Search PubMed⌕ Search

Biomedical subjects

H Graeff

Publications and source records attributed to H Graeff.

At least 37 records · Page 2Linked to original sources

Thrombophilic state in breast cancer.

Tumor cell metastasis and thrombosis are the major causes of death in cancer patients. Thrombosis in cancer patients may occur when physiologic antithrombotic systems are defective or when prothrombotic activities defeat normal physiologic antithrombotic mechanisms. Malignancies by themselves may already predispose to a hypercoagulable state in cancer patients. Tumor cells can either directly activate the blood clotting system or indirectly stimulate mononuclear cells to synthesize and express various procoagulants, subsequently leading to prothrombin activation, fibrin formation, and generation of a thrombus. In addition, other comorbid predisposing factors effecting thrombosis in cancer patients have to be considered, including surgery, bed rest, infection, long-term indwelling central venous catheters, anticoagulation, and chemotoxic or steroidal anticancer drugs used in adjuvant or palliative cancer treatment. Reliable information on the incidence of thromboembolism in cancer patients is available for breast cancer; less data have been reported for other malignancies. Chemo- and/or hormone therapy in patients with primary or metastatic breast cancer is associated with an increased thromboembolic risk, although the benefits of treatment far outweigh the risks. The current literature discussing the effect of chemo/hormone therapy on blood clotting factors and the associated risk of thrombosis is reviewed, with emphasis on new developments in the area of tissue-specific SERMs (selective estrogen receptor modulators). SERMs are employed as adjuvant therapy in primary breast cancer and in the palliation of advanced breast cancer and may be clinically useful as potential substitutes for long-term hormone replacement therapy, in the treatment of osteoporosis, and for cancer prevention therapy.

Antineoplastic Agents↗

HER-2/neu gene amplification by fluorescence in situ hybridization allows risk-group assessment in node-negative breast cancer.

In a collective of 112 node-negative breast cancer patients, we compared the prognostic impact of HER-2/neu gene amplification (AMP) determined by fluorescence in situ hybridization (FISH) and HER-2/neu protein overexpression (EXP) measured by immunohistochemistry (IHC) with traditional prognostic factors (tumor size, grade, steroid hormone receptor status, menopausal status) and tumor invasion markers uPA (urokinase-type plasminogen activator) and its inhibitor PAI-1 determined by enzyme immunoassay (ELISA). Median follow-up in patients still alive at time of analysis was 7 years. Automated FISH and IHC were performed on parallel-cut formalin-fixed paraffin-embedded tissue sections. HER-2/neu AMP was detected by FISH in 31% and HER-2/neu EXP was measured by IHC in 41% of the cases. In 13% of the tumors, both AMP and EXP were found. FISH and IHC results were concordant in 56% of all analyzed cases. In univariate analysis, HER-2/neu AMP significantly predicted both disease-free (DFS) and overall survival (OS). HER-2/neu EXP was significant for OS, only. In multivariate analysis of all analyzed prognostic factors, HER-2/neu AMP was the only independent predictive factor for both DFS and OS. CART analysis revealed that HER-2/neu AMP together with the combination uPA/PAI-1 allowed optimal risk-group assessment after a 7-year median follow-up: patients with low levels of both uPA and PAI-1 and no HER-2/neu AMP had a significantly lower relapse rate (4.6%) than the remaining patients (32%). In conclusion, HER-2/neu gene AMP determined by FISH allowed a more accurate risk-group assessment than HER-2/neu protein EXP measured by IHC. Combining the HER-2/neu gene status measured by FISH with levels of tumor invasion markers uPA and PAI-1 improves clinically relevant risk-group assessment. In addition to its prognostic strength, the significant impact of HER-2/neu AMP on OS may reflect its ability to predict resistance to systemic therapy.

Adult↗

CD87-positive tumor cells in bone marrow aspirates identified by confocal laser scanning fluorescence microscopy.

