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Biomedical subjects

James W Denham

Publications and source records attributed to James W Denham.

7 recordsLinked to original sources

Acceptability of short term neo-adjuvant androgen deprivation in patients with locally advanced prostate cancer.

PURPOSE: To determine the acceptability of short term neo-adjuvant maximal androgen deprivation (MAD) to patients treated with external beam radiation for locally advanced prostate cancer. METHODS: Between 1996 and 2000, 818 patients with locally advanced, but non-metastatic, prostate cancer were entered into a randomised clinical trial (TROG 96.01), which compared radiation treatment alone with the same radiation treatment and 3 or 6 months neo-adjuvant MAD with goserelin and flutamide. Relevant symptoms, and how troublesome they were to the patient, were scored using a self-assessment questionnaire. This was completed by the patient at registration, and at specified times during and after treatment. Patients taking flutamide had liver function tests checked at regular intervals. RESULTS: All patients have completed at least 12 months follow-up after treatment. Nearly all patients completed planned treatment with goserelin, but 27% of patients in the 6-month MAD treatment arm, and 20% in the 3-month arm, had to stop flutamide early. This was mainly due to altered liver function (up to 17% patients) and bowel side effects (up to 8% patients). However, although flutamide resulted in more bowel symptoms for patients on MAD, there was significant reduction in some urinary symptoms on this treatment. Acute bowel and urinary side effects at the end of radiation treatment were similar in all treatment arms. Side effect severity was unrelated to radiation target volume size, which was reduced by MAD, but symptomatology prior to any treatment was a powerful predictor. Of the 36% of patients who were sexually active before any treatment, the majority became inactive whilst on MAD. However, sexual activity at 12 months after radiation treatment was similar in all treatment arms, indicating that the effects of short term MAD on sexual function are reversible. CONCLUSION: Despite temporary effects on sexual activity, and compliance difficulties with flutamide, short-term neo-adjuvant MAD was not perceived by patients to be a major inconvenience. If neo-adjuvant MAD in the way tested can be demonstrated to lead to improved biochemical control and/or survival, then patients would view these therapeutic gains as worthwhile. Compliance with short-term goserelin was excellent, confirming that LH-RH analogues have a potential role in more long-term adjuvant treatment. However, for more protracted androgen deprivation, survival advantages and deleterious effects need to be assessed in parallel, in order to determine the optimal duration of treatment.

Adult↗

The effect of anaemia on efficacy and normal tissue toxicity following radiotherapy for locally advanced squamous cell carcinoma of the head and neck.

PURPOSE: The aims of this analysis were to determine the effect of anaemia on loco-regional control, relapse-free survival, cause-specific survival, overall survival, and acute and late radiation therapy toxicity in patients with Stage III and IV squamous cell carcinoma of the head and neck treated with radiotherapy. PATIENTS AND METHODS: Between 1991 and 1998, 350 patients were randomly assigned to either conventional radiotherapy, (70 Gy in 35 fractions in 49 days) or to accelerated radiotherapy (59.4 Gy in 33 fractions in 24 days). Patients were divided into two groups according to their haemoglobin level: a normal haemoglobin group (>/=13 g/dl in males, >/=12 g/dl in females) and a low haemoglobin group (<13 g/dl in males, <12 g/dl in females). The influence of anaemia on cause-specific survival and the development of confluent mucositis independent of other variables was tested using Cox proportional hazards model. RESULTS: Of 350 patients recruited to the trial, 238 had haemoglobin measurements and were eligible for inclusion in this secondary analysis. One hundred and ninety-three were considered to have normal haemoglobin, and 45 patients were considered to be anaemic. There were significant differences between the groups in loco-regional control, relapse-free survival, cause-specific survival and overall survival, with hazards ratios of 0.56 (95% confidence interval (CI) 0.34-0.94), 0.57 (95% CI 0.35-0.92), 0.49 (95% CI 0.29-0.85) and 0.43 (95% CI 0.26-0.70) in favour of the normal haemoglobin group. Using Cox proportional hazards modelling, haemoglobin level was a significant predictor of cause-specific survival in addition to disease site, stage, and Eastern Cooperative Oncology Group status. There were no statistically significant differences between the groups in the development of acute or late reactions. CONCLUSION: Significant reductions in loco-regional control, disease-free survival, cause-specific survival and overall survival occur in the presence of anaemia. No significant differences in normal tissue toxicity have been identified in this analysis.

Anemia↗

Bowel injury: current and evolving management strategies.

The intestine is often dose limiting during abdominal and pelvic radiation therapy. Delayed bowel toxicity is difficult to manage and adversely impacts the quality of life of long-term cancer survivors. Of the 8 to 9 million cancer survivors currently living in the United States, more than half have had abdominal or pelvic tumors, and about 60% of these patients have undergone or will undergo radiation therapy. Therefore, interventions that limit postradiation intestinal dysfunction would significantly improve outcomes in a large number of patients. Worthwhile steps toward reducing toxicity of treatments have been taken recently by introducing dose-sculpting treatment techniques. However, prophylactic or therapeutic approaches derived from an improved understanding of the pathophysiology of bowel injury will result in further advances. This article reviews current principles in the diagnosis and management of intestinal radiation injury. It also provides an overview of investigational strategies aimed at reducing radiation-induced bowel toxicity. These strategies include free radical scavengers, antioxidants, cytoprotective agents, cytokines, and enterotrophic interventions, as well as modulators of intraluminal factors, endothelial dysfunction, and neuroimmune interactions. Preclinical testing in clinically relevant animal models will facilitate translation of these strategies into the clinic and contribute to improving cancer cure rates and quality of life in cancer survivors.

Abdominal Neoplasms↗

Normal tissue effects: reporting and analysis.

