Fertility after photodynamic inactivation of bacteria in extended boar semen

被引:1
作者
Luther, Anne-Marie [1 ]
Varzandeh, Mohammad [2 ]
Beckermann, Christina [1 ]
Feyer, Leon [2 ]
Maassen, Isabel Katharina [1 ]
Oldenhof, Harriette [3 ]
Hackbarth, Steffen [2 ]
Waberski, Dagmar [1 ]
机构
[1] Univ Vet Med Hannover, Clin Swine & Small Ruminants, Unit Reprod Med, Hannover, Germany
[2] Humboldt Univ, Inst Phys, Photobiophys, Berlin, Germany
[3] Univ Vet Med Hannover, Clin Horses, Unit Reprod Med, Hannover, Germany
关键词
photodynamic inactivation; photosensitizer; singlet oxygen; sperm; boar; bacteria; semen preservation; PHOTOINACTIVATION; MICROORGANISMS; CHROMATIN; THERAPY; SPERM;
D O I
10.3389/fmicb.2024.1429749
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Antimicrobial resistance is an increasing challenge in semen preservation of breeding animals, especially in the porcine species. Bacteria are a natural component of semen, and their growth should be inhibited to protect sperm fertilizing capacity and the female's health. In pig breeding, where semen is routinely stored at 17 degrees C in the liquid state, alternatives to conventional antibiotics are urgently needed. Photodynamic inactivation (PDI) of bacteria is a well-established tool in medicine and the food industry but this technology has not been widely adopted in semen preservation. The specific challenge in this setting is to selectively inactivate bacteria while maintaining sperm integrity and functionality. The aim of this study was to test the principle of PDI in liquid stored boar semen using the photosensitizer 5,10,15,20-tetrakis(N-methyl-4-pyridyl)-21H,23H-porphine (TMPyP) and a white light LED-setup. In the first step, photophysical experiments comprising singlet oxygen phosphorescence kinetics of TMPyP and determination of the photosensitizer triplet time revealed a sufficiently high production of reactive singlet oxygen in the Androstar Premium semen extender, whereas seminal plasma acted as strong quencher. In vitro experiments with extended boar semen showed that the established PDI protocol preserves sperm motility, membrane integrity, DNA integrity, and mitochondrial activity while efficiently reducing the bacteria below the detection limit. A proof-of-concept insemination study confirmed the in vivo fertility of semen after photodynamic treatment. In conclusion, using the PDI approach, an innovative tool was established that efficiently controls bacteria growth in extended boar and maintains sperm fertility. This could be a promising contribution to the One Health concept with the potential to reduce antimicrobial resistance in animal husbandry.
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页数:15
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共 45 条
  • [41] Antimicrobial Photodynamic Therapy: Study of Bacterial Recovery Viability and Potential Development of Resistance after Treatment
    Tavares, Anabela
    Carvalho, Carla M. B.
    Faustino, Maria A.
    Neves, Maria G. P. M. S.
    Tome, Joao P. C.
    Tome, Augusto C.
    Cavaleiro, Jose A. S.
    Cunha, Angela
    Gomes, Newton C. M.
    Alves, Eliana
    Almeida, Adelaide
    [J]. MARINE DRUGS, 2010, 8 (01) : 91 - 105
  • [42] Boar semen storage at 5 °C for the reduction of antibiotic use in pig insemination: Pathways from science into practice
    Waberski, Dagmar
    Luther, Anne-Marie
    [J]. ANIMAL REPRODUCTION SCIENCE, 2024, 269
  • [43] Sperm function in vitro and fertility after antibiotic-free, hypothermic storage of liquid preserved boar semen
    Waberski, Dagmar
    Luther, Anne-Marie
    Gruenther, Benito
    Jaekel, Helen
    Henning, Heiko
    Vogel, Charlotte
    Peralta, Wolfgang
    Weitze, Karl Fritz
    [J]. SCIENTIFIC REPORTS, 2019, 9 (1)
  • [44] Heterosis for morphometric characteristics of sperm cells from Duroc x Pietrain crossbred boars
    Wysokinska, Anna
    Kondracki, Stanislaw
    [J]. ANIMAL REPRODUCTION SCIENCE, 2019, 211
  • [45] Cysteine improves boar sperm quality via glutathione biosynthesis during the liquid storage
    Zhu, Zhendong
    Zeng, Yao
    Zeng, Wenxian
    [J]. ANIMAL BIOSCIENCE, 2022, 35 (02) : 166 - 176