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M Schirner

Publications and source records attributed to M Schirner.

At least 19 recordsLinked to original sources

An antagonistic vascular endothelial growth factor (VEGF) variant inhibits VEGF-stimulated receptor autophosphorylation and proliferation of human endothelial cells.

Vascular endothelial growth factor (VEGF) is a potent mitogen with a unique specificity for endothelial cells and a key mediator of aberrant endothelial cell proliferation and vascular permeability in a variety of human pathological situations, such as tumor angiogenesis, diabetic retinopathy, rheumatoid arthritis, or psoriasis. VEGF is a symmetric homodimeric molecule with two receptor binding interfaces lying on each pole of the molecule. Herein we report on the construction and recombinant expression of an asymmetric heterodimeric VEGF variant with an intact receptor binding interface at one pole and a mutant receptor binding interface at the second pole of the dimer. This VEGF variant binds to VEGF receptors but fails to induce receptor activation. In competition experiments, the heterodimeric VEGF variant antagonizes VEGF-stimulated receptor autophosphorylation and proliferation of endothelial cells. A 15-fold excess of the heterodimer was sufficient to inhibit VEGF-stimulated endothelial cell proliferation by 50%, and a 100-fold excess resulted in an almost complete inhibition. By using a rational approach that is based on the structure of VEGF, we have shown the feasibility to construct a VEGF variant that acts as an VEGF antagonist.

Binding Sites

De novo expression of the alpha5beta1-fibronectin receptor in HT29 colon-cancer cells reduces activity of C-SRC. Increase of C-SRC activity by attachment on fibronectin.

Changes in integrin expression during malignant transformation have been observed in many tumors. Colon-carcinoma cells show reduced expression or even loss of the alpha5beta1 integrin compared to normal or adenoma cells. To determine the significance of absent alpha5beta1 integrin signaling, we transfected the cDNA coding for the alpha5 integrin sub-unit into the human colon-carcinoma cell line HT29, which constitutively lacks this subunit but does express the beta1 subunit. We show here that the newly expressed fibronectin receptor alpha5beta1 generates multiple signals, causing marked changes in cytoskeletal arrangements within a few minutes of adhesion to fibronectin. Cells expressing the alpha5beta1 integrin exhibit the formation of actin stress fibers and focal adhesions, as well as the induction of tyrosine phosphorylation of several proteins, within 10 min. We identified the focal adhesion kinase pp125FAK and the cytoskeletal protein paxillin as major phosphorylation substrates in these cells. These proteins remained hypophosphorylated when alpha5-negative control cells were plated on fibronectin. The tyrosine kinase pp60c-src, regarded as central in the regulation of cellular proliferation and constitutively over-expressed in HT29 and in colon-carcinoma cells, showed reduced intrinsic kinase activity in unstimulated HT29alpha5 cells. In contrast, fibronectin-induced signaling through alpha5beta1 increased pp60c-src activity. Moreover, immunoprecipitation of pp60c-src from extracts of HT29alpha5 cells cultivated on fibronectin for 20 min revealed complex formation of pp60c-src and tyrosine-phosphorylated pp125FAK. Our data suggest that de novo expression of the alpha5beta1 integrin in HT29 colon-cancer cells restores signaling via pp125FAK and pp60c-src. Thus, loss of this receptor during malignant transformation may contribute to tumor-cell autonomy, while reduced activity of pp60c-src in HT29alpha5-cells may participate directly in growth control.

Cell Adhesion

Tumor metastasis inhibition with the prostacyclin analogue cicaprost depends on discontinuous plasma peak levels.