Dissemination of single tumor cells to the bone marrow is a common event in cancer. The clinical significance of cytokeratin-positive cells detected in the bone marrow of cancer patients is still a matter of debate. In gastric cancer, overexpression of the receptor (uPAR or CD87) for the serine protease urokinase-type plasminogen activator (uPA) in disseminated cancer cells indicates shorter survival of cancer patients. A new immunofluorescence approach, applying confocal laser scanning microscopy, is introduced to locate CD87 antigen in cytokeratin-positive tumor cells and to quantify the CD87 antigen by consecutive scanning. At first, cytokeratin 8/18/19-positive carcinoma cells are identified at excitation wavelength 488 nm using monoclonal antibody A45B/B3 to the cytokeratins and goat anti-mouse IgG labeled with the fluorochrome Alexa488. Next, CD87 in tumor cells is identified by chicken antibody HU277 to the uPA-receptor and goat anti-chicken IgY labeled with fluorochrome Alexa568 (excitation wavelength 568 nm) and the fluorescence signal quantified on a single cell basis using fluorescently labeled latex beads as the fluorescence reference. From 16 patients with gastric or esophageal carcinoma, bone marrow aspirates were obtained, stained for cytokeratins and CD87 and then subjected to laser scanning fluorescence microscopy. Three of six gastric cancer patients had tumor cells present in the bone marrow of which 2 stained for CD87. Three of ten esophageal carcinoma patients had tumor cells in the bone marrow, all three samples stained for CD87. CD87-positive tumor cells were also dissected from stained bone marrow aspirates by laser microdissection microscope to allow analysis of single cells at the gene level.

Adenocarcinoma↗

Urokinase induces proliferation of human ovarian cancer cells: characterization of structural elements required for growth factor function.

Ovarian cancer metastasis is associated with an increase in the urokinase-type plasminogen activator (uPA) and its receptor uPAR. We present evidence that binding of uPA to uPAR provokes a mitogenic response in the human ovarian cancer cell line OV-MZ-6 in which endogenous uPA production had been significantly reduced by stable uPA 'antisense' transfection. High molecular weight (HMW) uPA, independent of its enzymatic activity, produced an up to 95% increase in cell number concomitant with 2-fold elevated [3H]thymidine incorporation as did the catalytically inactive but uPAR binding amino-terminal fragment of uPA, ATF. uPA-induced cell proliferation was significantly decreased by blocking uPA/uPAR interaction by the monoclonal antibody IIIF10 and by soluble uPAR. The efficiency of the uPAR binding synthetic peptide cyclo19,31 uPA19-31 to enhance OV-MZ-6 cell growth proved this molecular domain to be the minimal structural determinant for uPA mitogenic activity. Dependence of uPA-provoked cell proliferation on uPAR was further demonstrated in Raji cells which do not express uPAR and were thus not induced by uPA. However, upon transfection with full-length uPAR, Raji cells acquired a significant growth response to HMW uPA and ATF.

Antibodies, Monoclonal↗

Thrombomodulin modulates growth of tumor cells independent of its anticoagulant activity.

Thrombomodulin (TM), recognized as an essential vessel wall cofactor of the antithrombotic mechanism, is also expressed by a wide range of tumor cells. Tumor cell lines subcloned from four patients with malignant melanoma displayed a negative correlation between TM expression and cell proliferation in vitro and in vivo. Overexpression of wild-type TM decreased cell proliferation in vitro and tumor growth in vivo. TM mutants with altered protein C activation capacity lead to a similar effect. In contrast, transfection of melanoma cells with mutant TM constructs, in which a portion of the cytoplasmic or lectin domain was deleted, abrogated the antiproliferative effect associated with overexpression of wild-type TM. Experiments performed with either peptide agonists/antagonists of the thrombin receptor, with hirudin, or with inhibitors of thrombin-TM interaction did not alter the growth inhibitory effect of TM overexpression. These data suggest that TM exerts an effect on cell proliferation independent of thrombin and the thrombin receptor, possibly related to the binding of novel ligands to determinants in the lectin domain which might trigger signal transduction pathways dependent on the cytoplasmic domain.

Animals↗

Urokinase receptor localization in breast cancer and benign lesions assessed by in situ hybridization and immunohistochemistry.

