Re-vascularisation in human ovarian tissue after conventional freezing or vitrification and xenotransplantation

被引:67
|
作者
Rahimi, Gohar [2 ]
Isachenko, Vladimir [1 ]
Kreienberg, Rolf [1 ]
Sauer, Heinrich [3 ]
Todorov, Plamen [4 ]
Tawadros, Samir [5 ]
Mallmann, Peter [2 ]
Nawroth, Frank [6 ]
Isachenko, Evgenia [1 ]
机构
[1] Univ Ulm, Sect Gynaecol Endocrinol & Reprod Med, D-89075 Ulm, Germany
[2] Univ Cologne, Dept Obstet & Gynaecol, D-5000 Cologne 41, Germany
[3] Univ Giessen, Dept Physiol, D-35390 Giessen, Germany
[4] Bulgarian Acad Sci, Inst Biol & Immunol Reprod, BU-1113 Sofia, Bulgaria
[5] Univ Cologne, Dept Internal Med, D-5000 Cologne 41, Germany
[6] Ctr Hormone & Metab Dis Reprod Med & Gynaecol End, Hamburg, Germany
关键词
Angiogenesis; Human ovarian tissue; Slow freezing; Transplantation; Vitrification; LOW-TEMPERATURE STORAGE; SCID MICE; TRANSPLANTATION; CRYOPRESERVATION; ANGIOGENESIS; AUTOTRANSPLANTATION; REPRODUCTION; AUTOGRAFTS; FOLLICLES; CORTEX;
D O I
10.1016/j.ejogrb.2009.11.015
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
Objective: In ovarian tissue grafts there is a massive loss of follicles during the ischaemic period until revascularisation is established. The aim of our study was to investigate the influence of different cryopreservation techniques on the ability for the re-vascularisation of ovarian tissue transplanted to SCID mice. Study design: Ovarian fragments from five patients were cut into pieces (similar to 0.5 mm x 1.0 mm x 1.0 mm) and randomly distributed into three groups: fresh non-treated tissue (group A); tissue conventionally frozen in standard 0.5 ml insemination straws with 1.5 Methyleneglycol + 0.1 M sucrose, with thawing in a 40 degrees C water bath and step-wise removal of cryoprotectants at room temperature in 0.5 M, 0.25 M and 0.15 M sucrose with gentle agitation (group B); tissue vitrified in 2.62 M dimethylsulphoxide + 2.6 M acetamide + 1.31 M propylene glycol + 0.0075 M polyethylene glycol, with warming by direct plunging of solid specimens with ovarian pieces into 20 ml of 50% vitrification Solution pre-warmed to 40 degrees C and dilution of cryoprotectants in a decreasing concentration of vitrification solution (25%, 12.5%) at room temperature (group Q. We used a xenograft model in which ovarian tissue pieces of all three groups were subcutaneously transplanted in SCID mice. The animals were sacrificed on the third day after ovarian tissue transplantation and then weekly during I month to obtain the ovarian tissue grafts. These samples were examined by immunohistochemical staining with the endothelial cell-specific marker platelet endothelial cell adhesion molecule-1 (PECAM-1) to determine angiogenesis. Histological observation of tissue after explantation was performed and quality and quantity of follicles were assessed. Results: No PECAM-1 staining was observed in all treatment groups prior to grafting. After warming and in vivo culture of ovarian tissue, the beginning of angiogenesis in pieces from all treatment groups on the third day was detected by PECAM-1 staining. After 4 weeks of in vivo culture the overall area of PECAM-1-positive blood vessels significantly increased (P < 0.05), independent of the type of cryopreservation (groups B and C vs. group A). It was found that transplantation technique had negative influence on the integrity of follicles independent of the type of treatment during in vivo culture. The duration of in vivo culture has a negative, but not statistically significant, influence on follicle quality in long-cultured transplants inside each treatment group (P > 0.5). Conclusion: The process of re-vascularisation of transplanted ovarian tissue is independent of the type of treatment and does not influence follicle quality. (C) 2009 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:63 / 67
页数:5
相关论文
共 50 条
  • [21] Cryopreservation of human ovarian tissue: Comparison of novel direct cover vitrification and conventional vitrification
    Zhou, Xin-Hui
    Wu, Yi-Jun
    Shi, Jin
    Xia, Ya-xian
    Zheng, Shu-Sen
    CRYOBIOLOGY, 2010, 60 (02) : 101 - 105
  • [22] Methods of Ovarian Tissue Cryopreservation: Is Vitrification Superior to Slow Freezing?—Ovarian Tissue Freezing Methods
    Marisa Kometas
    Gregory M Christman
    Joseph Kramer
    Alice Rhoton-Vlasak
    Reproductive Sciences, 2021, 28 : 3291 - 3302
  • [23] Methods of Ovarian Tissue Cryopreservation: Is Vitrification Superior to Slow Freezing?-Ovarian Tissue Freezing Methods
    Kometas, Marisa
    Christman, Gregory M.
