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F R Balkwill

Publications and source records attributed to F R Balkwill.

At least 19 recordsLinked to original sources

Measuring cytokine levels in blood. Importance of anticoagulants, processing, and storage conditions.

The stability and recovery of six human recombinant cytokines (tumour necrosis factor (TNF), interferon-alpha (IFN-alpha), IFN-gamma, interleukin-1 alpha (IL-1 alpha), IL-1 beta, and IL-6) from whole blood was investigated with a view to optimizing blood collection and storage procedures prior to performing immunoassays. Blood from healthy volunteers was subjected to various processing and storage procedures. Blood samples were treated with either: ethylenediamine tetraacetic acid (EDTA) (1.5 mg/ml blood) (E); EDTA/Trasylol (1.5 mg and 1000 KIU/ml blood) (ET); heparin (30 IU/ml) (H) or allowed to clot (serum). The bloods were spiked with individual cytokines, split into aliquots and kept at 4 degrees C or RT. In the first instance spiked bloods from healthy volunteers (n = 5 per cytokine) were processed using sterile and non-pyrogenic materials and procedures. At regular time intervals, samples were cold spun, separated, flash frozen and assayed for the appropriate cytokine using RIA/IRMA methods. In a further study, timed separation was repeated with spiked blood from healthy volunteers (n = 5 per cytokine) using normal commercially available blood collection materials and procedures. In a third study, spiked blood from healthy volunteers (n = 3 per cytokine) was processed under sterile and non-pyrogenic conditions, and the blood samples separated, aliquoted and flash frozen within half hour of collection. These were then subjected to repeated cycles of freeze thawing at 4 degrees C or RT before assaying. In general, the stability of cytokines in whole blood was improved by storage at 4 degrees C and/or rapid separation. There was no significant difference between samples handled under sterile, non-pyrogenic conditions and those collected using normal blood collection procedures. The blood collection procedures described in this paper did not induce any of the six cytokines in the unspiked blood. Overall, EDTA-treated samples performed most consistently. The addition of trasylol did not significantly affect the results. Most of the cytokines appeared unaffected by up to three freeze thaw cycles. The stability and recovery of the spiked cytokines varied from least stable to most stable spiked cytokine as follows; TNF-alpha less than IL-6 less than IFN-gamma less than IL-1 alpha less than IFN-alpha less than IL-1 beta. The recovery of spiked IFN-gamma from heparinized plasma samples was considerably higher than any other plasma or serum samples. The recovery of spiked TNF-alpha and IL-6 from serum samples was consistently lower than amounts recovered from plasma samples (anticoagulant treated).(ABSTRACT TRUNCATED AT 400 WORDS)

Anticoagulants

Tumour necrosis factor and cancer.

TNF is a cytokine whose diverse actions are dependent on the local microenvironment. As a member of the cytokine network, TNF plays an important role in infection and inflammation, but excessive and deregulated production can contribute to disease processes. Likewise in malignant disease, TNF may have a role in cancer therapy and contribute to host response against tumours, but it may also be involved in the progression and spread of the cancer. In experimental models, recombinant TNF can induce significant haemorrhagic necrosis, localised to the tumour vasculature and specific tumour immunity. Although the historical background and preclinical data are promising, systemic therapy with TNF in human cancer has proved highly toxic and is inactive against all tumour types so far tested. Local therapy, particularly isolated limb perfusion, has resulted in complete and long lasting tumour regressions with necrotic activity confined solely to the tumour vascular bed. However, in several animal models, TNF contributes to malignant progression and there is evidence that TNF may have autocrine or paracrine actions in human ovarian cancer.

Animals

Effects of intraperitoneal recombinant interleukin-1 beta in intraperitoneal human ovarian cancer xenograft models: comparison with the effects of tumour necrosis factor.

