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Biomedical subjects

Martin J Goddard

Publications and source records attributed to Martin J Goddard.

8 recordsLinked to original sources

Identifying inflamed carotid plaques using in vivo USPIO-enhanced MR imaging to label plaque macrophages.

BACKGROUND: Inflammation within atherosclerotic lesions contributes to plaque instability and vulnerability to rupture. We set out to evaluate the use of a macrophage labeling agent to identify carotid plaque inflammation by in vivo magnetic resonance imaging (MRI). METHODS AND RESULTS: Thirty patients with symptomatic severe carotid stenosis scheduled for carotid endarterectomy underwent multi-sequence MRI of the carotid bifurcation before and after injection of ultrasmall superparamagnetic particles of iron oxide (USPIOs). USPIO particles accumulated in macrophages in 24 of 30 plaques (80%). Areas of signal intensity reduction, corresponding to USPIO/macrophage-positive histological sections, were visualized in 24 of 27 (89%) patients, with an average reduction in signal intensity induced by the USPIO particles of 24% (range, 3.1% to 60.8%). CONCLUSIONS: USPIO-enhanced MRI can identify plaque inflammation in vivo by accumulation of USPIO within macrophages in carotid plaques.

Carotid Stenosis↗

In vivo detection of macrophages in human carotid atheroma: temporal dependence of ultrasmall superparamagnetic particles of iron oxide-enhanced MRI.

UNLABELLED: Background- It has been suggested that inflammatory cells within vulnerable plaques may be visualized by superparamagnetic iron oxide particle-enhanced MRI. The purpose of this study was to determine the time course for macrophage visualization with in vivo contrast-enhanced MRI using an ultrasmall superparamagnetic iron oxide (USPIO) agent in symptomatic human carotid disease. METHODS: Eight patients scheduled for carotid endarterectomy underwent multisequence MRI of the carotid bifurcation before and 24, 36, 48, and 72 hours after Sinerem (2.6 mg/kg) infusion. RESULTS: USPIO particles accumulated in macrophages in 7 of 8 patients given Sinerem. Areas of signal intensity reduction, corresponding to USPIO/macrophage-positive histological sections, were visualized in all 7 of these patients, optimally between 24 and 36 hours, decreasing after 48 hours, but still evident up to 96 hours after infusion. CONCLUSIONS: USPIO-enhanced MRI of carotid atheroma can be used to identify macrophages in vivo. The temporal change in the resultant signal intensity reduction on MRI suggests an optimal time window for the detection of macrophages on postinfusion imaging.

Aged↗

ACE2 gene expression is up-regulated in the human failing heart.

BACKGROUND: ACE2 is a novel homologue of angiotensin converting enzyme (ACE). ACE2 is highly expressed in human heart and animal data suggest that ACE2 is an essential regulator of cardiac function in vivo. Since overactivity of the renin-angiotensin system contributes to the progression of heart failure, this investigation assessed changes in gene expression of ACE2, ACE, AT1 receptor and renin in the human failing heart. METHODS: The sensitive technique of quantitative reverse transcriptase polymerase chain reaction was used to determine the level of mRNA expression of ACE and ACE2 in human ventricular myocardium from donors with non-diseased hearts (n = 9), idiopathic dilated cardiomyopathy (IDC, n = 11) and ischemic cardiomyopathy (ICM, n = 12). Following logarithmic transformation of the data, a one-way analysis of variance was performed for each target gene followed by a Dunnett's test to compare the two disease groups IDC and ICM versus control. RESULTS: As anticipated, ACE mRNA was found to be significantly increased in the failing heart with a 3.1 and 2.4-fold up-regulation found in IDC and ICM relative to non-diseased myocardium. Expression of ACE2 mRNA was also significantly up-regulated in IDC (2.4-fold increase) and ICM (1.8-fold increase) versus non-diseased myocardium. No change in angiotensin AT1 receptor mRNA expression was found in failing myocardium and renin mRNA was not detected. CONCLUSIONS: These data suggest that ACE2 is up-regulated in human IDC and ICM and are consistent with the hypothesis that differential regulation of this enzyme may have important functional consequences in heart failure. This strengthens the hypothesis that ACE2 may be a relevant target for the treatment of heart failure and will hopefully spur further studies to clarify the functional effects in human myocardium of ACE2 derived peptides.

Adolescent↗

Use of 18FDG-pet to discriminate between infection and rejection in lung transplant recipients.

18F-fluorodeoxyglucose (18FDG) uptake measured by positron emission tomography (PET) allows assessment of neutrophil activity in vivo and is increased in patients with airway inflammation or infection. Because infection but not rejection elicits a highly neutrophilic response, we assessed the ability of this non-invasive technique to differentiate these two events in lung transplant recipients. 18FDG-PET was measured in 15 patients classified by clinical, radiologic, and pathologic criteria. 18FDG-PET signal was increased with proven infection but not when no infection was identified (mean [standard error of mean]: 8.00 [1.81] and 3.16 [0.61], respectively [P = 0.021]. Rejection alone did not increase the signal. These data confirm that neutrophil activation is not a feature of acute rejection and indicate that a high 18FDG-PET signal is indicative of infection but not rejection in lung transplant recipients. This non-invasive and repeatable test could reduce the number of transbronchial biopsies required during episodes of breathlessness after lung transplantation.

