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S M Greenberg

Publications and source records attributed to S M Greenberg.

At least 19 recordsLinked to original sources

Genetic association of an alpha2-macroglobulin (Val1000lle) polymorphism and Alzheimer's disease.

alpha2-Macroglobulin (A2M) is a proteinase inhibitor found in association with senile plaques (SP) in Alzheimer's disease (AD). A2M has been implicated biochemically in binding and degradation of the amyloid beta (Abeta) protein which accumulates in SP. We studied the relationship between Alzheimer's disease and a common A2M polymorphism, Val1000 (GTC)/Ile1000 (ATC), which occurs near the thiolester active site of the molecule. In an initial exploratory data set (90 controls and 171 Alzheimer's disease) we noted an increased frequency of the G/G genotype from 0.07 to 0.12. We therefore tested the hypothesis that the G/G genotype is over-represented in Alzheimer's disease in an additional independent data set: a group of 359 controls and 566 Alzheimer's disease patients. In the hypothesis testing cohort, the G/G genotype increased from 0.07 in controls to 0.12 in Alzheimer's disease (P < 0.05, Fisher's exact test). The odds ratio for Alzheimer's disease associated with the G/G genotype was 1.77 (1.16-2.70, P < 0.01) and in combination with APOE4 was 9.68 (95% CI 3.91-24.0, P < 0.001). The presence of the G allele was associated with an increase in Abeta burden in a small series. The A2M receptor, A2M-r/LRP, is a multifunctional receptor whose ligands include apolipoprotein E and the amyloid precursor protein. These four proteins have each been genetically linked to Alzheimer's disease, suggesting that they may participate in a common disease pathway.

Alleles

Progression of cerebral amyloid angiopathy: accumulation of amyloid-beta40 in affected vessels.

Cerebrovascular deposits of amyloid (cerebral amyloid angiopathy, or CAA) are generally asymptomatic, but in advanced cases, they can lead to vessel rupture and hemorrhage. The process of progression in CAA was studied by comparison of postmortem brains with asymptomatic ("mild") CAA to brains with the form of the disease associated with hemorrhage ("severe CAA"). Cortical and meningeal vessels were immunostained for beta-amyloid and examined by confocal microscopy and by systematic quantitative sampling. We focused on 2 quantitative parameters: the proportion of vessels affected by amyloid (a measure of amyloid seeding of vessels) and the amount of amyloid per affected vessel (a measure of growth of existing lesions). Surprisingly, there was no difference between the proportion of affected cortical vessels in mild and severe CAA (0.29 vs 0.32, p = 0.65), but rather an increase in the area of the 40 amino acid form of beta-amyloid per affected cortical vessel (198.5 +/- 38.7 vs 455.8 +/- 100.9 microm2/vessel, p < 0.007). Increasing doses (from 0 to 1 to 2 copies) of the apolipoprotein E epsilon4 allele were also associated with greater amyloid per vessel without change in the proportion of affected vessels within each class of CAA severity. These findings suggest that progression from asymptomatic to advanced CAA reflects progressive accumulation of amyloid in vessels previously seeded with amyloid, and that this process is selectively enhanced by apolipoprotein E epsilon4.

Aging

Association of apolipoprotein E epsilon2 and vasculopathy in cerebral amyloid angiopathy.

OBJECTIVE: Hemorrhage related to cerebral amyloid angiopathy (CAA) appears to occur through a multistep pathway that includes deposition of beta-amyloid in cerebral vessels and specific vasculopathic changes in the amyloid-laden vessels, such as cracking of the vessel wall. Recent reports suggest a positive association between CAA-related hemorrhage and both the apolipoprotein E (APOE) epsilon4 allele and, unexpectedly, the APOE epsilon2 allele. Unlike APOE epsilon4, APOE epsilon2 does not appear to act through increased beta-amyloid deposition. We therefore sought to determine whether it might specifically accelerate the second step in this pathway, that is, development of the vasculopathic changes that lead to hemorrhage. METHODS: To determine the role of APOE in development of vasculopathic changes, we compared APOE genotypes in two groups of postmortem brains: 52 brains with complete amyloid replacement of vessel walls but without vasculopathic changes, and 23 brains with complete amyloid replacement of vessels with the accompanying changes of cracking of the vessel wall and paravascular leaking of blood. RESULTS: Frequency of APOE epsilon2 was significantly greater in the group with vasculopathy (0.09) than the group without (0.01, p = 0.03). The groups did not differ in mean age or extent of neuritic plaques. Analysis of a clinical series of patients with CAA-related hemorrhage confirmed an overrepresentation of APOE epsilon2 as well as an association between this allele and earlier age of first hemorrhage. CONCLUSIONS: These data suggest that APOE epsilon2 and epsilon4 might promote CAA-related hemorrhage through separate mechanisms: epsilon4 by enhancing amyloid deposition and epsilon2 by causing amyloid-laden vessels to undergo the vasculopathic changes that lead to rupture.

