P450 reductase (NADPH: cytochrome c (P450) reductase, EC 1.6.2.4) plays an important role in the reductive activation of the bioreductive drug tirapazamine (SR4233). Thus, in a panel of human breast cancer cell lines, expression of P450 reductase correlated with both the hypoxic toxicity and the metabolism of tirapazamine [Patterson et al (1995) Br J Cancer 72: 1144-1150]. To examine this dependence in more detail, the MDA231 cell line, which has the lowest activity of P450 reductase in our breast cell line panel, was transfected with the human P450 reductase cDNA. Isolated clones expressed a 78-kDa protein, which was detected with anti-P450 reductase antibody, and were shown to have up to a 53-fold increase in activity of the enzyme. Using six stable transfected clones covering the 53-fold range of activity of P450 reductase, it was shown that the enzyme activity correlated directly with both hypoxic and aerobic toxicity of tirapazamine, and metabolism of the drug under hypoxic conditions. No metabolism was detected under aerobic conditions. For RSU1069, toxicity was also correlated with P450 reductase activity, but only under hypoxic conditions. Measurable activity of P450 reductase was found in a selection of 14 primary human breast tumours. Activity covered an 18-fold range, which was generally higher than that seen in cell lines but within the range of activity measured in the transfected clones. These results suggest that if breast tumours have significant areas of low oxygen tension, then they are likely to be highly sensitive to the cytotoxic action of tirapazamine and RSU 1069.
In the present study we investigated the role of CD31 positive lymphocyte and the degree of macrophage tumour infiltration on the angiogenesis and prognosis of operable non-small cell lung cancer. 107 cases with T1,2-NO,1 staged non small cell lung cancer were stained for microvessels using the JC-70 (anti-CD31). CD31 positive lymphocyte infiltration was and graded as low (LLI) and High (HLI) lymphocytic infiltration. PD-ECGF (Platelet-derived endothelial cell growth factor, thymidine phosphorylase) is strongly expressed in tumour infiltrating macrophages. Cases were graded as bearing Low (LMI) and High (HMI) macrophage infiltration by eye appraisal. High CD31 positive lymphocyte infiltration but not macrophage infiltration was related to high tumour angiogenesis (p=0.007). Stratifying for PD-ECGF tumour expression, HLI was associated with High VG only for those cases with positive PD-ECGF tumour cell reactivity (p=0.01). Our data suggest that intense CD31 positive PP lymphocyte infiltration may have a role for the neo-angiogenesis to be triggered in PD-ECGF expressing tumours. High vascular grade cases with high lymphocyte infiltration may have a better prognosis despite the ominous presence of intense neo-angiogenesis (p=0.07).
Angiogenesis is a key step in tumor growth and metastasis. Many angiogenic factors have been described, including vascular endothelial growth factor, basic fibroblast growth factor, and thymidine phosphorylase. More recently, a number of naturally occurring inhibitors of angiogenesis, including thrombospondin and angiostatin, have also been identified. The control of angiogenesis by inhibitors regulated by suppressor oncogenes or produced by tumors has emerged as an important mechanism. The development of quantitative assessment of vascular density in primary human tumors has produced a new independent marker of prognosis and could be helpful in selecting patients for antiangiogenic therapy. A large number of antiangiogenic agents are in development, however, new ways to assess their antitumor effects will be necessary for the treatment of advanced cancer. Stabilization of disease may occur by inhibiting new vessel growth, and thus, evidence for a decrease in blood supply should be sought by positron emission tomography scanning, magnetic resonance imaging, or other methods. Markers of angiogenesis in urine or blood will prove to be helpful in the monitoring of treatments.
We have investigated by RNase protection analysis the expression of 2 angiogenic factors in 45 primary bladder tumors and 8 normal bladders. Expression of vascular endothelial growth factor (VEGF) was 3-fold higher and that of platelet-derived endothelial cell growth factor was 40-fold higher in tumors compared to normal bladder. However, the factors were differentially expressed in different stages of the cancer. Expression of VEGF in superficial tumors was 4-fold higher than in invasive tumors and 10-fold higher than in normal bladder (superficial versus invasive, P < 0.0006; superficial versus normal, P < 0.0002). Expression of platelet-derived endothelial cell growth factor in invasive tumors was 33-fold higher than in superficial tumors and 260-fold higher than in normal bladder (invasive versus superficial, P < 0.0001; invasive versus normal, P < 0.0003). In well differentiated or moderately differentiated superficial tumors which had invaded the lamina propria (pT1G1/2) VEGF expression was 4-fold higher in tumors which subsequently recurred at 3 months compared to those which did not recur (P < 0.002). Thus there are two distinct angiogenic pathways involved in different stages of bladder cancer, which is in keeping with the evidence for two different genetic pathways. Elevated VEGF expression predicts early recurrence of pT1G1/2 tumors.