Stable prostacyclin analogues exert a strong inhibitory effect on lymphogenous as well as haematogenous tumor metastasis in a series of tumor lines. The strong inhibition of metastasis was achieved by repeated once-daily i.g. applications. The mechanism of antimetastatic action is related to the expression of functional IP-receptors (PGI-receptors). As cellular assay systems indicated that the IP-receptor mediated signalling is down-regulated upon continuous exposure to prostacyclin or stable derivatives, it has been questioned whether a mode of drug application with constant plasma drug levels may potentially result in a decrease of the antimetastatic effect. We addressed this question using the stable prostacyclin analogue cicaprost in a disease model by comparing i.g. applications given once daily with a continuous administration of equivalent doses via drinking water. Very similar to our previous investigations in the 13762NF MTLn3 rat mammary carcinoma model, cicaprost administered by i.g. application strongly reduced lung and lymph node metastasis. In contrast, administration of equivalent doses via drinking water leading to lower but constant steady-state plasma levels failed to exert inhibitory effects. Plasma and urine levels of cicaprost were measured with a sensitive radioimmunoassay on the last treatment day. Pharmacokinetic evaluation demonstrated a similar bioavailability of cicaprost in both groups. This result first demonstrates a treatment failure of a prostacyclin derivative in a chronic disease model in association with a continuous drug administration leading to constant plasma levels. A desensitization of receptor signalling by constant plasma levels may be a possible mechanism for treatment failure.

Administration, Oral

Antiangiogenic chemotherapeutic agents: characterization in comparison to their tumor growth inhibition in human renal cell carcinoma models.

The mechanism of action of anticancer chemotherapeutic agents is mainly thought to be due to a direct inhibition of tumor cell proliferation. The enhanced endothelial cell proliferation rate in tumor specimens raised the question of whether therapeutic effects of chemotherapeutic agents might be at least partially attributed to inhibition of tumor angiogenesis. In the present study, we investigated the potential effects of chemotherapeutic agents on human renal carcinoma angiogenesis with the alginate implantation model in mice. For the first time, we also compared results from the angiogenesis model with the inhibitory effects on growth of s.c. xenografts in nude mice. Vincristine and bleomycin exerted strong inhibition of tumor angiogenesis in both carcinoma lines close to the level of the standard antiangiogenic agent O-chloroacetyl-carbamyl-fumagillol (AGM-1470; T/C 22%). Adriamycin reduced angiogenesis of Caki-2 cells (T/C 33%) but had no effect on Caki-1 angiogenesis (T/C 137%). Etoposide and 5-fluorouracil reduced Caki-1 tumor angiogenesis but had no effect on Caki-2. Despite antiangiogenic effects in both carcinoma lines, vincristine, bleomycin, and AGM-1470 significantly reduced only the growth of fast-growing Caki-1 s.c. xenografts but not the slow-growing Caki-2. Antivascular effects by bleomycin and AGM-1470 were also shown by a decrease of microvessel density in nude mouse xenografts. Our findings suggest that chemotherapeutic agents may exert inhibition of tumor angiogenesis, which could be exploitable by combination therapy of fast-growing tumors. The resistance of the slow-growing Caki-2 carcinoma against acute angiogenesis inhibition indicates a need for well-tolerated angiogenesis inhibitors. Our results also suggest the use of fast-growing s.c. xenografts for demonstrating growth inhibition by antiangiogenic compounds. Further characterization of antiangiogenic compounds considered for clinical application should, however, have its focus on slow-growing tumors, which are not accessible for most therapeutic strategies.

Animals

A highly sensitive model for quantification of in vivo tumor angiogenesis induced by alginate-encapsulated tumor cells.

A remarkable approach to a specific tumor angiogenesis model in vivo is the use of alginate implants encapsulating tumor cells. However, this previously reported approach has often been questioned because of doubts regarding the relevance of hemoglobin at the alginate implant as a parameter of vascularization. In the present investigation, we examined whether or not the use of the blood pool agents FITC-dextran of high molecular weight would significantly improve the determination of vascularization at the alginate implant. In our experiments, we found a rapid distribution of FITC-dextran within the blood circulation of mice after i.v. bolus injection. The amount of FITC-dextran within alginate implants strongly correlated with the number of LL2 carcinoma cells or B16/F10 cells encapsulated. Even a low number of 10(3) cells per alginate implant led to a significantly increased accumulation of FITC-dextran. A more than 10-fold stimulation above that of controls was found with alginate implants containing 10(4) LL2 or B16/F10 tumor cells. Using the investigational compound AGM-1470 in different treatment schedules, we found that quantification of alginate implant anglogenesis with FITC-dextran is a sensitive method for the determination of angiogenesis inhibition. In conclusion, our results demonstrated that the use of FITC-dextran enables highly sensitive, quantitative measurement of blood vessel formation by alginate implants.

