Reduced MHC alloimmunization and partial tolerance protection with pathogen reduction of whole blood
Rachael P Jackman1, Marcus O Muench1,2, Heather Inglis1
1Blood Systems Research Institute.
Background:
Allogeneic blood transfusion can result in an immune response against major histocompatibility complex (MHC) antigens, potentially complicating future transfusions or transplants. We previously demonstrated that pathogen reduction of platelet-rich plasma (PRP) with riboflavin and ultraviolet light (UV+R) can prevent alloimmunization in mice. A similar pathogen-reduction treatment is currently under development for the treatment of whole blood using riboflavin and a higher dose of UV light. We sought to determine the effectiveness of this treatment in the prevention of alloimmunization.
Study Design And Methods:
BALB/cJ mice were transfused with untreated or UV+R-treated, allogeneic C57Bl/6J whole blood with or without leukoreduction. Mice were evaluated for donor-specific antibodies, ex vivo splenocyte cytokine responses, and changes in the frequency of regulatory T (Treg ) cells.
Results:
UV+R treatment blocked cytokine priming and reduced anti-MHC alloantibody responses to transfused whole blood. Leukoreduction reduced alloantibody levels in both the untreated and UV+R-treated groups. Mice transfused with UV+R-treated whole blood had reduced alloantibody and cytokine responses when subsequently transfused with untreated blood from the same donor type. This reduction in responses was not associated with increased Treg cells.
Conclusions:
Pathogen reduction of whole blood with UV+R significantly reduces, but does not eliminate, the alloimmune response. Exposure to UV+R-treated whole blood transfusion does appear to induce tolerance to alloantigens, resulting in reduced anti-MHC alloantibody and cytokine responses to subsequent exposures to the same alloantigens. This tolerance does not appear to be driven by an increase in Treg cells.
Insights
Pathogen reduction of whole blood using UV+R treatment lessens immune responses to transfusions. This treatment may induce tolerance, reducing future alloantibody and cytokine reactions without increasing regulatory T cells.
Area of Science:
- Immunology
- Transfusion Medicine
- Biotechnology
Background:
- Allogeneic blood transfusions can trigger immune responses against major histocompatibility complex (MHC) antigens.
- This immune response may complicate future transfusions or transplants.
- Pathogen reduction using riboflavin and ultraviolet light (UV+R) is a novel approach to mitigate these risks.
Purpose of the Study:
- To evaluate the effectiveness of a whole blood pathogen reduction treatment (UV+R) in preventing alloimmunization.
- To determine if UV+R treatment induces tolerance to alloantigens.
Main Methods:
- BALB/cJ mice received untreated or UV+R-treated allogeneic whole blood transfusions.
- Leukoreduction was also assessed.
- Mice were monitored for donor-specific antibodies, splenocyte cytokine responses, and regulatory T (Treg) cell frequency.
Main Results:
- UV+R treatment significantly reduced anti-MHC alloantibody and cytokine responses.
- Leukoreduction further decreased alloantibody levels.
- Mice transfused with UV+R-treated blood showed reduced responses upon subsequent transfusion with untreated blood, indicating tolerance induction.
- This tolerance was not linked to increased Treg cells.
Conclusions:
- Pathogen reduction of whole blood with UV+R partially reduces alloimmune responses but does not eliminate them.
- Exposure to UV+R-treated whole blood appears to induce alloantigen tolerance.
- The observed tolerance is not mediated by an increase in regulatory T cells.
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