The serine protease urokinase-type plasminogen activator (uPA) mediates cancer invasion and metastasis by binding to a cell surface receptor (uPA-R, CD87) on both tumor and stromal cells. In the present study we assessed uPA-R distribution in formalin-fixed, paraffin-embedded breast cancer specimens (n=50) and benign lesions (n=10) by immunohistochemistry employing a newly developed polyclonal chicken antibody to uPA-R (pAb HU277) in parallel with established monoclonal antibody (mAb) 3936 to uPA-R. In addition, uPA-R mRNA synthesis was investigated by in situ hybridization. In all of the sections analyzed, macrophage-like cells reacted with either antibody type. In 22 of the 50 cancer specimens, tumor cells reacted with pAb HU277 in contrast to mAb 3936 which only stained 9 of the 22 positive cases. Nevertheless, in 49 of the 50 cases, uPA-R mRNA was detected in cancer and in stromal cells by in situ hybridization suggesting posttranscriptional regulation of uPA-R expression in breast cancer cells. In 18 of 50 cases, uPA-R mRNA was also visualized in blood vessel lining endothelial cells by in situ hybridization and applying pAb HU277 in 14 of these 18 cases by immunohistochemistry. mAb 3936 did not stain any endothelial cells. pAb HU277 reacted with the breast gland epithelial cells of benign lesions as well, in contrast to mAb 3936 which did not. As for the cancer tissue, in benign lesions, endothelial cells were sporadically stained by pAb HU277. This antibody, but not mAb 3936, also stained myoepithelial cells in intraductal areas of invasive breast carcinoma. The results presented demonstrate the usefulness of pAb HU277 in locating uPA-R in tumor and normal cells with high sensitivity in formalin-fixed, paraffin-embedded breast tissue.

Adult↗

The necessity for a progressing dialog between basic science and clinical research in obstetrics and gynecology.

Scientific breakthroughs and basic research are frequently published in prestigious journals and praised for their impact. However, progress in clinical medicine is tedious and slow. There is still a distinct and even widening gap between basic science and clinical application. The dialog between basic science and clinical research has therefore to be intensified and a new culture of cooperation between basic and physician-scientists will become necessary to accelerate the transfer of new drugs into clinical practice.

Gynecology↗

Immunological and functional analyses of the extracellular domain of human tissue factor.

Tissue factor (TF) initiates the extrinsic pathway of blood coagulation via formation of an enzymatic complex with coagulation factor VII/VIIa (FVII/VIIa). Although FVII is the only known ligand for TF, several reports in recent years have shown that the function of TF may not be limited to serving as a trigger of coagulation but that TF could also play a role in cellular signaling, metastasis, adhesion and embryogenesis. To explore the loci of the extracellular domain of TF important for its function, we analyzed the functional and immunological epitopes of TF1-219 by the use of both E. coli expressed TF variants encompassing various portions of the extracellular domain of TF and different anti-TF monoclonal antibodies (mAbs). N- and C-terminally truncated TF variants were analyzed for their VIIa-dependent procoagulant activity (PCA). The results obtained are in agreement with previously performed mutant and structural analyses of the interaction of FVII/FVIIa with the extracellular domain of TF. In addition, we observed that combination of two TF variants, Ec-TF1-122 and Ec-TF120-219, yields a soluble and active two-chain TF molecule with remarkable PCA. The reaction patterns of anti-TF mAbs with truncated TF variants and synthetic TF-derived peptides demonstrated that at least three distinct conformation-dependent epitope areas of TF (residues 1-25, 175-202, and 181 -214, respectively) are detected by these mAbs raised against native TF. In fact, mAbs, which are directed to the same epitope area of TF, behave very similar in various applications including immunohistochemistry and clotting tests. Since mAbs directed to the C-terminal epitope area of TF (residues 181-214) influence TF activity independent of FVIIa-binding, this region may be involved in functions of TF distinct from haemostasis.

Antibodies, Monoclonal↗

Thrombomodulin, a receptor for the serine protease thrombin, is decreased in primary tumors and metastases but increased in ascitic fluids of patients with advanced ovarian cancer FIGO IIIc.

The human ovarian cancer cell line OV-MZ-19, established from a patient with cystadenocarcinoma of the ovary, expressing thrombomodulin (TM), a cell surface receptor for the serine protease thrombin, interacts with monoclonal and polyclonal antibodies having different specificity for TM. These antibodies detect TM antigen by means of flow cytofluorometry, laser scanning microscopy, immunocytochemistry, and ELISA. Therefore a highly sensitive ELISA for TM antigen was established using two different monoclonal antibodies to quantify TM in tissue extracts and biological fluids, e.g. peritoneal malignant ascites. Primary malignant ovarian tumors and metastases of the omentum and intestine contain TM antigen as determined by ELISA but in significantly lower concentrations than benign ovarian tumors (p=0.0056). In contrast, malignant ascitic fluid of patients with advanced ovarian cancer (FIGO IIIc) contain significantly elevated concentrations of soluble TM than benign peritoneal exudates (p=0.0003). Immunoaffinity purified ascites-derived TM efficiently activates protein C. Protein C activation of ascites-derived TM as well as TM expressed by the tumor cells is inhibited by the monoclonal antibodies. TM abrogates the procoagulant activity of thrombin, reduces pericellular thrombin via internalization, accelerates the thrombin-mediated inactivation of pro-uPA, and the EGF domains of TM exhibit mitogenic activity towards fibroblasts and tumor cells. Both, thrombin and pro-uPA play important roles in tumor invasion and metastasis. Therefore, downregulation and/or release of TM into ascitic fluid may play an important role in the malignant behavior of tumor cells.