Alginates

Novel antibodies directed against the extracellular domain of the human VEGF-receptor type II.

Vascular endothelial cell growth factor (VEGF) plays a pivotal role in the regulation of angiogenesis by binding to its cognate receptor molecule type II (VEGFr-II, KDR). VEGFr-II is an endothelial cell-specific transmembrane tyrosine kinase important for vascular endothelial cell development and differentiation during embryogenesis, angiogenic processes under physiological conditions, and various diseases. An increasing number of reports indicate that VEGF/VEGFr-II also play a fundamental role for tumor angiogenesis. We present the generation and in vitro characterization of the monoclonal antibodies 2-7-9 and 2-10-1. Both antibodies are highly specific for VEGFr-II as demonstrated by Western blotting and immunoprecipitation. MAbs 2-10-1 and 2-7-9 bind to a disulphide bridge-stabilized epitope within domains 6 and 7 of the human VEGFr-II with an affinity of 8 and 80 nM, respectively. Furthermore, the antibodies are suitable for immunohistochemistry and ELISA techniques. Because both antibodies recognize their epitope on living cells, they also have the potential for drug targeting and diagnostic purposes.

Animals

Inhibition of metastasis by cicaprost in rats with established SMT2A mammary carcinoma growth.

Cicaprost, a stable prostacyclin analog has been shown to be antimetastatically active in a series of metastasizing rodent tumors. Whereas starting treatment with Cicaprost on the day of tumor implantation was a characteristic feature of our previous investigations, the present study focused on the antimetastatic potency of Cicaprost in animals with established tumor growth. We have previously reported that, in Wistar-Furth rats bearing subcutaneously implanted SMT2A mammary carcinoma, Cicaprost in daily oral doses of 0.1 to 1.0 mg/kg given from the day of tumor implantation to the end of the experiment led to a strong decrease in the number of lung metastases. The 1.0 mg/kg doses reduced the number of lung metastases by about 95% compared with the control. In the present study, we have examined the effect of delaying the start of treatment in animals with established tumor growth, Cicaprost in daily oral doses of 0.1 mg/kg given from Day 10 until Day 32 reduced the number of lung metastases by about 80% compared with the control. In contrast, surgical removal of palpable primary tumors had no effect on lung metastasis. We conclude that Cicaprost exhibits strong antimetastatic activity in the SMT2A rat mammary carcinoma model and interferes not only with mechanisms of tumor cell-blood cell interaction, tumor cell adhesion, and extravasation, but also with steps following extravasation.

Animals

IL-4 and TNF-alpha induce changes in integrin expression and adhesive properties and decrease the lung-colonizing potential of HT-29 colon carcinoma cells.

The colon carcinoma cell line HT-29 was used to explore the potential of interleukin-4 (IL-4) and tumor necrosis factor alpha (TNF-alpha) to modify integrin expression and adhesive functions of tumor cells in vitro and to examine corresponding metastatic effects in vivo. Preincubation of HT-29 cells with 100 U/ml of IL-4 for 48 h downregulated the surface expression of the integrin subunits alpha 2, alpha 3, beta 1 and beta 4 after 48 h, whereas the alpha 1 subunit was upregulated. In contrast, 100 U/ml to TNF-alpha selectively upmodulated the expression of alpha v. Attachment to fibronectin of cells treated with IL-4 increased twofold (63.5% vs 32.4%). Adhesion to fibronectin (54.0% vs 32.4%) and vitronectin (37.9% vs 16.4%) was elevated in the case of TNF-alpha stimulation. Using an experimental metastasis model, HT-29 cells showed a significant reduction of their lung-colonizing potential in nude mice when preincubated with IL-4 for 48 h before intravenous injection. The decrease also observed for TNF-alpha-treated cells was less pronounced. The data indicate that the cytokines IL-4 and TNF-alpha can act as direct regulators of adhesive mechanisms of tumor cells bearing adequate receptors, thus influencing lung-colony formation.

