Majority view of climate scientists is that global warming is indeed happening.
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Biomedical subjects
Publications and source records attributed to M Saunders.
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1. It is now accepted that uncontrolled proliferation of human airway smooth muscle (HASM) cells contributes, in many cases, to the chronic stages of asthma. However, the physiological and pathophysiological processes regulating cell growth and division in the airway are not clear. We have recently shown that the immediate early gene, cyclo-oxygenase-2, is induced by cytokines in HASM cells. Since cyclo-oxygenase metabolites, such as prostaglandin (PG) E2 have been shown to modulate HASM cell growth, we have investigated any autocrine action of endogenously released cyclo-oxygenase-1/2 products on the proliferative responses in these cells. 2. HASM cells were cultured from healthy tissue obtained at lung or heart/lung transplantation. HASM cell proliferation was measured by [3H]-methyl thymidine uptake by cells and by cell counts. Cyclo-oxygenase-2 expression was measured by Western blot analysis and activity measured by the release of PGE2, by radioimmunoasay. 3. HASM cells proliferated in response to foetal calf serum, a response that was greatly inhibited when cyclo-oxygenase-2 was induced with either interleukin-1beta plus tumour necrosis factor-alpha or interleukin-1beta, tumour necrosis factor alpha plus interferon gamma (each at 10 ng ml(-1)). The inhibitory effect of cytokines on HASM cell proliferation was reversed in a concentration dependent manner by either the mixed cyclo-oxygenase-1/-2 inhibitor, indomethacin or the selective cyclo-oxygenase-2 inhibitor, L-745,337 (each at 10 microM). 4. PGE2 or the stable analogue of prostacyclin, cicaprost concentration-dependently (0.1 pmol to 1 microM) inhibited serum induced proliferation of HASM cells. By contrast, the TP receptor agonist, U46619 stimulated proliferation of HASM cells when cells were cultured without but not with serum. Other cyclo-oxygenase products, PGD2, PGF2alpha had no effect on cellular proliferation at concentrations up to 1 microM. 5. These observations illustrate a profound inhibitory effect of cyclo-oxygenase-2 induction on HASM cell proliferation, possibly via IP or EP receptor activation. Cyclo-oxygenase-2 induction has, thus far, been associated with the pro-inflammatory responses of plasma exudation and oedema formation and is assumed to be an enzyme worthy of selective inhibition in many disease states. However, our observations suggest that cyclo-oxygenase-2 can have an anti-inflammatory, anti-proliferative function in the airways. These observations may have importance in the use and development of therapies for airway disease such as asthma.
Interleukin (IL)-8 is a C-X-C chemokine that potently chemoattracts and activates neutrophils. We determined whether IL-8 could be produced by human airway smooth muscle cells in culture and examined its regulation. TNF-alpha stimulated IL-8 mRNA expression and protein release in a time- and dose-dependent manner, whereas IFN-gamma alone had no effect. Both cytokines together did not induce greater IL-8 release compared to TNF-alpha alone. IL-1beta was more potent in inducing IL-8 release and, together with TNF-alpha, there was a synergistic augmentation of IL-8 release. IL-8 release induced by TNF-alpha and IFN-gamma was partly inhibited by the Th-2-derived cytokines IL-4, IL-10, and IL-13, as well as by dexamethasone. In addition to its contractile responses, airway smooth muscle cells have synthetic and secretory potential with the release of IL-8 and subsequent recruitment and activation of neutrophils in the airways. Release of IL-8 can be modulated by Th-2-derived cytokines and corticosteroids.
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BACKGROUND: Human tumour cells can proliferate rapidly, and giving radiotherapy in many small fractions may reduce long-term normal-tissue morbidity. In response to these observations, we developed the CHART (continuous hyperfractionated accelerated radiotherapy) regimen, which uses thirty-six small fractions of 1.5 Gy given three times per day, to give 54 Gy in only 12 consecutive days. We report the long-term follow-up of a trial of CHART versus conventional radiotherapy in patients with locally advanced non-small-cell lung cancer (NSCLC). METHODS: 563 patients were entered by thirteen centres between April, 1990, and March, 1995. We included patients with NSCLC localised to the chest with a performance status of 0 or 1 in whom radical radiotherapy was chosen as the definitive management. Patients were randomly allocated in a 3:2 ratio to CHART or conventional radiotherapy. The latter was thirty fractions of 2 Gy to a total dose of 60 Gy in 6 weeks. RESULTS: The groups were well matched for possible prognostic factors. Overall there was a 24% reduction in the relative risk of death, which is equivalent to an absolute improvement in 2-year survival of 9% from 20% to 29% (p = 0.004, 95% CI 0.63-0.92). Subgroup analyses (predefined) suggest that the largest benefit occurred in patients with squamous cell carcinomas (82% of the cases), in whom there was a 34% reduction in the relative risk of death (an absolute improvement at 2 years of 14% from 19% to 33%). During the first 3 months, severe dysphagia occurred more often in the CHART group than in the group on conventional radiotherapy (19 vs 3%). Otherwise, there were no important differences in short-term or long-term morbidity. INTERPRETATION: CHART compared with conventional radiotherapy gave a significant improvement in survival of patients with NSCLC. Further improvement may be achieved with dose escalation in conformal radiotherapy, by the addition of cytotoxic chemotherapy, and by hypoxic cell radiosensitisation.
