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Updated: Nov 26, 2025

Co-transplantation of Human Ovarian Tissue with Engineered Endothelial Cells: A Cell-based Strategy Combining Accelerated Perfusion with Direct Paracrine Delivery
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Ovarian tissue transportation: a systematic review.

Janice de Miranda Vasconcellos Vilela1, Marie-Madeleine Dolmans2, Christiani Andrade Amorim1

  • 1Pôle de Recherche en Gynécologie, Institut de Recherche Expérimentale et Clinique, Université Catholique de Louvain, Brussels, Belgium.

Reproductive Biomedicine Online
|December 8, 2020
PubMed
Summary

Ovarian tissue transport for fertility preservation is becoming common but lacks human data. Reviewing over 40 animal studies provides insights into optimizing this procedure for future human applications.

Keywords:
Assisted reproductionOrgan preservationOvarian tissue procurementOvarian tissue transportOvaryTemperature

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Area of Science:

  • Reproductive Science
  • Cryobiology
  • Veterinary Medicine

Background:

  • Fertility preservation through ovarian tissue transport is gaining traction globally.
  • Current practices rely on empirical data, lacking standardized protocols for human application.
  • High costs and bureaucracy associated with ovarian tissue cryobanks drive interest in alternative transport methods.

Purpose of the Study:

  • To critically evaluate the existing knowledge on ovarian tissue transport.
  • To explore patterns and insights from animal models to inform human applications.
  • To stimulate discussion and guide future research in human ovarian tissue transportation.

Main Methods:

  • Comprehensive literature review of over 40 studies on ovarian tissue transport in various animal models.
  • Analysis of findings across different animal models to identify common patterns and successful strategies.
  • Comparative assessment of animal model data in the context of human ovarian tissue transport.

Main Results:

  • Animal models demonstrate varying success rates in ovarian tissue viability and function post-transport.
  • Specific transport conditions (e.g., temperature, medium) show differential impacts across species.
  • Identified patterns suggest potential strategies for improving human ovarian tissue transport protocols.

Conclusions:

  • Animal studies offer valuable insights into the physiological responses of ovarian tissue during transport.
  • Further research is needed to translate findings from animal models to human applications.
  • Establishing evidence-based guidelines for human ovarian tissue transport is crucial for safe and effective fertility preservation.