Animals

Antimetastatic action of the prostacyclin analogue cicaprost in experimental mammary tumors.

In breast cancer, the survival rate strongly depends on the number of lymph nodes involved. A drug with a specific inhibitory activity on lymph node and organ metastases would therefore be a candidate for adjuvant therapy after surgery. Prostacyclin and its stable analogues have been shown to interfere with certain steps of the metastatic cascade and to inhibit the number of lung colonies after i.v.-inoculation of various tumor cell lines. Our data reveal that cicaprost, a metabolically stable and orally active analogue of prostacyclin, has pronounced antimetastatic effects in a series of spontaneously metastasizing rodent tumors. In the SMT 2a and 13762 MTLn3 mammary carcinomas of the rat, cicaprost given daily from the day of tumor implantation strongly inhibits the number of lung metastases as well as lymph node weights without exerting an effect on the primary tumor. Even starting treatment when palpable primary tumors are present gives a pronounced antimetastatic activity. To demonstrate that cicaprost has an effect on metastases already settled in the respective organ, treatment was started after surgical removal of the primary tumor. In the SMT 2a tumor, a strong inhibition of the number of metastases was shown. Interestingly, a perioperative treatment schedule was also effective in both models used. As primary tumor growth in vivo or proliferation in vitro remained unchanged by cicaprost, its mode of action seems to be related to one or more mechanisms of the metastatic process. In tumor cell lines expressing a functional prostacyclin receptor, stimulated tumor cell migration is inhibited and changes of differentiation status are obvious. In conclusion, cicaprost strongly inhibits lymph node and organ metastases of spontaneously metastasizing rodent mammary tumors with a mode of action different from cytostatic or antihormonal drugs.

Animals

Rodent model of systemic mammary tumor disease by surgical removal of the spontaneously metastasizing SMT2A mammary carcinoma: inhibitory effect of the stable prostacyclin analogue cicaprost on occult metastasis.

Cicaprost, a stable prostacyclin analogue, has been shown to be anti-metastatically active in a series of metastasizing rodent tumors. Start of treatment with cicaprost immediately before tumor implantation was a characteristic feature of our previous investigations. We have reported that in rats bearing mammary-fat-pad-implanted SMT2A mammary carcinoma, cicaprost treatment starting before tumor implantation led to a strong decrease in the number of lung metastases. In order to determine the effect on occult tumor metastasis, the present study examined the effect of starting treatment when tumor metastasis is already present. Cicaprost in daily oral doses of 0.1 mg/kg given from day 10 to day 32 reduced the number of lung metastases by about 75% compared with the control, whereas surgical removal of palpable primary tumors on day 5 or day 10 failed to influence lung metastasis. Using different treatment schedules, a pronounced reduction of the number of lung metastases was achieved by administration of cicaprost until the end of the experiment (from day 5 to day 35), whereas short-term treatments (from day 5 to day 15 or to day 25) were without significant effect. In rats whose SMT2A tumors were surgically removed 10 days after tumor implantation, there was a strong decrease of lung metastases by cicaprost given from day 20 to day 36. In addition to its inhibitory potential in animals with advanced tumor disease, cicaprost showed anti-metastatic action when used in peri-operative treatment of animals whose primary tumors had been removed. In conclusion, the present results demonstrate that cicaprost exhibits strong anti-metastatic activity in the SMT2A rat mammary-carcinoma model with treatment started when occult tumor metastases are already present. Results also indicate that direct effects on tumor cells may contribute to the anti-metastatic action of cicaprost in spontaneously metastasizing tumors.

