Aseptic technology of vitrification of human pronuclear oocytes using open-pulled straws

被引:61
作者
Isachenko, V
Montag, M
Isachenko, E
Zaeva, V
Krivokharchenko, I
Shafei, R
van der Ven, H
机构
[1] Univ Bonn, Dept Gynaecol Endocrinol & Reprod Med, D-53105 Bonn, Germany
[2] Gynaecol Clin Ma Ma, Moscow, Russia
关键词
aseptic application; microbial contamination; oocytes; open-pulled straw; vitrification;
D O I
10.1093/humrep/deh605
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
Background: The aim of this study was to compare the viability of human pronuclear oocytes subjected to vitrification using cooling by direct submerging of open-pulled straws in liquid nitrogen versus vitrification by cooling of open-pulled straws located inside a closed 0.5 ml straw (aseptic system). Methods: Two- and three-pronuclei stage oocytes (n=114) were cryopreserved in super-open-pulled straws by vitrification in 20% ethylene glycol +20% dimethylsulphoxide (DMSO) + osmotic active and neutral non-permeable cryoprotectants with a four-step exposure in 20, 33, 50 and 100% vitrification solution for 2, 1 and 1 min, and 30-50 s, respectively at room temperature, and plunging into liquid nitrogen. Oocytes of group 1 (n=42) were rapidly cooled at a speed of 20 000degreesC/min by direct plunging of open-pulled straws into liquid nitrogen. Oocytes of group 2 (n=44) were first located in 0.5 ml straws, which were closed at both sides by metal balls, and then plunged into liquid nitrogen. This method resulted in a cooling speed of 200degreesC/min. For both groups, oocytes were thawed rapidly at a speed of 20 000degreesC/min using an identical protocol. Oocytes subsequently were expelled into a graded series of sucrose solutions (1.0, 0.75, 0.5, 0.25 and 0.12 mol/l) at 2.5 min intervals. Results: Oocyte development up to expanded blastocyst stage after in vitro culture was 15% in group 1, 14% in group 2 and 29% in an untreated control group. Conclusion: The deposition of human pronuclear oocytes in open-pulled straws which are placed inside a hermetically closed container guarantees a complete isolation of oocytes from liquid nitrogen and avoids potential contamination by pathogenic microorganisms. The combination of direct plunging of this container into liquid nitrogen and rapid warming makes this process as efficient as conventional vitrification.
引用
收藏
页码:492 / 496
页数:5
相关论文
共 55 条
[1]   Viral contamination of embryos cryopreserved in liquid nitrogen [J].
Bielanski, A ;
Nadin-Davis, S ;
Sapp, T ;
Lutze-Wallace, C .
CRYOBIOLOGY, 2000, 40 (02) :110-116
[2]   Microbial contamination of embryos and semen during long term banking in liquid nitrogen [J].
Bielanski, A ;
Bergeron, H ;
Lau, PCK ;
Devenish, J .
CRYOBIOLOGY, 2003, 46 (02) :146-152
[3]   TRANSMISSION OF PAPOVAVIRUS BY CRYOTHERAPY APPLICATOR [J].
CHARLES, CR ;
SIRE, DJ .
JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1971, 218 (09) :1435-&
[4]   Experimental vitrification of human compacted morulae and early blastocysts using fine diameter plastic micropipettes [J].
Cremades, N ;
Sousa, M ;
Silva, J ;
Viana, P ;
Sousa, S ;
Oliveira, C ;
da Silva, JT ;
Barros, A .
HUMAN REPRODUCTION, 2004, 19 (02) :300-305
[5]  
DARVELID U, 1994, ACTA VET SCAND, V35, P417
[6]   High developmental rates of vitrified bovine oocytes following parthenogenetic activation, in vitro fertilization, and somatic cell nuclear transfer [J].
Dinnyés, A ;
Dai, YP ;
Jiang, S ;
Yang, XZ .
BIOLOGY OF REPRODUCTION, 2000, 63 (02) :513-518
[7]   EFFECT OF GENOTYPE ON THE EFFICIENCY OF MOUSE EMBRYO CRYOPRESERVATION BY VITRIFICATION OR SLOW FREEZING METHODS [J].
DINNYES, A ;
WALLACE, GA ;
RALL, WF .
MOLECULAR REPRODUCTION AND DEVELOPMENT, 1995, 40 (04) :429-435
[8]   Vitrification of in vitro produced bovine blastocysts: methodological studies and developmental capacity [J].
Donnay, I ;
Auquier, P ;
Kaidi, S ;
Carolan, C ;
Lonergan, P ;
Mermillod, P .
ANIMAL REPRODUCTION SCIENCE, 1998, 52 (02) :93-104
[9]  
FOUNTAIN D, 1997, TRANSFUSION, V37, P587
[10]   Development of serum-free media for the culture and transfer of human blastocysts [J].
Gardner, DK .
HUMAN REPRODUCTION, 1998, 13 :218-225