Keio University · Medicine
Professor Iori Kisu's research lab focuses on advancing uterine transplantation (UTx) through translational non-human primate studies, with a strong emphasis on surgical techniques, hemodynamic optimization, and immunological management. The lab investigates uterine viability under various conditions, including warm ischemia tolerance and vascular anastomosis methods, to improve outcomes in allogeneic and autologous UTx. Their work also explores social and ethical perceptions of UTx among potential recipients, contributing to the broader clinical and societal readiness of the procedure. The lab plays a pivotal role in establishing foundational data necessary for the eventual human application of UTx.
Figures are computed from collected data and may differ slightly.
Allogeneic UTx in the cynomolgus monkeys resulted in temporary recovery of menstruation with three immunosuppressants and uterine atrophy with two immunosuppressants. This preliminary experience suggests that recovery of uterine function after allogeneic UTx in non-human primates is possible but more experiments are required.
This is the preliminary report of uterine auto-transplantation in cynomolgus monkeys. This study demonstrates the feasibility of uterine auto-transplantation by using new surgical technique in cynomolgus monkeys. Accumulation of basic experimental data in non-human primates is required prior to performing the procedure in humans.
Background: Uterine blood flow is an important factor in uterine viability, but the number of blood vessels required to maintain viability is uncertain. In this study, indocyanine green (ICG) fluorescence imaging was used to examine uterine hemodynamics and vessels associated with uterine blood flow in cynomolgus macaque.
Our results suggest that many Japanese women of reproductive age feel that UTx is socially and individually acceptable, but that concerns requiring further discussion remain among these women. There was also a tendency for UTx to be viewed more favorably than gestational surrogacy.
The procedure using the ovarian vein was less invasive than that using the deep uterine vein in mimicking living-donor surgery in a cynomolgus monkey model of uterus transplantation.
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The uterus of the cynomolgus monkey tolerates warm ischemia for up to 4 h.
This study was supported by the Japan Society for the Promotion of Science (JSPS) KAKENHI Grant Number 26713050. None of the authors has a conflict of interest to declare.
In assessment of MI, the accuracy of frozen sections was significantly higher than that of MRI. Since the diagnostic characteristics differ between two methods, additional intraoperative frozen sections are recommended for more accurate assessment of MI when MRI is negative for the presence of any MI or positive for the presence of deep invasion.
Uterus transplantation (UTx) is now a possible approach for women with absolute uterine factor infertility to deliver a child, following the first successful delivery by Brännström et al. in Sweden in September 2014. This remarkable achievement attracted major attention worldwide and caused many countries to prepare for UTx, including countries in Asia. To date, three groups have performed UTx in humans in Asia, and many others are aiming for the clinical application of UTx with accumulation of
Delivery following uterus transplantation (UTx)-an approach for treating uterine factor infertility-has not been reported in nonhuman primate models. Here, six female major histocompatibility complex (MHC)-defined cynomolgus macaques that underwent allogeneic UTx were evaluated. Antithymocyte globulin and rituximab were administered to induce immunosuppression and a triple maintenance regimen was used. Menstruation resumed in all animals with long-term survival, except one, which was euthanized
Uterus transplantation (UTx) is now a potential option for women with uterine factor infertility to have a child. However, UTx is still in an experimental stage and basic animal studies including in nonhuman primates are needed for accumulation of data that will provide important information for establishment of UTx in humans. Herein, we summarized our experiences using cynomolgus macaques, with the goal of promoting further development of UTx studies in nonhuman primates. Our basic studies usin
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