BACKGROUND AND PURPOSE: Continuous, hyperfractionated, accelerated radiotherapy (CHART) has shown promise of improved tumour control and reduced late morbidity in pilot studies and has now been tested in a multicentre randomised controlled clinical trial. MATERIAL AND METHODS: Patients with squamous cell cancer in the main sites within the head and neck region with the general exception of early T1 N0 tumours were entered into the study by 11 centres. There was a 3:2 randomisation to either CHART, where a dose of 54 Gy was given in 36 fractions over 12 days, or to conventional therapy where 66 Gy was given in 33 fractions over 6.5 weeks. A total of 918 patients were included over a 5 year period from March 1990. RESULTS: ACUTE MORBIDITY: Acute radiation mucositis was more severe with CHART, occurred earlier but settled sooner and was in nearly all cases healed by 8 weeks in both arms. Skin reactions were less severe and settled more quickly in the CHART treated patients. TUMOUR CONTROL AND SURVIVAL: Life table analyses of loco-regional control, primary tumour control, nodal control, disease-free interval, freedom from metastasis and survival showed no evidence of differences between the two arms. In exploratory subgroup analyses there was evidence of a greater response to CHART in younger patients (P = 0.041) and poorly differentiated tumours appeared to fare better with conventional radiotherapy (P = 0.030). In the larynx there was evidence of a trend towards increasing benefit with more advanced T stage (P = 0.002). LATE TREATMENT RELATED MORBIDITY: Osteoradionecrosis occurred in 0.4% of patients after CHART and 1.4% of patients after conventional radiotherapy. The incidence of chondritis or cartilage necrosis was similar in both arms. Life table analysis showed evidence of reduced severity in a number of late morbidities in favour of CHART. These were most striking for skin telangiectasia, superficial and deep ulceration of the mucosa and laryngeal oedema. CONCLUSION: Similar local turnout control was achieved by CHART as compared with conventional radiotherapy despite the reduction in total dose from 66 to 54 Gy supporting the importance of repopulation as a cause of radiation failure. The effects seen in advanced laryngeal cancer and those related to histological differentiation need further study. Reduced late morbidity is a factor which together with patient preference should be considered in the decision as to the programme of radiotherapy to employ in the curative treatment of head and neck cancer.
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Acetylsalicylic acid (aspirin) is the drug most commonly self-administered to reduce inflammation, swelling, and pain. The established mechanism of action of aspirin is inhibition of the enzyme cyclo-oxygenase (COX). Once taken, aspirin is rapidly deacetylated to form salicylic acid, which may account, at least in part, for the therapeutic actions of aspirin. However, where tested, salicylic acid has been found to be a relatively inactive inhibitor of COX activity in vitro, despite being an effective inhibitor of prostanoids formed at the site of inflammation in vivo. Recently, the identification of a cytokine-inducible isoform of COX, COX-2, has led to the suggestion that salicylate produces its anti-inflammatory actions by inhibiting COX-2 induction through actions on nuclear factor kappaB (NF-kappaB). We have used interleukin 1beta-induced COX-2 in human A549 cells to investigate the mechanism of action of salicylate on COX-2 activity. Sodium salicylate inhibited prostaglandin E2 release when added together with interleukin 1beta for 24 hr with an IC50 value of 5 microg/ml, an effect that was independent of NF-kappaB activation or COX-2 transcription or translation. Sodium salicylate acutely (30 min) also caused a concentration-dependent inhibition of COX-2 activity measured in the presence of 0, 1, or 10 microM exogenous arachidonic acid. In contrast, when exogenous arachidonic acid was increased to 30 microM, sodium salicylate was a very weak inhibitor of COX-2 activity with an IC50 of >100 microg/ml. Thus, sodium salicylate is an effective inhibitor of COX-2 activity at concentrations far below those required to inhibit NF-kappaB (20 mg/ml) activation and is easily displaced by arachidonic acid.
We validated whole body composition estimates from dual-energy X-ray absorptiometry (DEXA) against estimates from a four-component model to determine whether accuracy is affected by gender, race, athletic status, or musculoskeletal development in young adults. Measurements of body density by hydrostatic weighing, body water by deuterium dilution, and bone mineral by whole body DEXA were obtained in 172 young men (n = 91) and women (n = 81). Estimates of body fat (%Fat) from DEXA (%FatDEXA) were highly correlated with estimates of body fat from the four-component model [body density, total body water, and total body mineral (%Fatd,w,m); r = 0.94, standard error of the estimante (SEE) = 2.8% body mass (BM)] with no significant difference between methods [mean of the difference +/- SD of the difference = -0.4 +/- 2.9 (SD) % BM, P = 0.10] in women and men. On the basis of the comparison with %Fatd,w,m, estimates of %FatDEXA were slightly more accurate than those from body density (r = 0.91, SEE = 3.4%; mean of the difference +/- SD of the difference = -1.2 +/- 3.4% BM). Differences between %FatDEXA and %Fatd,w,m were weakly related to body thickness, as reflected by BMI (r = -0.34), and to the percentage of water in the fat-free mass (r = -0.51), but were not affected by race, athletic status, or musculoskeletal development. We conclude that body composition estimates from DEXA are accurate compared with those from a four-component model in young adults who vary in gender, race, athletic status, body size, musculoskeletal development, and body fatness.
