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Isolation and In Vitro Culture of Murine and Human Alveolar Macrophages
Published on: April 20, 2018
Prolonged function of macrophage, von Willebrand factor-deficient porcine pulmonary xenografts
1Department of Surgery, Duke University Medical Center, Durham, North Carolina 27710, USA. cantu001@mc.duke.edu
Abstract:
Porcine von Willebrand factor (vWF) activates human and primate platelets. Having determined the importance of pulmonary intravascular macrophages (PIMs) in pulmonary xenotransplantation, we evaluated whether, in the absence of PIMs, vWF might play a role in pulmonary xenograft dysfunction. Utilizing a left single-lung transplant model, baboons depleted of anti-alphaGal antibodies received lungs from either vWF-deficient (n = 2); MCP-expressing (n = 5); MCP PIM-depleted (n = 5); or vWF-deficient PIM-depleted swine (n = 3). Two out of three of the PIM-depleted, pvWF deficient grafts survived longer than any previously reported pulmonary xenografts, including PIM-depleted xenografts expressing human complement regulatory proteins. Depletion of PIM's from vWF-deficient lungs, like depletion of PIM's from hMCP lungs, resulted in abrogation of the coagulopathy associated with pulmonary xenotransplantation. Thus, in terms of pulmonary graft survival, control of adverse reactions involving pvWF appears to be equally or even more important than is complement regulation using hMCP expression. However, based on the rapid failure of PIM-sufficient, pvWF-deficient pulmonary xenografts, pVWF-deficient pulmonary xenografts appear to be particularly sensitive to macrophage-mediated damage. These data provide initial evidence that vWF plays a role in the 'delayed' (24 h) dysfunction observed in pulmonary xenotransplantation using PIM depleted hMCP organs.
Insights
Porcine von Willebrand factor (vWF) plays a critical role in lung xenotransplantation outcomes. Controlling vWF-related reactions is crucial for graft survival, potentially more so than complement regulation, especially in PIM-depleted lungs.
Area of Science:
- Xenotransplantation Immunology
- Vascular Biology
- Transplant Pathology
Background:
- Pulmonary intravascular macrophages (PIMs) are critical in lung xenotransplantation.
- Porcine von Willebrand factor (vWF) activates human platelets.
- The role of vWF in PIM-independent xenograft dysfunction is unclear.
Purpose of the Study:
- To investigate the role of porcine vWF in pulmonary xenograft dysfunction in the absence of PIMs.
- To compare the efficacy of vWF deficiency versus complement regulation in improving xenograft survival.
Main Methods:
- Left single-lung transplant model in baboons.
- Utilized vWF-deficient and PIM-depleted swine lungs.
- Assessed graft survival and coagulopathy.
Main Results:
- PIM-depleted, vWF-deficient xenografts showed prolonged survival, outperforming previous models.
- Depletion of PIMs from vWF-deficient lungs abrogated coagulopathy.
- vWF-deficient lungs were sensitive to macrophage-mediated damage when PIMs were present.
Conclusions:
- Controlling porcine vWF adverse reactions is vital for pulmonary xenograft survival, potentially exceeding the importance of complement regulation.
- vWF plays a role in delayed pulmonary xenotransplantation dysfunction.
- Macrophage-mediated damage is a significant factor in vWF-deficient xenografts.