The effect of intraperitoneal (i.p.) injection of recombinant human interleukin-1 beta (rhIL-1 beta) was studied in three i.p. nude mouse xenograft models of human ovarian cancer (HU, OS, and LA). Intraperitoneal rhIL-1 beta administration led to a dose dependent replacement of peritoneal ascitic tumour with solid tumours attached to the peritoneum and intraabdominal viscera in two (HU and LA) out of the three xenograft models. In the third xenograft model (OS), low doses of rhIL-1 beta (10 ng day) promoted micrometastatic peritoneal implants of tumour, but higher doses of rhIL-1 beta (1 microgram day) had a marked antitumour effect. This was due to direct cytotoxicity for tumour cells and was not related to peritoneal neutrophil influx induced by rhIL-1 beta. Recombinant human TNF (rhTNF) also promoted tumour implantation in all three xenograft models, but its antitumour effects differed from rhIL-1 beta. TNF increased the survival of HU and LA bearing mice, but had no antitumour effect in the OS xenograft model. Analysis of peritoneal fluid and tumour xenografts showed that TNF induced murine IL-1 in the tumour bearing mice. The magnitude of IL-1 induction indicated that TNF induced IL-1 did not contribute significantly to its effects.

Adult

Induction of soluble tumour necrosis factor receptors during treatment with interleukin-2.

Interleukin-2 (IL-2) treatment induces other cytokines such as tumour necrosis factor (TNF) TNF may mediate some of the anti-tumour activity of IL-2, but conversely, may contribute to its dose limiting toxicities. Cleaved extracellular domains of the p55 and the p75 TNF receptors (sTNF-R1 and R2) bind to and inhibit the biological activity of TNF in vitro, but may also act as carrier molecules. We have assayed TNF and sTNFR-1 and 2 in the plasma of advanced cancer patients, before and during treatment with IL-2. Plasma levels of TNF in 22 patients were not significantly different from 25 normal controls, but levels of sTNFR-1 and sTNFR-2 were higher (P < 0.001). Levels of TNF and both its soluble receptors were significantly increased in 13 patients receiving IL-2 therapy. Maximum induced levels of sTNFR-1 and sTNFR-2 correlated closely with maximum induced levels of TNF (P < 0.001), but peak levels of sTNFR-1 and two were achieved 24-48 h after peak TNF. Levels of TNF and sTNF-Rs did not correlate with toxicity. Treatment with IL-2 leads not only to induction of TNF but also soluble binding proteins at levels which may modulate its biological activity.

Breast Neoplasms

Beta actin expression and organization of actin filaments in colorectal neoplasia.

Several studies have linked abnormal actin cytoskeletal organization and mutant actin genes with neoplastic transformation. Using in situ hybridization techniques we looked at expression of beta actin mRNA at a cellular level in normal, benign and neoplastic human colorectal tissues and correlated the level of expression with the extent of actin cytoskeletal organization in sequential sections. Normal tissues showed light labelling with the actin riboprobe, but non-neoplastic crypts, with evidence of regeneration and repair, showed greater levels. Higher levels of actin mRNA expression were found in adenomas and metaplastic polyps, but the highest levels were found in carcinomas, particularly those that were poorly differentiated. Cytoskeletal actin organization was, however, reduced in colorectal neoplasia. Normal mucosa showed the highest level of cytoskeletal actin organization, as assessed by phalloidin binding, and adenomas and metaplastic polyps also stained strongly. In contrast, phalloidin binding to poorly differentiated carcinomas was absent or very weak. The inverse relationship between actin mRNA expression and actin filament organization was confined to the carcinomas studied and may indicate defects in actin binding proteins or in post-transcriptional or translational events.

Actins

Antitumor activity of gamma-interferon in ascitic and solid tumor models of human ovarian cancer.

We have investigated the action of recombinant human gamma-interferon (rHuIFN-gamma) against human ovarian cancer xenografts growing as ascites or as bulky solid i.p. tumors in nude mice. Both forms of the disease responded to i.p. rHuIFN-gamma with significant increases in mouse survival time, and in 2 of 3 ascitic models the mice were cured of peritoneal disease. The activity of rHuIFN-gamma was dose and schedule dependent, and xenografts derived from 3 different patients showed a heterogeneity of response. Peak i.p. levels of rHuIFN-gamma in nude mice bearing multiple i.p. solid tumors were similar to those found in ovarian cancer patients receiving i.p. rHuIFN-gamma, but clearance was more rapid in the mice. Rat gamma-interferon had no antitumor activity at the same doses and schedules although it had some biological activity in the nude mice. Histological examination of treated tumors revealed increased necrosis and loss of cellular organization with large areas of hypocellular epithelial mucin. These changes were preceded by a fall in tumor tryptophan and a rise in tumor kynurenine. We conclude that rHuIFN-gamma has a direct dose related antitumor effect on ovarian cancer xenografts that is preceded by increased metabolism of tryptophan.

