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Transplantation of Bioengineered Lung Using Decellularized Mouse Lungs and Primary Human Endothelial Cells
Published on: March 28, 2025
Recent developments in drug delivery to prolong allograft survival in lung transplant patients
Alan B Watts1, Robert O Williams, Jay I Peters
1Division of Pharmaceutics, College of Pharmacy, University of Texas at Austin, Austin, TX, USA.
Abstract:
Since the discovery of cyclosporine in 1971, calcineurin inhibitors have played a critical role in the therapeutic suppression of the immune response. Patients receiving solid organ transplants rely heavily on these medications to prevent the acute and chronic rejection of allografted tissue. These therapies can prove difficult because of potential toxicity, heightened risk of invasive infection, and erratic oral bioavailability, requiring frequent blood samples for monitoring of systemic levels. Added challenges are presented in immunosuppression of lung transplant patients owing to the increased susceptibility to invasive infection and extensive immune mechanisms inherent in lung tissue. With the introduction of tacrolimus, a more potent calcineurin inhibitor, clinical outcomes of transplants have continued to improve; however, little improvement has been noted in lung transplantation. While very effective upon arrival at the site of action, tacrolimus and cyclosporine present a variety of formulation challenges such as poor solubility, potential systemic toxicity, and extensive first pass metabolism. Initial attempts to improve solubility in both oral and intravenous formulations have resulted in variable drug absorption and increased systemic toxicity, respectfully, creating a need for formulation improvement. Through alternative routes of delivery and novel formulation techniques, researchers have addressed these issues and, in some cases, demonstrated improved clinical outcomes. Through enhanced solubilization, reduction in absorption variability, and more effective drug targeting with reduced systemic levels, improvements in outcomes and overall patient survival in lung and other solid organ transplantation can be expected.
Insights
Calcineurin inhibitors like cyclosporine and tacrolimus are vital for organ transplant patients but face formulation challenges. Novel delivery methods and formulations are improving drug efficacy and patient survival in transplantation.
Area of Science:
- Immunology
- Pharmacology
- Transplantation Medicine
Background:
- Calcineurin inhibitors (e.g., cyclosporine, tacrolimus) are essential for preventing transplant rejection.
- Current formulations present challenges including poor solubility, toxicity, and variable bioavailability.
- Lung transplant immunosuppression is particularly complex due to infection risks and lung-specific immune responses.
Purpose of the Study:
- To review the limitations of existing calcineurin inhibitor formulations.
- To explore novel formulation strategies and alternative delivery routes for improved immunosuppression.
- To assess the potential impact of these advancements on transplant outcomes, especially in lung transplantation.
Main Methods:
- Literature review of calcineurin inhibitors in transplantation.
- Analysis of formulation challenges and solutions for oral and intravenous drug delivery.
- Evaluation of research on alternative delivery routes and novel formulation techniques.
Main Results:
- Tacrolimus and cyclosporine exhibit poor solubility, first-pass metabolism, and systemic toxicity.
- Previous formulation improvements yielded variable absorption and increased toxicity.
- Emerging strategies focus on enhanced solubilization, targeted delivery, and reduced systemic exposure.
Conclusions:
- Improved formulations and delivery routes for calcineurin inhibitors are needed to overcome current limitations.
- Novel approaches can enhance drug efficacy, reduce toxicity, and improve patient outcomes.
- Advancements in formulation science hold promise for better survival rates in solid organ and lung transplantation.
