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S B Fox

Publications and source records attributed to S B Fox.

At least 19 recordsLinked to original sources

Human AP endonuclease 1 (HAP1) protein expression in breast cancer correlates with lymph node status and angiogenesis.

Human AP endonuclease (HAP1) plays a major role in the repair of apurinic/apyrimidinic (AP) sites in cellular DNA. We used immunohistochemistry to examine the expression of HAP1 in normal breast and in 102 primary breast carcinomas. In normal breast epithelium, HAP1 had a uniformly nuclear localization. However, in lactating glandular epithelium, the expression of HAP1 was predominantly cytoplasmic. In carcinomas, both nuclear and cytoplasmic (44%), cytoplasmic (28%) or nuclear staining (24%) were observed. In four cases (4%), no HAP1 expression was detected. All patterns of expression for HAP1 were demonstrated for ductal carcinomas in situ (DCIS), although comedo-type DCIS were usually accompanied by mostly cytoplasmic staining. Similarly, the HAP1 expression in regions of invasive tumour necrosis was cytoplasmic. Pure nuclear HAP1 expression was significantly correlated with low angiogenesis (P = 0.007) and negative lymph node status (P = 0.001). In contrast, cases with cytoplasmic as well as nuclear staining were associated with poor prognostic factors, such as high angiogenesis (P = 0.03) and node positivity (P = 0.03). The pure nuclear staining may be related to better differentiation, as in normal breast, and hence better prognostic features, and cytoplasmic staining to a more metabolically active phenotype with high protein synthesis, as in lactating breast.

Adult

Systemic endothelial activation occurs in both mild and severe malaria. Correlating dermal microvascular endothelial cell phenotype and soluble cell adhesion molecules with disease severity.

Fatal Plasmodium falciparum malaria is accompanied by systemic endothelial activation. To study endothelial activation directly during malaria and sepsis in vivo, the expression of cell adhesion molecules on dermal microvascular endothelium was examined in skin biopsies and correlated with plasma levels of soluble (circulating) ICAM-1, E-selectin, and VCAM-1 and the cytokine tumor necrosis factor (TNF)-alpha. Skin biopsies were obtained from 61 cases of severe malaria, 42 cases of uncomplicated malaria, 10 cases of severe systemic sepsis, and 17 uninfected controls. Systemic endothelial activation, represented by the up-regulation of inducible cell adhesion molecules (CAMs) on endothelium and increased levels of soluble CAMs (sCAMs), were seen in both severe and uncomplicated malaria and sepsis when compared with uninfected controls. Plasma levels of sICAM-1, sVCAM-1, and sE-selectin correlated positively with the severity of malaria whereas TNF-alpha was raised nonspecifically in malaria and sepsis. Immunohistochemical evidence of endothelial activation in skin biopsies did not correlate with sCAM levels or disease severity. This indicates a background of systemic endothelial activation, which occurs in both mild and severe malaria and sepsis. The levels of sCAMs in malaria are thus not an accurate reflection of endothelial cell expression of CAMs in a particular vascular bed, and other factors must influence their levels during disease.

Adolescent

Association of tumor angiogenesis with bone marrow micrometastases in breast cancer patients.

BACKGROUND AND PURPOSE: The microscopic detection of tumor cells (micrometastases) in bone marrow and the extent of blood vessel formation (angiogenesis) in primary tumor specimens are recognized as independent prognostic markers in patients with breast cancer. Since micrometastases occur as a consequence of interaction between the neoplastic cells and the tumor neovasculature, we have examined the relationship between these markers to determine whether the degree of angiogenesis is related to the presence of micrometastases. METHODS: Micrometastases were identified in bone marrow aspirates collected from multiple sites in 214 breast cancer patients prior to surgery (mastectomy or lumpectomy). Tumor cells were detected through an examination of epithelial membrane antigen expression and an analysis of cell morphology. Tumor vascularity was graded semiquantitatively or quantitatively (Chalkley point count) after immunohistochemical staining of the CD31 antigen expressed by the endothelial cells. The reproducibility and accuracy of the vascular grading were validated by use of kappa statistics. Associations between micrometastases and clinicopathologic characteristics, including angiogenesis, were examined using chi-squared and logistic regression techniques. All tests of statistical significance were two-sided. RESULTS: Of the 214 patients, 42 (20%) were positive for bone marrow micrometastases and 75 (35%) had tumors of high vascular grade. There was 86% agreement between vascular grades assessed twice for 35 tumors (kappa statistic = 0.66); for 22 evaluated tumors, there was absolute concordance between vascular grade and Chalkley point count. There were significant positive associations between tumor angiogenesis and micrometastasis (P = .01), tumor grade (P = .003), and estrogen receptor expression (P = .007); however, no significant associations were observed with tumor size (P = .9), lymph node status (P = .33), vascular invasion (peritumoral blood or lymph vessels) (P = .9), menopausal status (P = .17), or age (P = .12). Adjusting for confounding factors, multivariate analysis showed that only tumor angiogenesis (odds ratio = 2.7; P = .016) and vascular invasion (odds ratio = 2.7; P = .012) were significant determinants for the presence of micrometastases. CONCLUSIONS: This study suggests that an assessment of tumor angiogenesis and vascular invasion gives a reliable indication of the likelihood of the presence of bone marrow micrometastases in patients with breast cancer and that both processes contribute to metastases.

