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Efficient Vascularization of Kidney Organoids through Intracelomic Transplantation in Chicken Embryos
Published on: February 17, 2023
Vitrification of kidney precursors as a new source for organ transplantation
Francisco Marco-Jiménez1, Ximo Garcia-Dominguez1, Estrella Jimenez-Trigos1
1Instituto de Ciencia y Tecnología Animal, Universitat Politècnica de València, 46022 Valencia, Spain.
Abstract:
Kidney transplantation from deceased or living human donors has been limited by donor availability as opposed to the increasing demand, and by the risk of allograft loss rejection and immunosuppressive therapy toxicity. In recent years, xenotransplantation of developed kidney precursor cells has offered a novel solution for the unlimited supply of human donor organs. Specifically, transplantation of kidney precursors in adult hosts showed that intact embryonic kidneys underwent maturation, exhibiting functional properties, and averted humoural rejection post-transplantation from non-immunosuppressed hosts. Even if supply and demand could be balanced using xenotransplants or lab-grown organs from regenerative medicine, the future of these treatments would still be compromised by the ability to physically distribute the organs to patients in need and to produce these products in a way that allows adequate inventory control and quality assurance. Kidney precursors originating from fifteen-day old rabbit embryos were vitrified using Cryotop® as a device and VM3 as vitrification solution. After 3 months of storage in liquid nitrogen, 18 kidney precursors were transplanted into non-immunosuppressed adult hosts by laparoscopy surgery. Twenty-one days after allotransplantation, 9 new kidneys were recovered. All the new kidneys recovered exhibited significant growth and mature glomeruli. Having achieved these encouraging results, we report, for the first time, that it is possible to create a long-term biobank of kidney precursors as an unlimited source of organs for transplantation, facilitating the inventory control and distribution of organs.
Insights
Researchers created a long-term biobank of kidney precursors from rabbit embryos. This breakthrough offers an unlimited source for kidney transplantation, addressing donor shortages and improving organ distribution.
Area of Science:
- Regenerative Medicine
- Xenotransplantation
- Biobanking
Background:
- Human kidney transplantation faces donor scarcity and risks of rejection and immunosuppression toxicity.
- Xenotransplantation using kidney precursor cells presents a potential solution for unlimited organ supply.
- Previous studies showed embryonic kidney precursors mature into functional organs in adult hosts, avoiding rejection without immunosuppression.
Purpose of the Study:
- To establish a long-term biobank of kidney precursors for transplantation.
- To assess the viability and functionality of vitrified kidney precursors after cryopreservation.
- To demonstrate the feasibility of creating an unlimited organ source through biobanking.
Main Methods:
- Kidney precursors from 15-day-old rabbit embryos were vitrified using Cryotop® and VM3 solution.
- Vitrified precursors were stored in liquid nitrogen for 3 months.
- 18 vitrified kidney precursors were transplanted into non-immunosuppressed adult hosts via laparoscopy.
Main Results:
- Nine new kidneys were recovered 21 days post-transplantation.
- All recovered kidneys showed significant growth and mature glomeruli.
- Demonstrated successful cryopreservation and transplantation of functional kidney precursors.
Conclusions:
- A long-term biobank of kidney precursors is feasible, providing an unlimited source for transplantation.
- This approach facilitates organ inventory control and distribution, overcoming logistical challenges.
- Vitrification and cryopreservation of kidney precursors offer a promising strategy for future organ replacement therapies.
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Kidney Transplant I: Introduction
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