Animals

Enhancement of metastatic potential by gamma-interferon.

Preincubation of murine colon 26 colon adenocarcinoma cells with gamma-interferon (IFN-gamma), but not alpha-interferon, produced a significant increase in experimental pulmonary metastases in syngeneic BALB/c and T-cell-deficient BALB/c nude mice. The enhancement was seen after as little as 1 h of exposure to 1 unit/ml of IFN-gamma and persisted for at least 72 h following removal of the cytokine. IFN-gamma exerted its effects by increasing the pulmonary retention of cells during the first 6 h following tumor cell injection. During this period all cells visualized in the lung were trapped in pulmonary capillaries. The enhancement was not due to modulations in class I major histocompatibility complex surface antigen expression; nor was it due to alterations in cell size, adhesion to components of the extracellular matrix in vitro, heterotypic or homotypic adhesion, sensitivity to lysis by activated peritoneal macrophages, osmotic fragility, enhancement of surface class II major histocompatibility complex antigen expression, or enhancement of intercellular adhesion molecule-1 (ICAM-1). Colon 26 was completely resistant to natural killer cell-mediated lysis in vitro, and IFN-gamma did not modulate the ability of colon 26 to form conjugates with isolated splenocytes. In vivo elimination of anti-asialo GM1 + cells increased pulmonary metastasis, and in such mice, there was no longer a difference in metastatic potential between control and IFN-gamma-treated cells. We conclude that low doses of IFN-gamma generated at the site of the tumor by host-infiltrating cells or during cytokine therapy could enhance the survival of tumor cells in the circulation and enhance their metastatic potential.

Adenocarcinoma

Differential effects of recombinant interferon alpha on constitutive and inducible cytochrome P450 isozymes in mouse liver.

The hepatic cytochrome P450 (P450)-dependent monooxygenase system is subject to regulation by a variety of xenobiotics and endogenous factors. During infection and inflammation the P450 system is usually suppressed, but the factors responsible for this phenomenon and the P450 isozymes involved have not been identified conclusively. We have studied the effects of a specific inflammatory mediator, recombinant interferon alpha, on the constitutive and inducible expression of P450 isozymes (from the CYP1A, CYP2B, and CYP2C) gene families using isozyme preferred substrates and Western blot analysis. Both increases and decreases in P450 levels occurred in response to interferon alpha. Suppression of constitutive P450 isozyme expression occurred and was shown to involve a decrease in steady-state protein expression. The induction of 7-ethoxyresorufin O-deethylase activity by 3-MC was potentiated whereas induction of 7-pentoxyresorufin- and 7-benzyloxyresorufin O-dealkylases by PB was suppressed by interferon alpha. These data demonstrate that the effects of interferon alpha on the P450-dependent monooxygenase system are complex, involving differential regulation of several isozymes. Both direct and indirect mechanisms may participate in these phenomena.

Animals

Human small-cell lung-cancer cells are cytokine-resistant but NK/LAK-sensitive.

We have studied the effects of 8 cytokines and their combinations on the in vitro growth of 10 human small-cell cancer lines (SCLC). Interferon-alpha and gamma (IFN-alpha and gamma) caused significant but slight growth inhibition over a 7-day incubation period. However, none of the other 6 cytokines, tumor necrosis factor (TNF), lymphotoxin (LT), interleukin-1 beta (IL-1 beta) interleukin-2 (IL-2), transforming growth factor-beta 1 (TGF-beta 1), or granulocyte colony-stimulating factor (G-CSF), modified SCLC cell proliferation. In contrast, all 10 lines were sensitive to lysis by natural killer (NK) and lymphokine-activated killer (LAK) cells. Sensitivity to LAK cells could be increased by pretreatment of SCLC cells with IFN-gamma. As resistance to the cytostatic/cytotoxic activity of some cytokines has been associated with autocrine production of cytokines, we screened the SCLC lines for cytokine mRNAs. Within the limits of detection of the assay we found no expression of TNF, TGF-beta 1, IL-1 beta or IL-6 mRNA in the 10 SCLC lines.

