Literature DB >> 11123180

Cryopreservation of murine spermatozoa.

J K Critser1, L E Mobraaten.   

Abstract

Cryopreservation of mouse sperm provides an economic option for preserving the large number of mouse strains now being generated by transgenic and targeted mutation methodologies. The ability of a spermatozoan cell to survive cryobiological preservation depends on general biophysical constraints that apply to all cells, such as the avoidance or minimization of the formation of intracellular ice during cooling. This action is typically achieved by use of cryoprotectant substances and by controlled, slow rates of cooling. Superimposed on those general constraints may be special characteristics of mouse spermatozoa, such as more narrow, osmotically driven volume tolerance limits and the fact that relatively successful freezing can be obtained without the use of a permeating cryoprotective agent. The lack of important information regarding sperm cells fundamental cryobiological properties, including their osmotic and membrane permeability characteristics, has hindered progress in developing anything but empirically derived methods. Genetic differences between inbred mouse strains are reflected in motility and fertility characteristics of mouse sperm and contribute to the difficulty of developing successful cryopreservation methods. Recovery of live young from frozen sperm has been much more successful with sperm from hybrid mice than from most inbred strains. There have been no published reports of successful cryopreservation of rat sperm. Nevertheless, in mice, success in deriving live young from intracytoplasmic sperm injection using sperm frozen under suboptimal conditions raises the possibility of using this technique for the ultimate rescue of sperm regardless of the success of cryopreservation. This technique, however, requires additional development and verification of its efficacy before it will be suitable for general laboratory use. Although cryopreservation of mouse sperm is not yet universally successful, it can be used reliably to supplement cryopreservation of embryos and other germline cells or tissues for preserving biomedically important strains of mice for research.

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Year:  2000        PMID: 11123180     DOI: 10.1093/ilar.41.4.197

Source DB:  PubMed          Journal:  ILAR J        ISSN: 1084-2020


  14 in total

1.  Rationally optimized cryopreservation of multiple mouse embryonic stem cell lines: I--Comparative fundamental cryobiology of multiple mouse embryonic stem cell lines and the implications for embryonic stem cell cryopreservation protocols.

Authors:  Corinna M Kashuba; James D Benson; John K Critser
Journal:  Cryobiology       Date:  2013-12-30       Impact factor: 2.487

Review 2.  Simple gamete preservation and artificial reproduction of mammals using micro-insemination techniques.

Authors:  Takehito Kaneko
Journal:  Reprod Med Biol       Date:  2014-12-18

3.  Genome resource banking of biomedically important laboratory animals.

Authors:  Yuksel Agca
Journal:  Theriogenology       Date:  2012-09-13       Impact factor: 2.740

4.  An improved cryopreservation method for a mouse embryonic stem cell line.

Authors:  Corinna M Kashuba Benson; James D Benson; John K Critser
Journal:  Cryobiology       Date:  2007-12-10       Impact factor: 2.487

5.  Effect of different cryoprotectant agents on spermatogenesis efficiency in cryopreserved and grafted neonatal mouse testicular tissue.

Authors:  Cengiz Yildiz; Brendan Mullen; Keith Jarvi; Colin McKerlie; Kirk C Lo
Journal:  Cryobiology       Date:  2013-05-28       Impact factor: 2.487

6.  The effects of cooling rates and type of freezing extenders on cryosurvival of rat sperm.

Authors:  Omer Varisli; Hollie Scott; Cansu Agca; Yuksel Agca
Journal:  Cryobiology       Date:  2013-05-30       Impact factor: 2.487

7.  Effect of chilling on the motility and acrosomal integrity of rat sperm in the presence of various extenders.

Authors:  Omer Varisli; Cevdet Uguz; Cansu Agca; Yuksel Agca
Journal:  J Am Assoc Lab Anim Sci       Date:  2009-09       Impact factor: 1.232

8.  Sperm freezing and in vitro fertilization in three substrains of C57BL/6 mice.

Authors:  Ling Liu; Lauryl M J Nutter; Napoleon Law; Colin McKerlie
Journal:  J Am Assoc Lab Anim Sci       Date:  2009-01       Impact factor: 1.232

9.  Assessment of three generations of mice derived by ICSI using freeze-dried sperm.

Authors:  Ming-Wen Li; Brandon J Willis; Stephen M Griffey; Jimmy L Spearow; K C Kent Lloyd
Journal:  Zygote       Date:  2009-05-06       Impact factor: 1.442

10.  Cryopreservation Protocols for Genetically Engineered Mice.

Authors:  Glenn Longenecker; Kyoungin Cho; Jaspal S Khillan; Ashok B Kulkarni
Journal:  Curr Protoc       Date:  2021-05
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