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Updated: May 24, 2026

Measuring Sperm Guidance and Motility within the Caenorhabditis elegans Hermaphrodite Reproductive Tract
Published on: June 6, 2019
A quantitative ultramorphological approach for systematic assessment of sperm head regions: an example in rams
M F López Armengol1, S B Jurado, V Pelufo
1Instituto Multidisciplinario de Investigación y Desarrollo de la Patagonia Norte, IDEPA (CONICET-UNCo) y Laboratorio de Teriogenología Dr. Héctor H. Morello, Facultad de Ciencias Agrarias, Universidad Nacional del Comahue, Ruta 151, km 12, (8303) Cinco Saltos, Río Negro, Argentina. m.lopezarmengol@conicet.gov.ar
Abstract:
Examination of the type and frequency of damage to the head of spermatozoa using electron microscopy can be used to evaluate the quality of differently treated sperm. This report describes a systematic approach based on 29 morphological categories of sperm heads assessed from discrete regions in raw, chilled and frozen-thawed spermatozoa. Injury occurred principally at the plasma membrane and could be present or absent in all regions. In the anterior segment, when the plasma membrane is present, it can be intact, dilated, very dilated, disrupted, or contain vesicles characteristic of acrosomal reaction-like capacitation changes. When the plasma membrane is absent, the acrosome may be intact, exhibit a complete loss of contents, or retain some contents of the apical ridge and present a very dilated outer acrosomal membrane. The plasma membrane in the equatorial segment and the boundary between regions can be intact, dilated, very dilated or disrupted. The post-acrosomal plasma membrane is classified as intact, dilated or very dilated, whereas the dense lamina is intact, dilated or fragmented. The morphology of the heads most frequently observed in chilled spermatozoa consists of anterior and equatorial segments with a dilated, or dilated and disrupted plasma membrane; a boundary between regions with an intact and dilated plasma membrane; and a post-acrosomal region with an intact plasma membrane and dense lamina, both dilated. In frozen-thawed spermatozoa, the morphology of the heads is more frequently characterised by no plasma membrane and an acrosome showing complete or some loss of contents in the apical ridge and very dilated outer acrosomal membrane, presenting mostly dilated and fragmented dense lamina in the post-acrosomal region. These findings are consistent with the conclusion that the freezing process produces an increase in the degree of damage to the cells when they are subjected to increasing degrees of cold shock. There are still difficulties in developing a good diluent and process for preserving the plasma membrane in ram spermatozoa. This systematisation, using different categories, allows characterisation of multiple transmission electron microscopy images. Thus, the different changes observed due to cryopreservation may be correlated.
Insights
Electron microscopy reveals sperm head damage, particularly to the plasma membrane, in chilled and frozen-thawed ram spermatozoa. Cryopreservation significantly increases cell damage, highlighting challenges in preserving sperm quality.
Area of Science:
- Reproductive Biology
- Cell Biology
- Veterinary Science
Background:
- Sperm head morphology assessment is crucial for evaluating sperm quality.
- Electron microscopy offers detailed insights into sperm structural integrity.
- Understanding cryopreservation-induced damage is vital for improving assisted reproductive technologies.
Purpose of the Study:
- To systematically categorize sperm head damage using electron microscopy.
- To evaluate the impact of chilling and freezing on ram spermatozoa morphology.
- To correlate observed morphological changes with cryopreservation processes.
Main Methods:
- Utilized transmission electron microscopy to examine ram spermatozoa.
- Developed and applied a systematic approach with 29 morphological categories.
- Assessed sperm head damage in raw, chilled, and frozen-thawed samples.
Main Results:
- Plasma membrane injury was the principal type of damage observed.
- Chilled spermatozoa showed dilated or disrupted plasma membranes in anterior/equatorial segments.
- Frozen-thawed spermatozoa exhibited more severe damage, including absent plasma membranes and acrosomal content loss.
- Cryopreservation led to increased cell damage, correlating with cold shock severity.
Conclusions:
- The freezing process significantly increases damage to ram spermatozoa.
- Preserving the plasma membrane during ram sperm cryopreservation remains a challenge.
- The developed categorization system aids in characterizing ultrastructural changes due to cryopreservation.