Blotting, Northern

Effects of interferons and other cytokines on tumors in animals: a review.

The term cytokine describes a group of protein cell regulators involved in the control of cell growth and differentiation in embryogenesis, immunity and inflammation. They are of low molecular weight, are produced locally, and act in an autocrine or paracrine manner. In the past decade their use as cancer therapy has become a reality. Thirty years ago mice were treated with the antiviral protein interferon (IFN) which not only produced a reduction in the incidence of virus-induced tumors but also slowed the development of transplantable tumors. This was one of the first indications that cytokines can be negative regulators of cell growth. Here we outline current knowledge of the actions of IFNs and other cytokines in animal models, and draw parallels with clinical trials to illustrate the invaluable nature of this preclinical and mechanistic work.

Animals

Investigation of cytokine gene expression in human colorectal cancer.

RNA was extracted from 28 samples of colorectal cancer and 26 samples of adjacent normal bowel. Northern blotting analysis showed the presence of mRNA for tumor necrosis factor (TNF) in 15 of 28 cancer samples and 6 of 26 matched normal areas. In 10 patients, TNF mRNA was found only in the tumor; in 5, TNF mRNA was seen in tumor and normal areas; and in only 1 was TNF mRNA seen in the normal, but not the malignant, area. The expression of TNF mRNA was not related to the stage of disease, degree of lymphocyte infiltration, or necrosis in the tumor. Blots were reprobed for gamma-interferon, interleukin (IL) 1 alpha and beta, IL-6, and transforming growth factor beta 1 mRNA. One tumor sample was positive for IL-1 beta, and one normal sample expressed interferon gamma mRNA. All samples had transforming growth factor beta 1 mRNA, and there was no obvious difference between levels in tumor tissues or adjacent normal areas. In situ hybridization studies with a TNF riboprobe showed that TNF mRNA was only detectable in a small minority of mononuclear and predominantly stromal cells. Immunohistochemistry on sequential sections showed that CD4- and CD8-positive lymphocytes, and macrophages, were present in the stroma. An antibody to the macrophage C3b receptor identified a minority population whose distribution corresponded closely to the cells labeled with the TNF riboprobe.

Biological Factors

In situ detection of tumour necrosis factor in human ovarian cancer specimens.

In situ hybridisation was used to study the local expression of tumour necrosis factor (TNF) mRNA in human ovarian tumours. In 8 of 14 ovarian cancers studied, a minority of cells in the epithelial areas of the tumour contained TNF mRNA. In individual high-power fields as many as 8% of cells were positive for TNF mRNA. Immunohistochemical studies on sequential sections and the morphology of the positive cells led to the conclusion that the ovarian tumour cells were transcribing the TNF gene. There was immunohistochemical evidence of the production of TNF protein by the tumour cells and TNF protein in a tumour lysate. The production of TNF by human ovarian cancer cells may influence the biology of the tumour, contribute to neoplastic progression and alter the response to therapy.

Antibodies, Monoclonal

Cells secreting tumour necrosis factor show enhanced metastasis in nude mice.

A tumour cell may acquire the ability to invade and metastasise via heritable changes in its genome and/or changes in the local environment. Chinese hamster ovary (CHO) cells transfected with the gene for human TNF (CHO/TNF cells) showed a greatly enhanced ability to invade peritoneal surfaces and metastasise in nude mice compared with cells transfected by the vector alone. In situ hybridisation with a riboprobe for human TNF showed that the CHO/TNF cells were actively transcribing this cytokine after in vivo injection. Neutralising antibodies to human TNF, both whole IgG and F(ab)2 fragments, abrogated the enhanced metastatic activity of the TNF-secreting cells. Thus transfection of a cytokine/growth-factor gene can confer a metastatic phenotype on the recipient cell.

Animals