Antibodies, Monoclonal↗

Multifunctional potential of the plasminogen activation system in tumor invasion and metastasis (review).

Tumor cell migration and invasion into the surrounding tissue depend on the invasive capacity of cells leading to the loosening of cell-cell and cell-substratum contacts via cell surface associated proteolytic enzyme systems. Plasmin is one of the enzymes involved in these complex events. It is generated by the cleavage of the proenzyme plasminogen upon the action of the urokinase-type plasminogen activator (uPA). uPA is synthesized and secreted by tumor cells and normal cells and interacts with a specific cell surface receptor (uPAR) thereby focalizing enzymatic activity to the cell surface. The activity of uPA is controlled by plasminogen activator inhibitors type-1 and type-2. A strong statistically independent prognostic impact has been attributed to uPA and its inhibitor PAI-1 in a variety of malignancies. Besides its proteolytic activity, uPA in concert with uPAR exert biological effects characteristic for molecules with signal transducing properties including chemotaxis, migration/invasion, adhesion, and mitogenesis.

Cell Adhesion↗

Disease-adapted relapse therapy for ovarian cancer: results of a prospective study.

Primary therapy of advanced ovarian cancer is standardized, the therapy in relapsed ovarian cancer however is still controversial. In a prospective study the benefit of secondary surgery and/or second-line chemotherapy were evaluated. 139 patients with relapsed ovarian cancer were stratified according to a treatment plan: patients with early relapse (recurrence-free interval 12 months) or primary progression during chemotherapy (n=43) were treated chemotherapeutically with etoposide (p.o. vs. i.v.). Patients with late relapse (recurrence-free interval >12 months, n=96) were referred, if possible, to a secondary debulking operation, followed by a platinum-based chemotherapy. Remission-rate, toxicity and survival time were analyzed. Median survival time in the group was 15 months compared to 30 months in patients with late relapse (p=0.0004). Within the group patients with secondary debulking and chemotherapy (n=59) had a statistically significant survival advantage compared to patients who had only chemotherapy (n=37) (38 vs. 12 months, p<0.0001). The unfavorable group of patients with early relapse should be treated chemotherapeutically, whereas in patients with late relapse a secondary debulking seems to improve prognosis.

Adult↗

FDG PET evaluation of granular cell tumor of the breast.

Granular cell tumor is a rare, usually benign neoplasm of neural origin that may arise in virtually any site and, when situated in the breast, can mimic breast carcinoma. We describe a case of granular cell tumor of the breast in a 57-yr-old woman. Clinical evaluation, mammography, sonography and MRI suggested a carcinoma with infiltration of skin and muscle. However, the tumor did not display increased glucose metabolism on PET. Clinical findings, imaging results, histological characteristics and surgical management are discussed.

Breast Neoplasms↗

Mutational analysis of the genes encoding urokinase-type plasminogen activator (uPA) and its inhibitor PAI-1 in advanced ovarian cancer.

Evidence has accumulated that urokinase-type plasminogen activator (uPA), its inhibitor (PAI-1) and receptor (uPAR) are involved in tumor invasion and metastasis. We analyzed the DNA sequences encoding these factors to see if they are altered in the ovarian cancer cell lines OV-MZ-6, OV-MZ-19, and OVCAR-3. In the uPA-encoding cDNA derived from OV-MZ-6 cells (but not in the uPA-cDNA from OVCAR-3 and OV-MZ-19), a so-far unknown mutation was identified in codon 121, resulting in a proline to leucine exchange. This exchange creates an AluI restriction site making restriction fragment length polymorphism (RFLP) analyses possible. Previously published PAI-1 sequences pointed to a variation of amino acid 15 of the PAI-1 signal sequence representing either threonine or alanine, which was confirmed in the present study. The uPAR cDNAs of all three cell lines encoded the published wild-type sequence. In order to elucidate the possible role of the Pro121Leu exchange in uPA and the Ala/Thr variants in the signal sequence of PAI-1 in the development and/or progression of human ovarian cancer, we studied the presence of these mutants or variants in a series of 22 ovarian cancer tissues. In addition to the wild-type sequence, the Pro121Leu exchange in the uPA sequence was detected in 10 out of 22 tumor tissues; 11 tumors carried exclusively the Pro121 allele; in one case exclusively the Leu121 allele was detected. In 18/22 tumors, triplet 15 in the signal sequence of PAI-1 encoded alanine, four DNAs contained both the Ala and the Thr allele. Furthermore, we analyzed another known common single-base-pair insertion/deletion polymorphism (ins/del allele) found in the promoter region of the PAI-1 gene and thought to be of functional importance in regulating PAI-1 gene expression. The PAI-1 ins-allele was found in 3/22, the del-allele in 6/22 and both alleles in 13/22 ovarian cancer tissues. In genomic DNA isolated from peripheral blood of 23 healthy donors, we observed similar allele frequencies of the three polymorphisms as found in the 22 ovarian carcinomas. Taken together, these results suggest that the polymorphisms observed in the uPA and PAI-1 genes may not be linked to ovarian cancer.