Diagnosis, Differential↗

Neointimal smooth muscle cells in human cardiac allograft coronary artery vasculopathy are of donor origin.

BACKGROUND: Transplant coronary artery vasculopathy (CAV) is a fibro-proliferative process that leads to lumen occlusion and cardiac failure. Current theories suggest that the process evolves over time in response to inflammation and proliferation of donor derived medial smooth muscle cells (SMC). Animal models of cardiac transplantation have suggested that the neointima is formed by recipient derived circulating progenitor cells. The aim of this investigation is to determine the origin of the neointimal SMC within epicardial coronary arteries from human cardiac allografts by using sex mis-matched recipients and donors, and a Y specific chromosome probe. METHODS: Coronary arteries from 14 patients previously assessed histologically to have CAV were analyzed-eight male recipients of female donor organs, 2 female-to-female, and 4 male-to-male transplants. A double immunocytochemistry and in-situ hybridization technique using a Y chromosome DNA probe and either antibodies to smooth muscle actin or Ham-56 a macrophage marker were employed. RESULTS: No Y chromosome bodies could be identified in the female-to-female allografts. In the 4 male donor and male recipient cases, cells positive for the Y chromosome probe were identified. In sex mis-matched transplants, female to male, inflammatory cells marked with Ham-56 were also positive for Y chromosome probe. Flattened cells positive for Y chromosome were observed just beneath the endothelial surface. When double stained, these were identified as infiltrating macrophages. No double staining smooth muscle cells and Y chromosome positive cells could be identified within the neointima. CONCLUSIONS: This study confirms the source of SMC of the neointima of CAV lesions from epicardial coronary arteries to be of donor origin. In contrast to animal models, circulating progenitor cells do not appear to play a role within the neointima of human transplant CAV.

Adolescent↗

Posttransplant lymphoproliferative disorder associated with primate gamma-herpesvirus in cynomolgus monkeys used in pig-to-primate renal xenotransplantation and primate renal allotransplantation.

BACKGROUND: A series of immunosuppressed cynomolgus monkeys were used in porcine-to-primate and primate-to-primate renal transplantation. In a number of animals nodal and extranodal lymphomas as well as areas of lymphoid hyperplasia in multiple organs (posttransplant lymphoproliferative disorder, PTLD) were recorded. METHODS: PTLD was characterized with respect to manifestation sites, histopathology, immunophenotype, and association with primate Epstein Barr-like Virus by in situ hybridization and quantitative polymerase chain reaction. RESULTS: PTLD was observed in 10 of 245 xenotransplanted and 9 of 231 allotransplanted monkeys; its detection in xenotransplanted animals was significantly earlier after transplantation than that in allo-transplanted animals (median, 40 and 104 days, respectively; P<0.001). In the xenotransplanted animals, four cases showed a B-cell lymphoma and six cases were nonneoplastic (lymphoid hyperplasia). All nine PTLD cases from allotransplanted animals were diagnosed as lymphoma. There was no clear relationship between the use of a particular drug or drug combination in maintenance immunosuppression and the occurrence of PTLD. Fourteen of 19 animals (six of the cases from xenotransplants, eight from the allotransplant series) were positive by in situ hybridization with oligonucleotide probes detecting primate gamma-herpesvirus. CONCLUSION: These data indicate that PTLD in the xeno- and allotransplanted cynomolgus monkeys are associated with primate gamma-herpesvirus-induced B-cell proliferation.

Animals↗

Histopathology of cardiac xenograft rejection in the pig-to-baboon model.

BACKGROUND: The use of pig organs transgenic for human decay accelerating factor (hDAF) has largely overcome the problems of hyperacute rejection. With improved immunosuppressive protocols, life supporting grafts are showing greater survival times bringing the possibility of clinical xenotransplantation closer. Examination of the histopathology of the rejection process provides insight into the underlying mechanism and may suggest ways in which new immunosuppressive strategies should be directed. METHODS: 44 baboons (Papio anubis) underwent heart transplants of which 39 were from transgenic donors. The transplanted organs were examined histologically and stained for evidence of immunoglobulin and complement deposition as well as cellular infiltrates. RESULTS: In the transgenic animals survival times were 2 to 99 days (mean 23.5) and the heterotopic group and 1 to 39 days (mean 11.7) in the orthotopic group. There were 3 cases of hyperacute rejection between the 2 groups. Rejected organs showed areas of old and recent myocardial infarction associated with vascular thrombosis. There was widespread deposition within vessels of immunoglobulins IgM and IgG together with complement fractions C3 and C5b to 9 in those organs that were rejected. The amount of complement positive in the longer surviving organs was less than those rejecting early. Cellular infiltate was predominantly macrophage with some later appearing T or natural killer cells. CONCLUSIONS: The histopathological changes support the importance of immunoglobulin and complement in delayed xenograft or acute vascular rejection. With time there is an increase in cellular infiltrate predominantly macrophages and these findings suggest an increasingly important role for the cells and the rejection process. The presence of areas of infarction and underlying vascular thrombosis is in keeping with endothelial activation and the establishment of procoagulant phenotype which may be due to immunoglobulin, complement, secreted cytokines and direct cellular effects.

Acute Disease↗