale approach to MEDICINE which involves concurrent diagnosis, drug delivery, therapy, and monitoring of therapeutic response. Photothermal Theranostics,Nanomedicine, Theranostic,Nanomedicines, Theranostic,Photothermal Theranostic,Theranostic Nanomedicines
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

Related Publications

V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
November 2022, Micromachines,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
August 2016, Applied optics,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
July 2015, Phlebology,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
March 1971, American journal of optometry and archives of American Academy of Optometry,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
January 2004, Optics letters,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
August 2017, Optics express,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
May 1995, Journal of cataract and refractive surgery,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
June 1972, Applied optics,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
March 2012, Guang pu xue yu guang pu fen xi = Guang pu,
V Yu Plavskii, and N V Barulin, and A V Mikulich, and A I Tretyakova, and T S Ananich, and L G Plavskaya, and I A Leusenka, and A N Sobchuk, and V A Sysov, and O N Dudinova, and A I Vodchits, and I A Khodasevich, and V A Orlovich
October 2020, Optics express,
Copied contents to your clipboard!