Aged

Distinct angiogenic patterns are associated with high-grade in situ ductal carcinomas of the breast.

Angiogenesis, the formation of new blood vessels from the existing vascular network, has been demonstrated to be an important prognostic factor in invasive breast carcinoma. The switch to an angiogenic phenotype represents a growth-limiting step during carcinogenesis and might, in pre-invasive lesions, indicate the risk for developing an invasive phenotype. The discrepancy between modern therapy options for invasive breast carcinomas and the relatively aggressive treatment of in situ lesions underlines the need for such prognostic factors for ductal in situ breast carcinomas (DCIS). Patterns of vascularity were examined in 75 formalin-fixed, paraffin-embedded DCIS by immunohistochemical staining of vessels using antibodies against Factor VIII-related antigen. Histological classification was performed according to four different systems, based on architectural or cytonuclear features, or a combination of both. Two distinct vascular patterns were observed: a diffuse increase of stromal vascularity between duct lesions (pattern I), which was present alone in 8/75 (11 per cent), and a dense rim of microvessels adjacent to the basement membrane of individual ducts (pattern II), present alone in 12/75 (16 per cent). In total, 57 per cent (43/75) showed pattern 1 and 62 per cent (47/75) showed pattern II. There was a significant correlation between these patterns (P = 0.0001; chi 2 = 15.1), such that both were present in 35 (47 per cent). These different vascular patterns imply two angiogenic pathways: one pathway mediated by angiogenic factors released directly by tumour cells resulting in the rim of vessels and another generated indirectly via recruitment of accessory cells such as macrophage and endothelial cells, which themselves release other angiogenic factors, causing the increase of stromal vascularity. A significant increase in both stromal vascularity (pattern I) and the presence of a rim (pattern II) was observed in high-grade DCIS lesions (P = 0.005 and P = 0.037). Indeed, all the patient relapses occurred in these high-grade lesions, but due to the small number of patient events, no significant correlation of vascular pattern to survival was observed (P > 0.05). This study suggests that distinct patterns of vascularity in DCIS might be useful for identifying patients who are at risk of relapse.

Adult

Up-regulation of thymidine phosphorylase expression is associated with a discrete pattern of angiogenesis in ductal carcinomas in situ of the breast.

Angiogenesis is essential for tumour growth and metastasis. Although vascular density as a measure of angiogenesis is an important prognostic factor in invasive breast carcinoma, the mechanism of a switch to an angiogenic phenotype in ductal in situ breast carcinomas (DCIS) has yet to be identified. Nevertheless, two distinct vascular patterns have been reported in DCIS: a diffuse increase of stromal vascularity and a dense rim of microvessels close to the basement membrane of involved ducts. This suggests that tumour angiogenesis in invasive breast cancer arises from two different angiogenic pathways. Platelet-derived endothelial cell growth factor, now known to be thymidine phosphorylase (TP), is a candidate for initiating one of these pathways, since it is important in remodelling the existing vasculature through its chemotactic non-mitogenic properties and is expressed early in breast cancer development. The expression of TP was therefore examined in 75 formalin-fixed, paraffin-embedded specimens of DCIS by immunohistochemistry, using the monoclonal antibody PGF44c to detect TP. The results were correlated with blood vessel staining by polyclonal antibodies to von Willebrand factor (Factor VIII-related antigen, FVIIIrAg) and other clinicopathological variables. TP expression was nuclear and/or cytoplasmic and was observed in all subtypes of DCIS. High TP expression was demonstrated in 36 per cent (27/75) of tumours. This was not limited to the neoplastic cells, but was also present in stroma, endothelium, and tumour-associated macrophages. There was no correlation between high TP and DCIS subtype (P > 0.05). There was a significant correlation between TP expression and the presence of a dense vascular rim (P = 0.042; chi 2 = 4.1), but not with an increase in stromal vascularity (P = 0.800; chi 2 = 0.1). There was no significant correlation between tumour TP expression and relapse-free survival (P = 0.662; chi 2 = 0.2). These findings suggest that remodelling of the pre-existing vascular network induced by TP is important in generating a dense rim of microvessels around DCIS.

