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Reduced curvilinear velocity of boar sperm on substrates with increased hydrophobicity
Matthew Mears1, Thomas M Kennelly1, Jonathan R Howse2
1Department of Physics and Astronomy, The University of Sheffield, Sheffield, UK.
Abstract:
The curvilinear velocity (VCL) of boar spermatozoa between standard microscopy glassware decreases when the slides are coated with the hydrophobic polymer polystyrene (PS) compared with the less hydrophobic poly(methyl methacrylate) (PMMA) coating. Sperm from three boars were observed and analyzed using particle tracking software. The VCL did not differ significantly between coatings of different thickness, indicating no penetration of the sperm into the coating and that only the surface layer of the polymer film interacts with the sperm and buffer medium. The VCL of sperm between PS-coated surfaces was significantly reduced compared with PMMA surfaces (P < 0.0001), and this was attributed to a stronger hydrophobic effect between PS and water. The size of this effect varied between different boars, perhaps as a consequence of variations in hydrophobicity of sperm from different boars or different ejaculates. The modification of surface properties in this way may improve our understanding of sperm behavior and may provide improvements to assisted conception techniques as animal or human sperm used in assisted conception are frequently manipulated in laboratory plastics as part of diagnostic procedures (e.g., semen analysis) or before injection into an oocyte or during the co-incubation with the oocyte in IVF. Controlling the velocity of sperm using the interaction properties of inert polymer coatings could lead to new sperm selection procedures for clinical use or the development of model systems to better understand sperm-surface interactions.
Insights
Hydrophobic polystyrene (PS) coatings significantly reduce boar sperm curvilinear velocity (VCL) compared to poly(methyl methacrylate) (PMMA). This surface interaction affects sperm motility, offering insights for assisted conception techniques.
Area of Science:
- Reproductive Biology
- Materials Science
- Biophysics
Background:
- Sperm motility is crucial for natural and assisted reproduction.
- Laboratory plastics used in assisted conception can influence sperm behavior.
- Understanding sperm-surface interactions is key to improving fertility techniques.
Purpose of the Study:
- To investigate the effect of hydrophobic polymer coatings on boar sperm curvilinear velocity (VCL).
- To determine if surface hydrophobicity influences sperm motility in vitro.
- To explore potential applications in assisted conception technologies.
Main Methods:
- Boar sperm motility was analyzed using particle tracking software.
- Sperm were observed between microscopy slides coated with polystyrene (PS) and poly(methyl methacrylate) (PMMA).
- The influence of coating thickness and hydrophobicity on sperm VCL was assessed.
Main Results:
- Sperm curvilinear velocity (VCL) was significantly reduced on hydrophobic polystyrene (PS) surfaces compared to poly(methyl methacrylate) (PMMA) surfaces (P < 0.0001).
- Coating thickness did not affect VCL, indicating surface-level interaction.
- Variations in the hydrophobic effect were observed between different boars.
Conclusions:
- Surface hydrophobicity, particularly with polystyrene, significantly impacts sperm motility.
- Controlling surface properties offers a potential method for sperm selection in assisted reproduction.
- This research provides a basis for developing improved sperm manipulation techniques and model systems for sperm-surface interaction studies.
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