Alleles↗

Angiogenin plasma levels during pregnancy.

OBJECTIVE: Our purpose was to determine the levels in plasma of angiogenin in healthy pregnant women and to examine whether there are differences between uncomplicated pregnancies and patients with the syndrome of hemolysis, elevated liver enzymes, and low platelets, preeclampsia-eclampsia, and highly pathologic Doppler flow findings without additional complications. STUDY DESIGN: Angiogenin was measured with a novel enzyme-linked immunosorbent assay. A case control and observational study was conducted in 68 healthy women from the tenth to fortieth weeks of pregnancy and in 18 patients with the syndrome of hemolysis, elevated liver enzymes, and low platelets, 21 with preeclampsia/eclampsia and 13 with highly pathologic Doppler flow findings at admission for delivery. RESULTS: Between the tenth and fortieth weeks of uncomplicated pregnancy angiogenin plasma levels rose from 150 to 250 ng/ml (significant correlation). In patients with highly pathologic Doppler flow findings angiogenin is significantly reduced compared with healthy pregnant matched pairs (150 vs 219 ng/ml, p < 0.01). CONCLUSION: Rising plasma angiogenin levels in pregnancy may reflect persisting placental transformation and remodeling processes: in patients with highly pathologic Doppler flow findings these processes are disturbed and thus placental function is impaired.

Adult↗

Prognostic impact of proliferation-associated factors MIB1 (Ki-67) and S-phase in node-negative breast cancer.

MIB1 proliferation rate (MIB1-PR) and total S-phase fraction (SPF) were retrospectively determined in formalin-fixed, paraffin-embedded sections of 90 primary node-negative breast carcinomas. None of the patients had received adjuvant systemic therapy. Median follow-up in patients still alive at the time of analysis was 37.5 months (16-72 months). Immunostaining of Ki-67 antigen was performed using the monoclonal antibody MIB1 and the APAAP technique. An adjacent 50-microm paraffin section was used for flow cytometric S-phase determination. Results were compared to established clinicopathological prognostic factors. MIB1-PR was significantly correlated to grading (P = 0.018); SPF was significantly correlated with tumour size (P = 0.041) and inversely with steroid hormone receptor status (P = 0.03). A significant correlation between MIB1-PR and SPF was found in aneuploid (P = 0.025) but not in diploid tumours (P = 0.164). In univariate analysis, both MIB1-PR (optimized cut-off of 25%) and SPF (optimized cut-off of 8%) were significant prognostic factors for disease-free survival (DFS) (MIB1-PR, P = 0.0224; SPF, P = 0.0028). In multivariate analysis, however, only SPF remained significant; it was the strongest prognostic factor for DFS (P = 0.0073), stronger than MIB1-PR or established clinicopathological prognostic factors. We thus conclude that MIB1-PR and SPF provide additional prognostic information in node-negative breast cancer. However, in our study, flow cytometrically determined SPF had the greater prognostic impact.

Adult↗

Time-varying prognostic impact of tumour biological factors urokinase (uPA), PAI-1 and steroid hormone receptor status in primary breast cancer.

