Biomedical subjects
Amy Pope-Harman
Publications and source records attributed to Amy Pope-Harman.
Association of humoral immunity and bronchiolitis obliterans syndrome.
Animal studies have shown that blockade of complement may reduce the severity of and/or prevent the development of bronchiolitis obliterans syndrome (BOS), suggesting a role for complement activation. We explored the hypothesis that humoral immunity plays a role in the evolution of BOS. Thirteen unilateral lung transplant patients with BOS defined the patient population. Fresh frozen tissue was analyzed for deposition of C1q, C4d, C5b-9 and immunoglobulin (IgG, IgM, IgA). An indirect immunofluorescent assay was also conducted with patient serum against cytospins of the pulmonary endothelium. In each case the biopsies showed a microvascular injury syndrome involving the bronchial wall characterized by one or more of hemorrhage, fibrin deposition, and endothelial cell necrosis. Other features included bronchial epithelial and chondrocyte necrosis. The end-stage lesion was a thinned bronchial epithelial lining mural fibrosis. Immunofluorescent analysis showed deposition of C1q, C3, C4d, C5b-9, and immunoglobulin in the bronchial epithelium, chondrocytes, basement membrane zone of the bronchial epithelium, and bronchial wall microvasculature. The indirect antiendothelial cell antibody assay was positive in all tested. Humoral immunity may play a role in the pathogenesis of BOS; the antigenic targets include the bronchial wall microvasculature, bronchial epithelium, and chondrocytes.
The role of microvascular injury in the evolution of idiopathic pulmonary fibrosis.
Interstitial lung disease compatible with idiopathic pulmonary fibrosis (IPF) developed in 19 previously healthy patients. Although interstitial and/or honeycomb parenchymal fibrosis was present in all, there were patchy areas of paucicellular septal capillary injury along with corroborative direct immunofluorescent evidence of a humorally mediated microvascular injury syndrome. Significantly elevated factor VIII levels were seen in 17 of 18 patients tested. Antiphospholipids were present in all 18 patients tested, comprising antibodies of phosphatidylethanolamine, beta-2 glycoprotein, phosphatidylcholine, and/or phosphatidylserine. Anti-Ro and/or anti-ribonucleoprotein (RNP) antibodies were seen in 4 patients. Serologic evidence of infection with cytomegalovirus (CMV) was found in 9 patients and parvovirus B19 (B19) in 9 patients; 1 patient was not tested. Molecular studies revealed B19 DNA in 6 of 6 B19-seropositive patients. In situ hybridization studies revealed CMV RNA in pulmonary cells in patients with serologic evidence of active CMV infection despite the absence of cytopathic changes typical of CMV infection. Antiphospholipid antibodies, antiendothelial cell antibodies, and/or endotheliotropic viral infections related to B19 and CMV may be of pathogenetic importance to the evolution of IPF. This report underscores the potential importance of microvascular injury in the evolution of IPF.
Direct and indirect immunofluorescence as a diagnostic adjunct in the interpretation of nonneoplastic medical lung disease.
Fresh open lung biopsy material from 57 patients was incubated with fluoresceinated complement and immunoglobulin antisera. An indirect immunofluorescent assay using neonatal lung as substrate was conducted as well. Direct immunofluorescent patterns could be categorized into interalveolar septal capillary deposition, large vessel wall localization, alveolar basement membrane localization, or a pauci-immune immunofluorescence pattern. With respect to the septal capillary pattern, endothelial cell decoration was seen with scleroderma, mixed connective tissue disease, anti-Ro-associated lupus erythematosus, dermatomyositis, humoral allograft rejection, and patients with isolated pulmonary fibrosis in whom autoantibodies were established, including antiphospholipid antibodies. A similar pattern of endothelial cell staining was seen in these cases via the indirect assay. Granular mural septal capillary deposition was seen in the aforesaid settings along with rheumatoid factor-positive rheumatoid arthritis, type II cryofibrinogenemia, and mixed cryoglobulinemia and, in some cases, light microscopically corresponded to a neutrophilic capillaritis. Isolated vascular IgA corresponded with rheumatoid arthritis corresponding to IgA-specific antiendothelial cell antibodies, celiac disease-associated pulmonary hemorrhage, Schönlein-Henoch purpura and with IgA antiphospholipid antibodies. Alveolar wall deposition was seen with anti-glomerular basement membrane disease.
Humorally mediated posttransplantation septal capillary injury syndrome as a common form of pulmonary allograft rejection: a hypothesis.
BACKGROUND: Cellular immunity is the reputed mechanism of lung allograft failure. Humoral immunity is not a commonly recognized pathway. MATERIAL AND METHODS: We describe 22 patients who developed a posttransplantation septal capillary injury syndrome in the absence of panel-reactive antibodies. Factor VIII levels served as an index of microvascular injury. Routine light microscopic studies were performed in a total of 73 biopsies; 54 biopsy specimens were analyzed for deposition of C1q, C4d, C5b-9, and immunoglobulin (IgG, IgM, and IgA). Indirect immunofluorescent testing to assess for antiendothelial cell antibodies was performed using patient serum and human pulmonary microvascular endothelial cell cultures as substrate. Control samples were based on patients who were clinically well at the time of the biopsy. RESULTS: All presented with a deterioration in respiratory function. All patients had elevated factor VIII levels; the levels were significantly greater compared with pretransplantation baseline values (P =<0.03). The biopsy specimens were remarkable for septal capillary necrosis with significant septal capillary deposition of C1q, C3, C4d, and/or C5b-9 along with immunoglobulin, including IgG, with variable endothelial cell localization. The degree of septal capillary necrosis was significantly less in posttransplantation patients who were clinically doing well ( P<0.0001) as was the degree of C1q, C3, C4d, and C5b-9 ( P<0.05). Indirect antiendothelial cell antibody studies were positive in most patients. Treatment interventions included plasmapheresis, resulting in functional improvement: the postpheresis biopsy specimens showed a reduction in both the degree of septal capillary injury (P <0.0003) and the amount of C1q, C3, C4d, and C5b-9 deposition (P <0.05). CONCLUSIONS: Septal capillary injury accompanied by direct and indirect immunofluorescent evidence of humoral immunity is a frequent finding on transbronchial biopsies. The findings suggest that humoral immunity to endothelial-based alloantigen is a common occurrence in lung grafts and may be a critical factor in chronic graft dysfunction.
Primary anti-phospholipid antibody syndrome caused by isolated anti-phosphatidylethanolamine antibodies presenting as cryptogenic fibrosing alveolitis with recurrent pulmonary hemorrhage after single-lung transplantation.
A 28-year-old man underwent a single-lung transplantation for rapidly progressive usual interstitial pneumonitis. Following transplantation, primary anti-phospholipid antibody syndrome was diagnosed after a thromboembolic event and continued dyspnea. Review of his native lung and allograft tissue showed diffuse hemorrhage secondary to capillary injury, probably reflecting anti-phospholipid antibody effects on endothelia.