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Interleukin-6 (IL-6) induces tyrosine phosphorylation and activation of the latent transcription factor Stat3 in HepG2 cells. Mutation of Stat3 tyrosine 705 to phenylalanine (Y705F) inhibits IL-6-induced tyrosine phosphorylation of this Stat3 mutant in transfected HepG2 cells. In cotransfections of HepG2 cells, the Stat3 mutant Y705F causes a reduction of the tyrosine phosphorylation of wild type Stat3-FLAG. Moreover, Y705F inhibits the action of endogenous Stat3 in cotransfected cells, reducing IL-6 induction of a Stat3-responsive reporter construct. Y705F therefore acts as a dominant negative mutation of Stat3.
HTLV-1-associated acute adult T-cell leukaemia-lymphoma (ATL) is a highly aggressive malignant disorder with a median survival of 6 months or less. We describe an Afro-Caribbean female with very poor prognosis ATL who underwent chemotherapy with a 4 d infusion schedule of cyclophosphamide, doxorubicin and etoposide, followed by successful allogeneic bone marrow transplantation (BMT) from her HTLV-1-negative histocompatible sister. The patient remains in complete remission 23 months after BMT and has 100% donor haemopoiesis with no evidence of HTLV-1 infection on PCR testing. We suggest that allo-BMT can prolong disease free survival or may even be curative in HTLV patients.
In a prospective study of 78 patients with nasopharyngeal cancer, we examined the prognostic significance of T stage, histology, parapharyngeal involvement, and lymph node dimensions, size, and level concerning distant metastasis. AU patients were treated with radical radiotherapy alone and completed 3 to 7 years of follow-up. In univariate analysis of time to metastasis, there was a significant difference stratifying for T stage (T1 and 2 versus T3 and 4), node dimensions (less than 6 versus more than or equal to 6 cm), neck level (above versus below the thyroid notch), and parapharyngeal involvement, but not for bilaterality of lymphadenopathy. Histology was an important prognostic factor related to distant metastasis since none of the 24 World Health Organization class I cases showed distant metastasis versus 14 (26%) of 54 patients with World Health Organization class II/III carcinoma. A multivariate duration model of time to metastasis within the later histologic group suggested that lymph node dimensions, node level, and T stage were the most important factors related to distant metastases, with the hazard ratios being 3.98, 3.23, and 1.76, respectively. Multivariate analysis within the T3- to T4-stage group showed that node dimension was the only significant variable, with an associated hazard ratio of 4.09. Cases with upper-neck lymphadenopathy and node dimensions of less than 6 cm had a distant metastasis rate of <5%. We conclude that adjuvant chemotherapy for nasopharyngeal cancer is justified in T3- and T4-staged cases with nonkeratinizing or undifferentiated histology and with lymph nodes larger than 6 cm and/or located below the thyroid notch.
The 40-year history of hypoxic cell sensitisation can be traced from hyperbaric oxygen to the present clinical studies with carbogen, nicotinamide and accelerated radiotherapy. A meta-analysis by Overgaard (1995) included 10703 cases entered into 83 randomised controlled trials and showed an overall improvement in local tumour control of 4.6% (P = 0.00001) and in survival of 2.8% (P = 0.005). Hyperbaric oxygen gave a 6.6% (P = 0.003) improvement in local control and hypoxic cell sensitisers 3.9% (P = 0.04). Despite this, the only hypoxic cell-sensitising method in routine clinical use is the giving of nimorazole in supraglottic and pharyngeal carcinomas. Acute, as well as chronic hypoxia has been recognised and nicotinamide, the amide derivative of B3 is believed to prevent the former. Thus ARCON (accelerated radiotherapy, carbogen and nicotinamide) has been introduced in the clinic in an effort to overcome tumour proliferation, chronic and acute hypoxia, respectively. The success of future randomised controlled trials would be improved greatly if methods were available to measure the concentration of hypoxic cells in tumours before treatment and thus select those where benefit may be gained. The use of ARCON recognises that tumour cell proliferation is an important cause of failure in addition to hypoxia. However, intrinsic radiosensitivity may also need to be taken into account in the future. Clinical trials aim to improve the therapeutic ratio and thus the study of morbidity is as important as local tumour control. International collaboration is essential if randomised controlled trials are to be carried out within reasonable periods of time.
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