    Kramer, Joseph
    Rhoton-Vlasak, Alice
    REPRODUCTIVE SCIENCES, 2021, 28 (12) : 3291 - 3302
  • [24] Impact of freezing and thawing of human ovarian tissue on follicular growth after long-term xenotransplantation
    Christiani A. Amorim
    Anu David
    Marie-Madeleine Dolmans
    Alessandra Camboni
    Jacques Donnez
    Anne Van Langendonckt
    Journal of Assisted Reproduction and Genetics, 2011, 28 : 1157 - 1165
  • [25] Impact of freezing and thawing of human ovarian tissue on follicular growth after long-term xenotransplantation
    Amorim, Christiani A.
    David, Anu
    Dolmans, Marie-Madeleine
    Camboni, Alessandra
    Donnez, Jacques
    Van Langendonckt, Anne
    JOURNAL OF ASSISTED REPRODUCTION AND GENETICS, 2011, 28 (12) : 1157 - 1165
  • [26] Human single follicle growth in vitro from cryopreserved ovarian tissue after slow freezing or vitrification
    Wang, Tian-ren
    Yan, Jie
    Lu, Cui-ling
    Xia, Xi
    Yin, Tai-lang
    Zhi, Xu
    Zhu, Xiao-hui
    Ding, Ting
    Hu, Wei-hong
    Guo, Hong-yan
    Li, Rong
    Yan, Li-ying
    Qiao, Jie
    HUMAN REPRODUCTION, 2016, 31 (04) : 763 - 773
  • [27] Vitrification versus controlled-rate freezing in cryopreservation of human ovarian tissue
    Keros, Victoria
    Xella, Susanna
    Hultenby, Kjell
    Pettersson, Karin
    Sheikhi, Maryam
    Volpe, Annibale
    Hreinsson, Julius
    Hovatta, Outi
    HUMAN REPRODUCTION, 2009, 24 (07) : 1670 - 1683
  • [28] Cryopreservation of human ovarian tissue: Comparison of rapid and conventional freezing
    Isachenko, Vladimir
    Isachenko, Evgenia
    Reinsberg, Jochen
    Montag, Markus
    van der Ven, Katrin
    Dorn, Christoph
    Roesing, Benjamin
    van der Ven, Hans
    CRYOBIOLOGY, 2007, 55 (03) : 261 - 268
  • [29] Effect of Elamipretide on the Vitrification of Mouse Ovarian Tissue by Freezing
    Yao, Xingfeng
    Lu, Qingfang
    Wu, Yuyin
    Liu, Juan
    Liu, Niang
    Huang, Xiling
    Xu, Changlong
    BIOPRESERVATION AND BIOBANKING, 2024, 22 (06) : 600 - 608
  • [30] Vitrification may be a promising approach for cryopreservation of human ovarian tissue for auto- and xenotransplantation.
    Kagawa, N.
    Kuwayama, M.
    Silber, S. J.
    Vajta, G.
    Teramoto, S.
    Kato, O.
    FERTILITY AND STERILITY, 2006, 86 : S403 - S403