Adipose Tissue

[Prostaglandins and prostaglandin analogs: experimental studies on their effect of tumor metastasis].

Metastatic tumor spread is regarded as the highest degree of malignancy of tumors and generally determines the prognosis. Before clinically detectable metastases are evident in distant organs, tumor cells interact with cellular and non-cellular components of the host as they complete the multistep process referred to as the metastatic cascade. Many investigational drugs acting at different levels of the metastatic process were tested for beneficial effects on metastasis. Because of the influence of prostaglandins on host components essential for tumor metastasis, this group of a compounds was tested in model of tumor growth and metastasis. Prostaglandins of the E, D and J series inhibit growth of variety of tumor cells and cause a reduction of primary tumor growth in vivo. The antiproliferative action of prostaglandins of the E series seems to be related to an induction of differentiation, whereas prostaglandins of the D and J series mediate growth inhibition by a blockade of the cell cycle and an inhibition of RNA and DNA synthesis. There is no conclusive evidence that prostaglandins of the E, D and J series may specifically interfere with mechanisms of tumor metastasis. In contrast to the prostaglandins of the E, D and J series, prostacyclin has been shown to inhibit several processes involved in tumor metastasis, but without exerting a direct cytotoxic effect on tumor cells. Our own studies have shown that Cicaprost, a stable prostacyclin analogue, prevents metastasis if given continuously from the day of tumor implantation, and is also effective in reducing metastasis if treatment is begun following surgical removal of the primary tumor, when micrometastases are already present.

Animals

Prostacyclin and its analogues: antimetastatic effects and mechanisms of action.

More than a decade ago, prostacyclin, a dienoic bicyclic eicosanoid derived from the metabolism of arachidnoic acid, was found to possess potent inhibitory effects on tumor cell metastasis. Thereafter, several laboratories demonstrated the metastasis-suppressive activity of prostacyclin in a wide spectrum of tumor types. Due to the short half-life of prostacyclin, researchers have focused on looking for stable prostacyclin analogues which have extended half lives and increased bioavailabilities. Cicaprost, among other prostacyclin analogues tested, has been demonstrated, like prostacyclin, to effectively inhibit metastasis in several different animal models (i.e., both experimental and spontaneous metastasis models). Prostacyclin as well as cicaprost prevent not only hematogenous, but also lymphatic metastasis. Furthermore, these compounds also inhibit the growth of established micrometastases after removal of the primary tumors. Mechanistic studies revealed that the antimetastatic effects of prostacyclin and its analogues are more related to their interference with tumor cell-host interactions (such as tumor cell induced platelet aggregation, tumor cell adhesion to endothelial cells and subendothelial matrix, tumor cell induced endothelial cell retraction, etc.) than their direct inhibition of the growth of primary tumors. The potent and widespread metastasis-retarding effects of prostacyclin and its stable analogues in animal tumor models warrant their clinical trial in treating human cancer patients and preventing metastasis.

Animals

The stable prostacyclin analogue Cicaprost inhibits metastasis to lungs and lymph nodes in the 13762NF MTLn3 rat mammary carcinoma.

Prostacyclin and its stable analogues have been shown to interfere specifically with certain steps of the metastatic cascade. The antimetastatic activity of the stable prostacyclin analogue Cicaprost (Schering AG) on haematogenous metastasis in a series of tumours in rats and mice has been well established. In order to test the effect of Cicaprost on lymphogenous metastasis we chose the metastatic cell clone MTLn3 derived from the 13762NF rat mammary carcinoma. The effect of Cicaprost on prevention of lung metastasis, lymph node metastasis and primary tumour growth was investigated. Cicaprost given in daily doses of 0.01, 0.03 and 0.1 mg/kg orally, reduced the number of lung metastases in a dose-dependent manner. Whereas the median number of lung metastases in the controls was greater than 1000, Cicaprost at a dose of 0.1 mg/kg reduced the number of lung metastases to between 11 and 100. The weight of the ipsilateral axillary lymph nodes was diminished by Cicaprost to 30-50% of controls. Moreover, metastasis to the contralateral axillary lymph node was completely inhibited by Cicaprost at all three doses tested. Cicaprost did not influence the growth rate of the MTLn3 cell clone implanted into the mammary fat pad or the weight of the primary tumour at the end of treatment. In conclusion, in addition to its dose-dependent effect on haematogenous metastasis, Cicaprost strongly inhibits lymph node metastasis.