Age Factors

Cerebral amyloid angiopathy: prospects for clinical diagnosis and treatment.

This article reviews diagnosis of cerebral amyloid angiopathy (CAA) during life and possible approaches to prevention. A clinical diagnosis of "probable CAA" can be made in patients aged 60 years or older with multiple hemorrhages confined to lobar brain regions and no other cause of hemorrhage. Gradient-echo MRI facilitates diagnosis by showing previous hemorrhages with high sensitivity. This technique can also mark the progression of CAA, as 50% of studied patients developed new petechial hemorrhages during 1.5 years of follow-up. The apolipoprotein E epsilon2 and epsilon4 alleles are associated with increased risk and earlier age of first hemorrhage, but are neither sensitive nor specific for CAA. The major remaining challenges are to develop new markers for the presence of CAA and treatments to block vascular amyloid deposition and vessel breakdown.

Aged

Diagnosis of cerebral amyloid angiopathy. Sensitivity and specificity of cortical biopsy.

BACKGROUND AND PURPOSE: Examination of cortical tissue obtained surgically is an important tool for diagnosis of cerebral amyloid angiopathy (CAA) during life. Analysis of a single sample of cortical tissue, however, might lead to conclusions that are either falsely positive (because of the high frequency of CAA in the healthy elderly) or falsely negative (because of the patchy distribution of CAA pathology). We therefore attempted to estimate the sensitivity and specificity of cortical biopsy for diagnosis of CAA as the cause of intracerebral hemorrhage. METHODS: To simulate biopsy in CAA, we took biopsy-sized cortical samples from postmortem brains with known extents of CAA: either CAA-related hemorrhage or mild to severe CAA without hemorrhage. Samples were stained with the use of methods routinely available in surgical pathology laboratories and blindly examined for vascular amyloid and amyloid-related vasculopathic changes. RESULTS: The presence of vascular amyloid was a sensitive marker for CAA-related hemorrhage, occurring in all 28 specimens from brains with hemorrhage. Conversely, the appearance of fibrinoid necrosis in amyloid-laden vessels was relatively specific for CAA-related hemorrhage. This finding occurred in 13 of the 28 specimens (46%) from brains with hemorrhage but in none of 27 sections from brains with mild CAA and in only 4 of 42 specimens with moderate to severe CAA without hemorrhage. CONCLUSIONS: These data help to define criteria for the diagnosis of CAA-related hemorrhage from surgical specimens.

Aged

Amyloid angiopathy.

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Cerebral Amyloid Angiopathy

Apolipoprotein E epsilon 4 is associated with the presence and earlier onset of hemorrhage in cerebral amyloid angiopathy.

BACKGROUND AND PURPOSE: Cerebral amyloid angiopathy is an important cause of intracerebral hemorrhage in the elderly. The epsilon 4 allele of the apolipoprotein E gene, recently established as a genetic risk for Alzheimer's disease, has also been suggested as a possible risk factor for cerebral amyloid angiopathy. We sought to determine whether this allele is specifically associated with hemorrhages related to amyloid angiopathy and whether it correlates with the age at which first amyloid angiopathy-related hemorrhage occurs. METHODS: Forty-five consecutive patients presenting with lobar hemorrhage were prospectively classified according to clinical, radiological, and when available, pathological features and evaluated for apolipoprotein E genotype. They were compared with 1899 elderly patients from a population-based sample and with 18 consecutive patients with hemorrhages in deep regions typical of a hypertensive mechanism. RESULTS: Patients with multiple hemorrhages confined to the lobar territory demonstrated a greater than twofold overrepresentation (P < .001) in frequency of the apolipoprotein E epsilon 4 allele compared with the population-based sample. Apolipoprotein E genotypes of patients with hemorrhages in deep territories resembled the population sample. Among patients with strictly lobar hemorrhages, carriers of the epsilon 4 allele had their first hemorrhage more than 5 years earlier than noncarriers (mean age at first hemorrhage, 73.4 +/- 8.0 versus 78.9 +/- 7.4 years; P = .033). These effects were independent of the accompanying presence of Alzheimer's disease. CONCLUSIONS: The data support a specific role for apolipoprotein E epsilon 4 in accelerating the process that leads to amyloid angiopathy-related hemorrhage.

