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Updated: Dec 30, 2025

Quantification of Circulating Pig-Specific DNA in the Blood of a Xenotransplantation Model
Published on: September 22, 2020
Xenotransplantation literature update, November/December 2019
Adwin Thomas1, Wayne J Hawthorne1,2, Christopher Burlak3
1The Centre for Transplant & Renal Research, The Westmead Institute for Medical Research, Westmead, NSW, Australia.
Abstract:
The ever-increasing disparity between the lack of organ donors and patients on the transplant waiting list is increasing worldwide. For the past several decades xenotransplantation has led the way to correct this deficit and remains clearly the only feasible option to provide a means to meet the demand for patients in need of an organ transplant. Xenotransplantation's ability to provide a specifically designed unlimited supply of organs, suited to treat the various needs for transplant organs and cells, has recently been championed by successful pre-clinical trials that have run long-term in non-human primate studies. In this review we show how these improvements have come about due to long-term dedicated research and recent advances in biomedical engineering technology, such as genome editing tools including zinc finger nucleases, TALEN, and CRISPER/Cas9 which have paved the way for significant breakthroughs in improving xenograft outcomes through genetic modifications to the donor source pig. Other novel approaches include the development of decellularized porcine tissue, such as corneas which can now be transplanted into patients with the minimal need for immunosuppression or other side effects. Further genetic variants of the porcine genome are also now being optimized to abrogate rejection. The emergence of new modalities such as; mesenchymal stem cells, donor thymic vascularization, in vivo bioreactors, chemokine and cytokine therapies have come to show improvements in xenograft outcomes. Furthermore, new studies confirm the safety status of using porcine xenografts, verifying that with current technologies and approaches, the issue of PERV transmission is a moot point. These breakthroughs and technological advancements push the reality of xenotransplantation one step closer to the clinic.
Insights
Xenotransplantation offers a viable solution to the organ donor shortage, with advancements in genetic engineering and novel approaches significantly improving outcomes and safety. Porcine xenografts are moving closer to clinical application, addressing the critical need for transplant organs.
Area of Science:
- Transplantation Biology
- Biomedical Engineering
- Immunology
Background:
- Global organ donor shortage necessitates alternative solutions for transplantation.
- Xenotransplantation, using animal organs, is a promising strategy to meet transplant demand.
- Recent pre-clinical trials in non-human primates demonstrate xenotransplantation feasibility.
Purpose of the Study:
- To review advancements in xenotransplantation driven by biomedical engineering and genetic modification.
- To highlight novel approaches improving xenograft outcomes and patient safety.
- To assess the current status and future potential of xenotransplantation in clinical settings.
Main Methods:
- Genetic modification of donor pigs using tools like CRISPR/Cas9, zinc finger nucleases, and TALENs.
- Development of decellularized porcine tissues (e.g., corneas) for transplantation.
- Exploration of novel therapeutic strategies including stem cells, thymic vascularization, and cytokine therapies.
Main Results:
- Significant improvements in xenograft survival and reduced rejection through genetic engineering.
- Successful transplantation of decellularized tissues with minimal side effects.
- Confirmation of the safety of porcine xenografts, with PERV transmission being a resolved issue.
Conclusions:
- Technological advancements are rapidly advancing xenotransplantation towards clinical reality.
- Genetic modifications and novel therapies are key to overcoming immunological barriers.
- Xenotransplantation holds significant potential to alleviate the global organ shortage crisis.
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