[A brief protocol for sperm cryopreservation and revival in zebrafish]. 2012

Nai-Zhong Zheng, and Bo Zhang
Key Laboratory of Cell Proliferation and Differentiation of Ministry of Education, College of Life Sciences, Peking University, Beijing 100871, China. peterz@pku.edu.cn

Zebrafish is an important vertebrate model organism for the study of embryonic development and the underlying genetic mechanism. Numerous mutants and transgenics have been generated in recent years, long-term and safe storage of these fish lines is of crucial importance for every zebrafish community/lab. Sperm cryopreservation and revival has become a preferred method for this purpose, which provides extra and reliable security as a backup for the cost-effective maintenance of genetic stocks in addition to reducing space demanding for housing large amount of live fish. This is especially critical for invaluable fish lines against accidental loss. Generally, the sperm are obtained by either squeezing the male fish or dissecting out and homogenizing the testes, then they are mixed with the freezing medium before gradually frozen as aliquots in liquid nitrogen. They can be easily revived through in vitro fertilization whenever necessary. This technique was introduced into zebrafish research three decades ago and has gradually become mature and more reliable following the im-provement of many critical factors and steps, including cryoprotectants and conditions for freezing and revival. Base on pioneers' work, our lab has established and improved a simple method for sperm cryopreservation and revival which shows high recovery rate after relatively long storage time. Here we briefly summarize the history and development of the methods for sperm cryopreservation and revival in zebrafish and present a brief protocol for the practice of sperm cryopreservation and revival, which is routinely used in our lab.

UI MeSH Term Description Entries
D008297 Male Males
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
D013094 Spermatozoa Mature male germ cells derived from SPERMATIDS. As spermatids move toward the lumen of the SEMINIFEROUS TUBULES, they undergo extensive structural changes including the loss of cytoplasm, condensation of CHROMATIN into the SPERM HEAD, formation of the ACROSOME cap, the SPERM MIDPIECE and the SPERM TAIL that provides motility. Sperm,Spermatozoon,X-Bearing Sperm,X-Chromosome-Bearing Sperm,Y-Bearing Sperm,Y-Chromosome-Bearing Sperm,Sperm, X-Bearing,Sperm, X-Chromosome-Bearing,Sperm, Y-Bearing,Sperm, Y-Chromosome-Bearing,Sperms, X-Bearing,Sperms, X-Chromosome-Bearing,Sperms, Y-Bearing,Sperms, Y-Chromosome-Bearing,X Bearing Sperm,X Chromosome Bearing Sperm,X-Bearing Sperms,X-Chromosome-Bearing Sperms,Y Bearing Sperm,Y Chromosome Bearing Sperm,Y-Bearing Sperms,Y-Chromosome-Bearing Sperms
D015027 Zebrafish An exotic species of the family CYPRINIDAE, originally from Asia, that has been introduced in North America. Zebrafish is a model organism for drug assay and cancer research. Brachydanio rerio,Danio rerio,B. rerio,D. rerio,Zebra Fish,Zebra Fishes,Zebra danio,Zebrafishes,D. rerios,Fishes, Zebra,Zebra danios,danio, Zebra
D015925 Cryopreservation Preservation of cells, tissues, organs, or embryos by freezing. In histological preparations, cryopreservation or cryofixation is used to maintain the existing form, structure, and chemical composition of all the constituent elements of the specimens. Cryofixation,Cryonic Suspension,Cryonic Suspensions,Suspension, Cryonic

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