Bryostatin 1, a novel antineoplastic agent and protein kinase C (PKC) activator, has been found to induce myalgia (muscle pain) 48 h after administration in clinical trials. This is the dose-limiting toxicity and has restricted the duration of therapy in phase I trials. To investigate the mechanisms and try to increase toleration of the drug, we studied calf muscle metabolism of 14 patients at rest and during exercise and subsequent recovery using 31P magnetic resonance spectroscopy (MRS) before and 4 h, 48-72 h and 1-2 weeks following bryostatin therapy. In resting muscle there was a significant (P < 0.001) increase in the phosphodiester/adenosine 5'-triphosphate (PDE/ATP) ratio 48 h post bryostatin and in patients with myalgia compared with pre-bryostatin control studies. Following exercise, patients with myalgia showed significantly slower phosphocreatine (PCr) and ADP recovery half-time (P < or = 0.05) suggesting impaired mitochondrial (oxidative) energy production, possibly due to a direct effect on the mitochondria or secondary to reduced blood flow. The apparent proton efflux rate following exercise was significantly reduced 4 h after bryostatin (P < or = 0.05), suggesting reduced blood flow. The rate of post-exercise reoxygenation was studied in four patients by near-infrared spectroscopy 4 h post bryostatin. In three of these the rate was reduced, consistent with reduced muscle blood flow. Bryostatin 1 appeared to cause a long-lasting impairment of oxidative metabolism and proton washout from muscle, consistent with a vasoconstrictive action. Thus these studies provide evidence for two mechanisms of the dose-limiting toxicity for bryostatin. Prospective studies on the use of vasodilators to improve the tolerance of the drug should be carried out.
The sensitivity of human breast and lung cancer cell lines to TGF-alpha-PE40, a novel chimeric recombinant cytotoxin composed of two independent domains, (i) TGF-alpha and (ii) a 40 kDa segment of the Pseudomonas exotoxin protein, PE-40, was investigated. Toxicity varied widely, correlated with epidermal growth factor receptor (EGFR) levels (P = 0.01) and was greatly reduced by EGF, indicating that binding of TGF-alpha-PE40 to EGFR is important in mediating toxicity. Cell lines expressing low EGFR levels were most highly protected by EGF, indicating that normal (low EGFR-expressing) tissue may be selectively protected by EGF in vivo. P-glycoprotein did not confer resistance to TGF-alpha-PE40, and toxicity was unaffected by multidrug resistance-modulating agents (cyclosporin A, tamoxifen, verapamil), indicating a role for TGF-alpha-PE40 in the clinical management of drug-resistant tumours.
Increased expression of epidermal growth factor receptor (EGFr) has been reported in non small cell lung cancers (NSCLC) when compared to normal lung. We have examined post-operative survival in 19 surgically treated patients with NSCLC who had full characterisation of EGFr on primary tumour membrane preparations from resection specimens. There were ten squamous, seven adeno and two large cell carcinomas. The median concentration of high affinity sites was 31 fmol per mg of protein (4-1532) and the median dissociation constant (Kd) of these high affinity sites was 2.3 x 10(-10) per mol (1.2-30 x 10(-10)). Seven patients survived over 5 years. Twelve patients died between 8.5 and 55 months from the time of surgery. When > 5 year survivors were compared to non-survivors there was no difference as regards tumour size or stage, or as regards age or sex. The survivors had a median concentration of high affinity EGFr sites of 16.1 fmol mg-1 protein compared to a median concentration of 68.6 fmol mg-1 protein in the non-survivors (P = 0.01 Wilcoxon test). No long term survivor had > 35 fmol mg-1 protein of receptor. Thus EGFr quantitation may give independent prognostic information in NSCLC and help to select patients for adjuvant therapy after surgery. These results need confirmation in a larger prospective study.
The ability of the anti-oestrogens tamoxifen, toremifene and their 4-hydroxy and N-desmethyl metabolites to modify doxorubicin (dox) toxicity to intrinsically resistant and multidrug resistant cell lines was compared, using human breast and lung cancer, and Chinese hamster ovary cell lines. The anti-oestrogens significantly enhanced dox toxicity to multidrug resistant, P-glycoprotein-positive cell lines, but did not affect toxicity to intrinsically resistant, P-glycoprotein-negative cells. Modification was observed at clinically achievable anti-oestrogen concentrations. Toremifene and tamoxifen would therefore appear to be good candidates for in vivo studies as MDR modulating agents in selected patients with P-glycoprotein-positive tumours.