Sperm Motility Protection

Sperm motility protection is the preservation of sperm movement and functional capacity when cells encounter damaging conditions, making it important for fertilization and reproductive research. It works by limiting oxidative stress, maintaining plasma-membrane integrity, and supporting energy production, often through antioxidant protection and carefully controlled temperature, osmotic balance, and storage conditions. In biology, these principles guide semen handling, cryopreservation, assisted reproduction, and studies of reproductive toxicity. Effective protection helps retain progressive motility after processing or storage, improving the reliability of fertility assessments and enabling researchers to evaluate how environments, treatments, or materials affect sperm function.

Sperm Motility Protection - Related Videos

Research

JoVE Journal - Biology
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Mouse Sperm Cryopreservation and Recovery using the I·Cryo Kit

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Cited by 5 •

2011

Here we demonstrate the newly developed I•Cryo kit for mouse sperm cryopreservation. Two-cell stage embryo development with frozen-thawed sperm was improved consistently in 5 mouse strains with the use of this kit. Over a 1.5 year period, 49 genetically modified mouse lines were archived by sperm cryopreservation with the I•Cryo kit and later successfully recovered by IVF.

Research

JoVE Journal - Biology

Two Types of Assays for Detecting Frog Sperm Chemoattraction

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Cited by 5 •

2011

Eggs and the extracellular coatings around eggs frequently release peptides, proteins and small molecules that communicate with sperm to guide them to the egg thereby promoting fertilization. Using frog sperm we describe and compare two classes of assays used to detect sperm chemoattraction – sperm accumulation assays and sperm tracking assays.

Education

JoVE Science Education - Advanced Biology

An Introduction to Cell Motility and Migration

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2023

Cell motility and migration play important roles in both normal biology and in disease. On one hand, migration allows cells to generate complex tissues and organs during development, but on the other hand, the same mechanisms are used by tumor cells to move and spread in a process known as cancer metastasis. One of the primary cellular machineries that make cell movement possible is an intracellular network of myosin and actin molecules, together known as “actomyosin”, which creates a...

Research

JoVE Journal - Biology
Free Sample

Techniques for Imaging Ca2+ Signaling in Human Sperm

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Cited by 17 •

2010

Stimulus-evoked [Ca2+]i signals of individual human sperm are assessed. Motile cells are loaded with Ca2+-sensitive fluorescent dye (AM-ester method) and immobilised in a perfusable chamber. Cells are imaged by time-lapse fluorescence microscopy and stimulated via the perfusing medium. Responses of single cells (or regions) are analysed offline using Excel.

Measuring Sperm Guidance and Motility within the Caenorhabditis elegans Hermaphrodite Reproductive Tract

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Cited by 10 •

2019

Sperm must successfully navigate through the oviduct to fertilize an oocyte. Here, we describe an assay for measuring sperm migration within the C. elegans hermaphrodite uterus. This assay can provide quantitative data on sperm distribution within the uterus after mating, as well as on speed, directional velocity, and reversal frequency.

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