Animals

Effect of cisplatin on primary tumour growth and liver metastases in the M 5076 reticulum sarcoma: implication for new screening modalities.

We investigated the effect of cisplatin given at different treatment intervals on growth of the s.c.-implanted M 5076 reticulum sarcoma and the number of liver metastases at the end of the experiment (day 24). The later the treatment was started, the smaller was the tumour-inhibiting effect of cisplatin on primary tumour growth. Initiation of cisplatin treatment before day 14 after tumour implantation inhibited liver metastases completely. Treatment starting from day 14 or later did not influence the number of liver metastases. With regard to the clinical situation, the data imply that in the search for new leads in anticancer compounds, experimental conditions should concentrate on the inhibition of metastatic tumour growth.

Animals

U 46619 induces different blood pressure effects in male and female spontaneously hypertensive rats (SHR).

The effect of U 46619 (5 micrograms/kg i.v.) alone or in combination with acetylsalicylic acid (ASA) (100 mg/kg po.) on mean arterial blood pressure (MABP) was investigated in male and female spontaneously hypertensive rats (SHR). In male SHR, a significant increase of MABP was observed 1 min after administration of U 46619. Pretreatment of male SHR with ASA delayed the increase of MABP after intravenous injection of U 46619 compared to U 46619 alone. Whereas in control animals the elevated MABP returned to baseline values 5 min after intravenous application of U 46619, the MABP of ASA-pretreated male SHR remained significantly increased by about 30 mmHg. In contrast, the MABP of female SHR did not respond to U 46619 alone or to the combination of U 46619 and ASA. Sex differences were further shown by the vascular formation of thromboxane B2 (TXB2). Whereas in male SHR the vascular formation of TXB2 was increased by U 46619, the TXB2 formation of female SHR was decreased. The vascular formation of 6-keto-PGF1 alpha of male and female SHR was not influenced by U 46619 alone or a combination of U 46619 and ASA. In conclusion, our results demonstrate that the blood pressure of SHR respond differently to the TXA2 mimetic U 46619 in the two sexes. Furthermore, by modulating blood pressure response to TXA2, vasoactive prostanoids may be significantly involved in the maintenance of hypertension with male SHR.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Different effects of aspirin on blood pressure of spontaneously hypertensive rats (SHR) with high and spontaneously low levels of blood pressure.

Spontaneously hypertensive rats (SHR) of the Okamoto strain with blood pressure above 161 mmHg and SHR with blood pressure levels of less than 160 mmHg were treated with oral doses of aspirin (100 mg kg-1) for three days. Whereas the blood pressure of SHR with blood pressure above 161 mmHg was decreased by aspirin, the blood pressure of SHR below 160 mmHg was increased by aspirin. The extent and direction of blood pressure change by aspirin was strongly correlated with the blood pressure of SHR before treatment (r = -0.88). The effect of aspirin supports an important role for endogenous prostanoids in the regulation of blood pressure of SHR.

Animals

Sexual dimorphism in blood pressure response to thromboxane agonist U 46619 and to endothelin.

The blood pressure rising effect of two vasconstrictoryacting substances (the thromboxan agonist U 46619 and the endothelium-derived peptide endothelin-1) differs in male and in female rats and this fact depends on normotensive or hypertensive levels of blood pressure. Whereas in male rats the drug effect was changed by pretreatment with aspirin, in female rats aspirin was uneffective in changing the blood pressure response to the agents. It could be suggested that the mechanism(s) for blood pressure regulation, especially the vasoconstrictor system, is different in males and females.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5