In breast cancer, several investigations have demonstrated that the tumour biological factors uPA urokinase-type plasminogen activator) and its inhibitor PAI-1 are statistically independent, strong prognostic factors for disease-free (DFS) and overall survival (OS). However, statistical analyses performed for varying follow-up periods suggested a time variation of prognostic strength. We therefore investigated the time-dependent prognostic power of uPA, PAI-1 and steroid hormone receptor status applying the time-varying coefficient model of Gray. uPA and PAI-1 were analysed by enzyme-linked immunosorbent assay in tumour tissue extracts from 314 breast cancer patients. Hormone receptors (oestrogen and progesterone) were determined by radioligand binding or by immunohistochemistry. Univariate and multivariate analyses (Cox proportional hazards model) of DFS and OS were performed for all patients, including 147 node-negative patients. Median follow-up of patients still alive at time of analysis (n = 232) was 58 months. Although initially of high prognostic impact, a continuous decrease over time in the prognostic power of hormone receptor status and uPA was observed. In contrast, the prognostic impact of PAI-1 increased over time and reached similar strength as the lymph node status. The time-dependent risk profile of prognostic factors may have important clinical implications in regard to follow-up and patients' individual risk situation. Evaluation of time dependency of prognostic factors may also give a more profound insight into the dynamics of breast cancer metastasis.

Adult↗

Optimized differential diagnosis of breast lesions by combined B-mode and color Doppler sonography.

To optimize the sensitivity and specificity of gray-scale imaging and color Doppler in breast tumor diagnosis, alone and in combination, 89 women with palpable breast masses were scanned preoperatively and standard parameters were determined in both modes. Parameters significant for differentiation of benign and malignant tumors identified using univariate analysis were combined and weighted using multivariate analysis (multiple logistic regression). Histologically 59 tumors were malignant and 30 benign. Gray-scale sonography alone achieved a sensitivity of 88% and a specificity of 96% using the parameters of wall structure and posterior acoustic attenuation. Color Doppler achieved a sensitivity of 85% and a specificity of 79% using resistance index and pulsatility index as parameters. Combination of both methods yielded an accurate diagnosis in 84/87 patients (sonographic lesion correlates were absent in two cases), equivalent to a sensitivity of 97% and a specificity of 96%. Thus the individual diagnostic performance of gray-scale imaging and color Doppler sonography in palpable breast disease is further enhanced using multiple logistic regression to combine independently significant parameters.

Adult↗

Epitope-mapped monoclonal antibodies as tools for functional and morphological analyses of the human urokinase receptor in tumor tissue.

uPAR (CD87), the receptor for the urokinase-type plasminogen activator (uPA) facilitates tumor cell invasion and metastasis by focusing uPA proteolytic activity to the cell surface. As uPAR exists in various molecular forms, it is desirable to use well defined antibodies for analyses of uPAR antigen expression in human malignant tumors by immunological methods. Therefore, twelve monoclonal antibodies (MAbs) directed against uPAR were generated by using nonglycosylated, recombinant human uPAR (spanning amino acids 1 to 284), expressed in Escherichia coli, as the immunogen. The reaction pattern of these MAbs with the immunogen and a series of carboxyl-terminally truncated versions of uPAR demonstrated that at least six different epitopes of uPAR are recognized. All MAbs reacted under reducing conditions in immunoblot analyses with E. coli-expressed uPA and also with highly glycosylated, functionally intact, recombinant human uPAR expressed in Chinese hamster ovary (CHO) cells. Seven of the MAbs recognized CHO uPAR under nonreducing conditions as well. By flow cytofluorometric analyses, three of these MAbs were shown to bind to native human uPAR present on the cell surface of monocytoid U937 cells with MAb IIIF10 being the best. Saturation of uPAR with uPA on U937 cells completely blocked interaction of MAb IIIF10 with uPAR (mapped epitope, amino acids 52 to 60 of domain I of uPAR). In turn, preincubation of U937 cells with MAb IIIF10 efficiently reduced binding of uPA to uPAR, indicating that the epitope detected by MAb IIIF10 is located within or closely to the uPA-binding site of uPAR, and thus, this site may be a target to influence uPA/uPAR-mediated proteolysis in tumors. Binding of MAbs IID7 or IIIB11 (mapped epitope, amino acids 125 to 132 of domain II of uPAR) to uPAR is not affected when uPAR is occupied by uPA. As these MAbs reacted strongly with cellular uPAR antigen in formalin-fixed paraffin-embedded tumor sections, the domain-II-specific antibodies IID7 and IIIB11 may be useful for immunohistochemical studies of uPAR expression in tissue remodeling processes in tumor invasion. In conclusion, we have devised well defined and epitope-mapped MAbs to uPAR that are highly specific tools for detection and targeting of uPAR in tumor tissue.

Animals↗