Age Factors

Petechial hemorrhages accompanying lobar hemorrhage: detection by gradient-echo MRI.

Based on the pathologic observation that severe cerebral amyloid angiopathy is often accompanied by multiple petechial hemorrhages, we prospectively obtained gradient-echo MRI on 15 elderly patients with lobar hemorrhage on CT. Nine of the 15 demonstrated accompanying petechial hemorrhages restricted to the cortical or corticosubcortical regions. No similar lesions were present on gradient-echo MRI in 10 elderly control patients. These findings suggest that cerebral amyloid angiopathy might be neuroradiologically diagnosed and staged during life.

Aged

Baseline (laser) eye examination program.

Eye injury is the primary hazard associated with laser use. A baseline laser eye examination program allows for pre-injury examination and preventive early diagnosis of eye problems (glaucoma). Using portable equipment and a simplified exam format, and staffed by corpsmen and eye care providers, a rapid and accurate large-scale program that is cost efficient can be instituted. A single location for ophthalmic information coupled with recent refraction data will enhance readiness for deployment. For service members and their providers, a new and well-run eye care program will foster a strong and positive bond with the medical department.

Continuity of Patient Care

Amino-terminal region of the beta-amyloid precursor protein activates mitogen-activated protein kinase.

The secreted form of the beta-amyloid precursor protein (beta-APP) has previously been shown to stimulate mitogen-activated protein (MAP) kinases in PC-12 pheochromocytoma cells. The amino-terminal half of secreted beta-APP contains a region rich in cysteine residues reminiscent of cysteine-rich binding regions in other families of extracellular proteins. We found that reductive alkylation of disulfide linkages eliminated the ability of secreted beta-APP to activate MAP kinase. To confirm the role of the cysteine-rich amino-terminal region, fragments representing the amino- and carboxyl-terminal halves of secreted beta-APP were expressed in bacteria as fusion proteins and purified. Ten-minute treatment with the amino-terminal segment of beta-APP activated MAP kinase approximately 15-fold, while the carboxyl segment had no effect. The amino-terminal fragment, like intact secreted beta-APP, was substantially inactivated by reduction of sulfhydryl groups. These results suggest that the amino-terminal region of beta-APP is responsible for activation of MAP kinase and that it requires structural loops created by disulfide linkages for activity.

Alkylation

The IP-10 chemokine binds to a specific cell surface heparan sulfate site shared with platelet factor 4 and inhibits endothelial cell proliferation.

IP-10 is a member of the chemokine family of cytokines and is induced in a variety of cells in response to interferon gamma and lipopolysaccharide. The self-aggregation common to many chemokines, including IP-10, has hindered the identification of a specific IP-10 receptor. Using an IP-10 alkaline phosphatase fusion protein that fortuitously blocks this self-aggregation, we have identified an IP-10 binding site on a variety of cells including endothelial, epithelial, and hematopoietic cells. This binding site has a Kd of 25 nM, is inhibited by recombinant murine or human IP-10, and is dependent on the presence of cell surface heparan sulfate proteoglycans (HSPG). This conclusion is based on the findings that IP-10 binding to cells is: (a) inhibited by heparin and heparan sulfate; (b) sensitive to a 1 M NaCl wash; (c) eliminated by treatment with heparinase and trypsin; and (d) absent on mutant CHO cells that do not express cell surface HSPG. Platelet factor 4 (PF4), but not IL-8, monocyte chemoattractant protein-1, RANTES, monocyte inflammatory protein (MIP)-1 alpha, or MIP-1 beta, can compete effectively with IP-10 for binding to the cell surface. Furthermore, IP-10 shares with PF4 the ability to inhibit endothelial cell proliferation (IC50 = 150 nM). These studies demonstrate specificity in the interaction of chemokines and HSPG, and they define IP-10 and PF4 as a distinct subset of chemokines sharing an HSPG-binding site and angiostatic properties.

Animals

Platelet factor-4 inhibits the mitogenic activity of VEGF121 and VEGF165 using several concurrent mechanisms.