Adult

Angiogenesis as a biologic and prognostic indicator in human breast carcinoma.

In this review we describe angiogenesis pathways involved in the development of breast carcinoma. Different assessment techniques for angiogenesis and their optimisation are discussed. Angiogenesis is an important factor for prognosis and will be increasingly important in therapeutic decisions.

Angiogenesis Inducing Agents

Markers of tumor angiogenesis: clinical applications in prognosis and anti-angiogenic therapy.

Numerous studies in many tumor types have demonstrated that quantitation by microvessel as a measure of angiogenesis is a powerful prognostic tool. However, the ability to exploit tumor angiogenesis as a prognostic marker is limited by the methods currently used for capillary identification and quantitation. This report critically evaluates all aspects of the techniques and their associated problems used for assessing tumor angiogenesis in tissue sections including the area of tumor assessed, the vascular parameter measured, the method of quantitation, the stratification of patients and the practical utility of computer image analysis systems. The potential of angiogenic factors assays, proteolytic enzymes, and cell adhesion molecules as surrogate endpoints for quantifying tumor angiogenesis are discussed and other methods for quantifying tumor angiogenesis are described. The potential clinical applications of these angiogenic markers in prognosis, stratification for adjuvant treatments (both cytotoxic and anti-angiogenic/vascular targeting) and other aspects of patient management is also discussed, particularly design of phase I and II trials.

Antibodies

Relationship of elevated tumour thymidine phosphorylase in node-positive breast carcinomas to the effects of adjuvant CMF.

BACKGROUND: Thymidine phosphorylase (TP) catalyses the reversible phosphorylation of thymidine to thymine and 2-deoxyribose-1-phosphate. High expression of TP in cell lines potentiates the effects of the cytotoxic drugs 5-fluorouracil and methotrexate, both of which are used in the cyclophosphamide, 5-fluorouracil and methotrexate (CMF) treatment regimen of breast cancer. PATIENTS AND METHODS: We therefore examined the expression of this enzyme in 328 invasive breast carcinomas using immunohistochemistry and assessed whether the expression of this enzyme by the tumour predicts patients response to CMF in node-positive patients. RESULTS: Whereas no significant difference in either relapse-free survival (RFS) (P = 0.2) or overall survival (OS) (P = 0.07) was observed between TP-negative and -positive tumours in non-treated patients, there was a significant increase in both RFS (P = 0.02) and OS (P = 0.02) in patients treated with CMF in TP-positive compared with TP-negative tumours. A multivariate analysis of the 134 node-positive patients demonstrated that in ductal carcinomas, TP was an independent variable for OS. CONCLUSIONS: This pilot study suggests that patients with TP-positive tumours have a significant survival benefit when treated with CMF and supports the hypothesis that TP enhances tumour sensitivity to the anti-metabolites 5-fluorouracil and methotrexate.

Adult

Expression of the angiogenic factor thymidine phosphorylase/platelet-derived endothelial cell growth factor in primary bladder cancers.

Thymidine phosphorylase (TP), also known as platelet-derived endothelial cell growth factor, has been implicated in bladder cancer angiogenesis. To examine its role more clearly, we have quantified and localized its expression using Western analysis and immunohistochemistry in a series of 105 bladder cancers. We have also assessed the relationship between TP expression and other tumor parameters including quantitative angiogenesis, p53 status, ploidy, and survival. By Western analysis, TP expression was 5-fold higher in tumors than in normal bladder samples (P < 0.02). Expression was 15-fold higher in invasive tumors than in normal bladder (P < 0.001) and 8-fold higher than in superficial tumors (P < 0.005). Immunohistochemistry of the tumors showed TP was present in the neoplastic epithelium in 27% of the tumors, in the inflammatory cells in 72% of the tumors, in stromal cells in 30% of the tumors, and in tumor-associated endothelium in 11% of the tumors. Expression by Western blotting and immunohistochemistry was significantly up-regulated in tumors compared with normal bladder (P < 0.05). Tumor cell TP expression correlated with tumor grade (P < 0.02), but there was no correlation between tumor cell TP expression and tumor stage (P = 0.46), ploidy (P = 0.52), p53 expression (P = 0.9), tumor vascularity (P = 0.8), relapse-free survival (P = 0.57), or overall survival (P = 0.94). TP protein is expressed in bladder cancers, and expression is associated with an aggressive phenotype. Because TP can activate a number of cytotoxic agents, it provides a potential therapeutic target in bladder cancer.

