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1.
Am J Transplant ; 16(12): 3416-3429, 2016 12.
Article in English | MEDLINE | ID: mdl-27172087

ABSTRACT

Pretransplant autoantibodies to LG3 and angiotensin II type 1 receptors (AT1R) are associated with acute rejection in kidney transplant recipients, whereas antivimentin autoantibodies participate in heart transplant rejection. Ischemia-reperfusion injury (IRI) can modify self-antigenic targets. We hypothesized that ischemia-reperfusion creates permissive conditions for autoantibodies to interact with their antigenic targets and leads to enhanced renal damage and dysfunction. In 172 kidney transplant recipients, we found that pretransplant anti-LG3 antibodies were associated with an increased risk of delayed graft function (DGF). Pretransplant anti-LG3 antibodies are inversely associated with graft function at 1 year after transplantation in patients who experienced DGF, independent of rejection. Pretransplant anti-AT1R and antivimentin were not associated with DGF or its functional outcome. In a model of renal IRI in mice, passive transfer of anti-LG3 IgG led to enhanced dysfunction and microvascular injury compared with passive transfer with control IgG. Passive transfer of anti-LG3 antibodies also favored intrarenal microvascular complement activation, microvascular rarefaction and fibrosis after IRI. Our results suggest that anti-LG3 antibodies are novel aggravating factors for renal IRI. These results provide novel insights into the pathways that modulate the severity of renal injury at the time of transplantation and their impact on long-term outcomes.


Subject(s)
Autoantibodies/blood , Delayed Graft Function/etiology , Graft Survival/immunology , Heparan Sulfate Proteoglycans/immunology , Kidney Transplantation/adverse effects , Reperfusion Injury/etiology , Animals , Autoantibodies/immunology , Delayed Graft Function/blood , Delayed Graft Function/pathology , Female , Follow-Up Studies , Glomerular Filtration Rate , Humans , Kidney Failure, Chronic/surgery , Kidney Function Tests , Male , Mice , Mice, Inbred C57BL , Middle Aged , Prognosis , Reperfusion Injury/blood , Reperfusion Injury/pathology , Retrospective Studies , Risk Factors
2.
Am J Transplant ; 15(5): 1205-18, 2015 May.
Article in English | MEDLINE | ID: mdl-25808553

ABSTRACT

Transplant vasculopathy is associated with neointimal accumulation of recipient-derived mesenchymal stem cells. Increased circulating levels of LG3, a C-terminal fragment of perlecan, were found in renal transplant patients with vascular rejection. Here, we evaluated whether LG3 regulates the migration and homing of mesenchymal stem cells and the accumulation of recipient-derived neointimal cells. Mice were transplanted with a fully-MHC mismatched aortic graft followed by intravenous injection of recombinant LG3. LG3 injections increased neointimal accumulation of α-smooth muscle actin positive cells. When green fluorescent protein (GFP)-transgenic mice were used as recipients, LG3 injection favored accumulation of GFP+ cells to sites of neointima formation. LG3 increased horizontal migration and transmigration of mouse and human MSC in vitro and led to increased ERK1/2 phosphorylation. Neutralizing ß1 integrin antibodies or use of mesenchymal stem cells from α2 integrin-/- mice decreased migration in response to recombinant LG3. Reduced intima-media ratios and decreased numbers of neointimal cells showing ERK1/2 phosphorylation were found in α2-/- recipients injected with recombinant LG3. Collectively, our results suggest that LG3, through interactions with α2ß1 integrins on recipient-derived cells leading to activation of ERK1/2 and increased migration, favors myointimal thickening.


Subject(s)
Graft Rejection/pathology , Heparan Sulfate Proteoglycans/chemistry , Integrin alpha2beta1/metabolism , Mesenchymal Stem Cells/cytology , Neointima/pathology , Vascular Grafting , Animals , Aorta/pathology , Aorta/transplantation , Blood Vessel Prosthesis , Carotid Intima-Media Thickness , Cell Movement , Extracellular Signal-Regulated MAP Kinases/metabolism , Green Fluorescent Proteins/metabolism , Humans , Integrin beta1/metabolism , Mice , Mice, Inbred C57BL , Mice, Transgenic , Microscopy, Confocal , Myocytes, Smooth Muscle/cytology , Phenotype , Protein Structure, Tertiary , Rats , Recombinant Proteins/metabolism
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