Any effective cancer therapy developed to date is associated with a spectrum of normal tissue effects of varying incidence and severity. With an increasing number of novel therapeutic approaches undergoing clinical testing and an increased effort to optimize the established treatment modalities, methods for reliable quantification of normal tissue effects have become a key element in advancing cancer care. Here, we present a review of many of the issues involved in reporting and analyzing clinical normal tissue effect data. A distinction is introduced between explorative (science-driven) and pragmatic (patient-centered) studies. The desirable properties of criteria for reporting and grading toxicity are discussed from a biological and clinical perspective. Validation of toxicity criteria and the statistical issues involved in analyzing this type of data are presented with special emphasis on descriptors of the time evolution of toxicity. Finally, we discuss surrogate markers for late effects, mechanistic studies, and the design of clinical studies with normal tissue endpoints as a primary outcome. It is concluded that a consensus is required on guidelines for the reporting of normal tissue effects to improve the comparability of published reports on treatment outcome.

Antineoplastic Agents↗

Acute symptoms, not rectally administered sucralfate, predict for late radiation proctitis: longer term follow-up of a phase III trial--Trans-Tasman Radiation Oncology Group.

PURPOSE: To assess the potential for sucralfate administered rectally to reduce the risk of late rectal morbidity in patients undergoing nonconformal radiotherapy (RT) for carcinoma of the prostate and to study the variables potentially contributing to late rectal morbidity and particularly to explore the relationship between acute and late toxicity. METHODS AND MATERIALS: Eighty-six patients with localized prostate carcinoma were randomized in a double-blind, placebo-controlled study to a daily enema of 3 g of sucralfate in a 15-mL suspension or the same suspension without sucralfate. The enema began the first day of RT and was continued for 2 weeks after treatment completion. The primary end point of the study was acute Radiation Therapy Oncology Group (RTOG)/European Organization for Research and Treatment of Cancer (EORTC) toxicity; however, the patients were followed for an additional 5 years on a 6-month basis. The evaluation included late RTOG/EORTC toxicity and a patient self-assessment questionnaire. RESULTS: With a median follow-up of 5 years, the Kaplan-Meier probability of late Grade 2 RTOG/EORTC toxicity was 12% (95% confidence interval [CI] 2-22%) for placebo and 5% (95% CI 0-12%) for sucralfate (p = 0.26). The probability of late rectal bleeding was 59% (95% CI 45-73%) for placebo and 54% (95% CI 40-68%) for sucralfate. No statistically significant difference was found between the treatment arms for the peak incidence of any of the other patient self-assessment variables. Cox proportional hazards modeling indicated acute RTOG/EORTC toxicity of Grade 2 or greater was associated with a hazard ratio of 2.74 (95% CI 1.31-5.73) for the development of late toxicity of Grade 1 or greater. Substituting the patient self-assessment variables for acute RTOG/EORTC toxicity revealed that rectal pain of a moderate or severe grade during RT was the best predictor of the subsequent development of late toxicity, with a hazard ratio of 3.44 (95% CI 1.68-7). CONCLUSION: The results of this study do not support the use of sucralfate administered rectally as a method for reducing the late toxicity of nonconformal RT for prostate cancer. There appears to be an association between the development of acute and subsequent late toxicity, although the nature of this association remains to be determined.

Anti-Ulcer Agents↗

Radiation-induced changes in cellularity and proliferation in human oral mucosa.

PURPOSE: To quantify the oral mucosal cell density and proliferation rate during conventional radiotherapy of head-and-neck tumors and to compare these parameters with clinical scoring of oral mucositis. MATERIALS AND METHODS: Between 1996 and 1999, 22 patients were included in this study. Mucosal biopsies were taken before or during the radiotherapy course (5 x 2 Gy/wk). Biopsies were incubated in vitro with tritiated thymidine immediately after excision to label DNA-synthesizing cells. RESULTS: Epithelial cell density followed a biphasic radiation response. A steep decrease to about 50% of the preirradiation value (1000 cells/mm epithelium) during Week 1 was followed by a more gradual loss to about 400 cells at the end of treatment. The initial phase was based on the depression of proliferation, with 5-10 labeled cells/mm at the end of Week 1 vs. 60 labeled cells/mm in controls. Subsequently, proliferation was partially restituted at 20 labeled cells/mm. A significant difference in cell numbers was seen between Radiation Therapy Oncology Group/European Organization for Research and Treatment of Cancer Grade 0 (approximately 850 cell/mm) and Grade 2 (325/mm) or Grade 3 (370/mm). No significant differences were observed between reaction grades 1, 2, and 3. CONCLUSION: Conventionally fractionated radiotherapy induces a rapid suppression in cell production in Week 1, which results in a prompt reduction in cell numbers. Subsequently, a partial restoration of proliferation significantly reduces the rate of cell loss. These processes clearly precede the clinical response. Regeneration, defined as restoration of cellularity, is already under way when the maximal clinical response is observed. Clinical reaction grading corresponds poorly to cellular density measures during conventional fractionation.

Cell Count↗

The radiotherapeutic injury--a complex 'wound'.

Radiotherapeutic normal tissue injury can be viewed as two simultaneously ongoing and interacting processes. The first has many features in common with the healing of traumatic wounds. The second is a set of transient or permanent alterations of cellular and extracellular components within the irradiated volume. In contrast to physical trauma, fractionated radiation therapy produces a series of repeated insults to tissues that undergo significant changes during the course of radiotherapy. Normal tissue responses are also influenced by rate of dose accumulation and other factors that relate to the radiation therapy schedule. This article reviews the principles of organised normal tissue responses during and after radiation therapy, the effect of radiation therapy on these responses, as well as some of the mechanisms underlying the development of recognisable injury. Important clinical implications relevant to these processes are also discussed.

Animals↗