The 121-amino acid form of vascular endothelial growth factor (VEGF121) and the 165-amino acid form (VEGF165) are mitogenic for vascular endothelial cells and induce angiogenesis in vivo. VEGF165 possesses a heparin binding ability and in the absence of heparin-like molecules does not bind efficiently to the VEGF receptors of vascular endothelial cells. The binding of 125I-VEGF165 to the VEGF receptors of endothelial cells, and the heparin-dependent binding of 125I-VEGF165 to a soluble extracellular domain of the VEGF receptor KDR/flk-1, were inhibited by the angiogenesis inhibitor platelet factor-4 (PF4). In contrast, PF4 was not able to inhibit the binding of VEGF121, a VEGF isoform which lacks a heparin binding capacity, to the VEGF receptors of the cells or to KDR/flk-1. These results indicate that PF4 may inhibit VEGF165 binding to VEGF receptors by disrupting the interaction of VEGF165 with cell surface heparan sulfates. Since PF4 mutants lacking a heparin binding ability retain their anti-angiogenic activity, alternative inhibitory mechanisms were also examined. 125I-PF4 bound with high affinity (Kd 5 x 10(-9) M) to VEGF165-coated wells. The binding of 125I-PF4 to the VEGF165-coated wells was inhibited by several types of heparin binding proteins, including unlabeled PF4 and unlabeled VEGF165. The binding was not inhibited by proteins which lack a heparin binding capacity, nor was it inhibited by VEGF121. Heparinase did not inhibit the binding of 125I-PF4 to VEGF165, indicating that heparin-like molecules are not required. These experiments suggest that PF4 can bind to heparin binding proteins such as VEGF165 leading to an inhibition of their receptor binding ability. In agreement with these results, we have observed that PF4 inhibits efficiently the VEGF165 induced proliferation of vascular endothelial cells. Unexpectedly, PF4 also inhibited efficiently the VEGF121-induced proliferation of the cells, indicating that PF4 can disrupt VEGF receptor mediated signal transduction using an unknown mechanism which does not interfere with VEGF121 binding.

Animals

Apolipoprotein E epsilon 4 and cerebral hemorrhage associated with amyloid angiopathy.

Cerebral amyloid angiopathy (CAA) is characterized by cerebrovascular deposition of the amyloid beta-peptide, leading to intracerebral hemorrhage in severe cases. Other than rare familial cases, the only identified risks for CAA are advancing age and accompanying Alzheimer's disease. We tested whether the apolipoprotein E epsilon 4 (apoE epsilon 4) allele was associated with CAA and hemorrhage and whether this association was independent of Alzheimer's disease. The apoE epsilon 4 genotype was determined without knowledge of the pathology for 93 postmortem cases systematically graded for severity of CAA and for 15 patients with CAA-associated intracerebral hemorrhage. We found a significant and independent effect of the apoE genotype in both cohorts. Among the postmortem cases, the presence of apoE epsilon 4 increased the odds ratio for moderate or severe CAA by 2.9-fold, relative to cases without epsilon 4; two copies of epsilon 4 increased the odds ratio 13.1-fold. In the cohort of CAA-associated cerebral hemorrhages, the apoE epsilon 4 allele frequency was 0.40, significantly greater than the control frequency of 0.14. The increase in CAA remained even after controlling for the presence of Alzheimer's disease, suggesting that apoE epsilon 4 is a risk factor for CAA and CAA-related hemorrhage, independent of its association with Alzheimer's disease.

Alleles

Elevated plasma thrombopoietic activity in patients with metastatic cancer-related thrombocytosis.