Adult

Tumour angiogenesis.

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Endothelium, Vascular

The angiogenic factor platelet-derived endothelial cell growth factor/thymidine phosphorylase is up-regulated in breast cancer epithelium and endothelium.

Tumour angiogenesis is a complex multistep process regulated by a number of angiogenic factors. One such factor, platelet-derived endothelial cell growth factor has recently been shown to be thymidine phosphorylase (TP). TP catalyses the reversible phosphorylation of thymidine to deoxyribose-1-phosphate and thymine. Although known to be generally elevated in tumours, the expression of this enzyme in breast carcinomas is unknown. Therefore, we used ribonuclease protection assays and immunohistochemistry to examine the expression of TP in 240 primary breast carcinomas. Nuclear and/or cytoplasmic TP expression was observed in the neoplastic tumour epithelium in 53% of tumours. Immunoreactivity was also often present in the stromal, inflammatory and endothelial cell elements. Although endothelial cell staining was usually focal, immunoreactivity was observed in 61% of tumours and was prominent at the tumour periphery, an area where tumour angiogenesis is most active. Tumour cell TP expression was significantly inversely correlated with grade (P = 0.05) and size (P = 0.003) but no association was observed with other tumour variables. These findings suggest that TP is important for remodelling the existing vasculature early in tumour development, consistent with its chemotactic non-mitogenic properties, and that additional angiogenic factors are more important for other angiogenic processes like endothelial cell proliferation. Relapse-free survival was higher in node-positive patients with elevated TP (P = 0.05) but not in other patient groups. This might be due to the potentiation of chemotherapeutic agents like methotrexate by TP. Therefore, this enzyme might be a prediction marker for response to chemotherapy.

Adult

Increased expression of CD44v6 and CD44v3 in ulcerative colitis but not colonic Crohn's disease.

Immune mechanisms, possibly involving cell-surface molecules such as CD44, have been invoked to explain the pathogenesis of inflammatory bowel disease. We used monoclonal antibodies against epitopes encoded within the variable region of CD44 to investigate CD44 isoform expression in colon, small intestine, and liver in patients with various intestinal disorders and in controls. Biopsy samples from patients with ulcerative colitis showed significantly increased epithelial expression of CD44 isoforms containing the v6 and v3 epitopes, detected with antibodies 2F10 and 3G5, respectively. CD44v6 was detected on colonic crypt epithelial cells in 23 of 25 ulcerative colitis samples compared with 3 of 18 colonic Crohn's disease samples (p = 3.0 x 10(-6); odds ratio 57.5 [95% CI 6.83-702]) and 3 of 52 controls (22 normal colon, 10 infective colitis, 2 radiation colitis, and 18 colonic Crohn's disease; p < 1 x 10(-8); odds ratio 199 [25.5-2294]). No significant expression of CD44v6, CD44v3, or CD44v8/9 was found in samples of normal proximal colon from 4 patients with distal ulcerative colitis, whereas samples from the affected area showed staining for CD44v6 and CD44v3. No expression of CD44 variants was found in 15 samples of normal small intestine, 11 small-bowel pouchitis, 8 coeliac disease, 3 small-bowel Crohn's disease, 6 normal liver, 6 primary biliary cirrhosis, or 9 primary sclerosing cholangitis. The high intensity of CD44v6 and v3 epitope expression on crypt epithelial cells in ulcerative colitis suggests that CD44 isoforms may have an important role in ulcerative colitis. Their detection could have diagnostic potential in differentiating ulcerative colitis from other forms of colonic inflammation including Crohn's disease.

Antibodies, Monoclonal

Thymidine phosphorylase is angiogenic and promotes tumor growth.