BACKGROUND AND PURPOSE: High platelet counts are occasionally seen in patients suffering from progressive malignant disorders. While granulocyte colony-stimulating factor (G-CSF) has been implicated in paraneoplastic leukemoid reactions, the stimulus for thrombocytosis is unknown. Our purpose in this study was to determine if plasma from cancer patients with thrombocytosis contains a factor or factors with thrombopoietic activity. METHODS: We tested the effects of plasma obtained from 5 individuals with advanced tumors and high platelet counts and from 4 patients with advanced cancer and normal platelet counts on megakaryocytic differentiation of two megakaryoblastic cell lines (Dami and HEL). Differentiation was evaluated by assessing the expression of the platelet-specific cell-surface antigens CD41 (HUPL-mI) and glycoprotein IIb-IIIa using an immunocytochemical staining score. In addition, plasma samples from 7 of the 9 patients and from 5 additional cancer patients with thrombocytosis were assayed for the levels of interleukin (IL)-3, IL-6, granulocyte-macrophage colony-stimulating factor (GM-CSF), G-CSF, and IL-1 beta protein using an enzyme-linked immunosorbent assay (ELISA). RESULTS: Expression of platelet-specific cell-surface antigen was increased in HEL cells after exposure to plasma from all 5 of the cancer patients with thrombocytosis, and in Dami cells after exposure to plasma from 4 of the 5. Similar, but less significant, results were found when these cells were incubated with control combinations of recombinant GM-CSF plus IL-6 or of IL-3 plus IL-6. Platelet-specific cell-surface-antigen expression was not increased in HEL or Dami cells after exposure to the plasma from the 4 cancer patients with normal platelet counts or to normal control plasma. ELISA revealed elevated levels of IL-6 in the plasma from 4 patients with thrombocytosis (38, 40, 63, and 99 pg/mL). In addition, GM-CSF concentration was high in 3 of these 4 patients (33, 47, and 127 pg/mL), and the G-CSF level was elevated in 1 (543 pg/mL). IL-1 beta and IL-3 levels were undetectable. CONCLUSIONS: Our data suggest that the thrombocytosis observed in individuals with advanced malignant disease is mediated by a humoral mechanism. Levels of IL-6, GM-CSF, and G-CSF are elevated in some of these patients, but the plasma concentrations are generally lower than those required for in vitro induction of megakaryocytic differentiation. Plasma from patients with paraneoplastic thrombocytosis may therefore contain thrombopoietins that have not yet been identified, and which might have clinical usefulness.

Adult

Cyclic adenosine monophosphate-dependent mechanisms induce von Willebrand factor expression in the Dami megakaryoblastic cell line.

It has been proposed that cyclic adenosine monophosphate (cAMP) is involved in the differentiation of several cell types and this study analysed whether von Willebrand factor (vWf) synthesis, which is a marker of the megakaryocyte maturation of these cells, would be enhanced by agents acting on cAMP formation. Different compounds known to stimulate cAMP accumulation in cells were used: dibutyryl cAMP (db-cAMP), isobutyl-methylxanthine (IBMX) or pentoxifylline (PTX) and forskolin. Treatments with db-cAMP or IBMX (10-1,000 microM) induced a dose-dependent increase in vWf synthesis. Associations of IBMX with forskolin produced a synergistic enhancement in vWf synthesis. PTX alone did not enhance vWf synthesis but a latent effect was revealed in the presence of forskolin or db-cAMP. The increase in vWf mRNA shown by Northern blot analysis demonstrates that the protein synthesis correlates with the transcript expression after db-cAMP or IBMX treatments. vWf synthesis paralleled the accumulation of cAMP in the cells. Moreover vWf expression induced by combination of IBMX with forskolin was associated with a moderate increase in the percentage of GPIIb/IIIa positive cells and in the ploidy level related to an important inhibition of cell growth. These data provide evidence that agents acting on cAMP metabolism induce vWf synthesis in the Dami megakaryoblastic cells.

1-Methyl-3-isobutylxanthine

Secreted beta-amyloid precursor protein stimulates mitogen-activated protein kinase and enhances tau phosphorylation.

Biological effects related to cell growth, as well as a role in the pathogenesis of Alzheimer disease, have been ascribed to the beta-amyloid precursor protein (beta-APP). Little is known, however, about the intracellular cascades that mediate these effects. We report that the secreted form of beta-APP potently stimulates mitogen-activated protein kinases (MAPKs). Brief exposure of PC-12 pheochromocytoma cells to beta-APP secreted by transfected Chinese hamster ovary cells stimulated the 43-kDa form of MAPK by > 10-fold. Induction of a dominant inhibitory form of ras in a PC12-derived cell line prevented the stimulation of MAPK by secreted beta-APP, demonstrating the dependence of the effect upon p21ras. Because the microtubule-associated protein tau is hyperphosphorylated in Alzheimer disease, we sought and found a 2-fold enhancement in tau phosphorylation associated with the beta-APP-induced MAPK stimulation. In the ras dominant inhibitory cell line, beta-APP failed to enhance phosphorylation of tau. The data presented here provide a link between secreted beta-APP and the phosphorylation state of tau.

Amyloid beta-Protein Precursor