Platelet-derived endothelial cell growth factor was previously identified as the sole angiogenic activity present in platelets; it is now known to be thymidine phosphorylase (TP). The effect of TP on [methyl-3H]thymidine uptake does not arise from de novo DNA synthesis and the molecule is not a growth factor. Despite this, TP is strongly angiogenic in a rat sponge and freeze-injured skin graft model. Neutralizing antibodies and site-directed mutagenesis confirmed that the enzyme activity of TP is a condition for its angiogenic activity. The level of TP was found to be elevated in human breast tumors compared to normal breast tissue (P < 0.001). Overexpression of TP in MCF-7 breast carcinoma cells had no effect on growth in vitro but markedly enhanced tumor growth in vivo. These data and the correlation of expression in tumors with malignancy identify TP as a target for antitumor strategies.

Animals

Platelet-derived endothelial cell growth factor/thymidine phosphorylase expression in normal tissues: an immunohistochemical study.

Angiogenesis is the formation of new blood vessels from the existing vascular bed. It is a complex multi-step process controlled by a number of angiogenic factors. One such factor is platelet-derived endothelial cell growth factor (PD-ECGF), recently shown to be thymidine phosphorylase (TP), which is angiogenic in several in vivo assays and tumour systems. PD-ECGF/TP catalyses the reversible phosphorylation of thymidine to deoxyribose-1-phosphate and thymine. Since PD-ECGF/TP has an important role in cellular metabolism and in angiogenesis and its expression has been only partially characterized, we raised a monoclonal antibody against recombinant PD-ECGF/TP and used an immunohistochemical approach to examine the expression of PD-ECGF/TP in a comprehensive range of normal human tissues. The clone P-GF44.C, which recognizes recombinant PD-ECGF/TP and cell lysates transfected with a plasmid expressing PD-ECGF/TP cDNA on Western blotting, was selected for its ability to stain routinely processed tissue. Staining was observed in both the cytoplasm and/or the nucleus. Immunoreactivity was strongly expressed by macrophages, stromal cells, glial cells, and some epithelia. Gastrointestinal epithelium, smooth muscle, adrenal, lung, and testis were negative. Although endothelial cell expression was observed, there was no correlation with sites of new vessel growth. This pattern of expression suggests tight PD-ECGF/TP regulation and that cellular thymidine pools may serve to control its different functions. Thus, in the nucleus it might modulate the pool for DNA synthesis, whilst in the cytoplasm it could control other effects through different enzyme systems. The high expression present in macrophages and skin might be important for total body thymidine homeostasis.

Blotting, Western

Quantitation and prognostic value of breast cancer angiogenesis: comparison of microvessel density, Chalkley count, and computer image analysis.

In some studies of breast cancer, quantitation of immunohistochemically highlighted microvessel 'hot spots' has been shown to be a powerful prognostic tool. However, the antibody used, the number and size of the 'hot spots' assessed, and the stratification of patients into high and low vascular groups vary between studies. Furthermore, little is known about the relationship between microvessel density and other vascular parameters. These uncertainties and the laborious nature of the technique make it unsuitable for diagnostic practice. Both manual and computerized image analysis techniques were used in this study to examine the relationship between microvessel density and the vascular parameters in different sized microscopic fields in a pilot series of 30 invasive breast carcinomas. Automated pixel analysis of immunohistochemical staining, Chalkley point counting, and observer subjective vascular grading were also assessed as more rapid methods of measuring tumour vascularity. A Chalkley count was also performed on a further 211 invasive breast carcinomas. Significant correlations were observed between manual microvessel density and luminal perimeter (r = 0.6, P = 0.0004), luminal area (r = 0.56, P = 0.002), and microvessel number (r = 0.57, P = 0.0009) by computerized analysis. There were also significant correlations between the microscopic hot spots of 0.155 mm2 and 0.848 mm2 for microvessel number (r = 0.81, P < 0.00005), luminal perimeter (r = 0.78, P < 0.00005), and luminal area (r = 0.65, P = 0.0001). In addition, a significant correlation was observed between microvessel density and both subjective vascular grade (P = 0.002) and Chalkley count (P = 0.0001). A significant reduction in overall survival was observed between patients stratified by Chalkley count in both a univariate (P = 0.02) and a multivariate (P = 0.05) analysis in the 211 invasive breast carcinomas. These findings show that Chalkley counting is a rapid method of quantifying tumour angiogenesis and gives independent prognostic information which might be useful in diagnostic practice.

Adult