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Biomedical subjects

J Stephenson

Publications and source records attributed to J Stephenson.

At least 37 records · Page 2Linked to original sources

Phase I and pharmacokinetic study of BMS-184476, a taxane with greater potency and solubility than paclitaxel.

PURPOSE: To assess the feasibility, toxicity, pharmacokinetics, and preliminary activity of BMS-184476 administered as a 1-hour intravenous (IV) infusion every 3 weeks. PATIENTS AND METHODS: Patients with advanced solid malignancies were treated with escalating doses of BMS-184476 as a 1-hour IV infusion every 3 weeks without premedication to prevent hypersensitivity reactions (HSR). Plasma sampling and urine collections were performed to characterize the pharmacokinetics and pharmacodynamics of BMS-184474. RESULTS: Thirty-four patients were treated with 78 courses of BMS-184476 at five dose levels ranging from 20 to 80 mg/m2. Dose-limiting toxicity (DLT), consisting of severe neutropenia with fever, severe diarrhea, and/or severe mucositis, was experienced during course 1 by six of nine minimally pretreated patients treated at the 70 and 80 mg/m2 dose level. In contrast, of 15 assessable patients treated at the 60 mg/m2 dose level, which is the maximum-tolerated dose (MTD) of BMS-184476 on this administration schedule, only one heavily pretreated patient developed DLT (grade 4 neutropenia with fever and grade 3 diarrhea). One patient developed a grade 2 HSR during a second course of BMS-184476 at the 40 mg/m2 dose level. A previously untreated patient with an advanced cholangiocarcinoma experienced a partial response, and a patient with an untreated carcinoma of the gastroesophageal junction had a minor response. The pharmacokinetics of BMS-184476 seemed linear in the dose range studied. Mean +/- SD values for clearance, volume of distribution at steady-state, and terminal half-life were 220 +/- 89 mL/min/m2, 402 +/- 231 L/m2, and 40.8 +/- 21.8 hours, respectively. CONCLUSION: The MTD and recommended dose for phase II evaluations of BMS-184476 is 60 mg/m2 as a 1-hour IV infusion every 3 weeks. The results of this study suggest that BMS-184476 may have several advantages compared with paclitaxel in terms of toxicity, pharmacokinetics, pharmaceutics, and administration and warrants further clinical development.

Adult↗

Cranberry juice consumption may reduce biofilms on uroepithelial cells: pilot study in spinal cord injured patients.

STUDY DESIGN: A pilot study of 15 spinal cord injured patients. OBJECTIVE: To determine whether alteration of fluid intake and use of cranberry juice altered the bacterial biofilm load in the bladder. SETTING: London, Ontario, Canada. METHODS: Urine samples were collected on day 0 (start of study), on day 7 following each patient taking one glass of water three times daily in addition to normal diet, and on day 15 following each patient taking one glass of cranberry juice thrice daily. One urine sample was sent for culture and a second processed to harvest, examine by light microscopy and Gram stain non-squamous uroepithelial cells to generate bacterial adhesion per 50 cells data. RESULTS: The results showed that cranberry juice intake significantly reduced the biofilm load compared to baseline (P=0.013). This was due to a reduction in adhesion of Gram negative (P=0.054) and Gram positive (P=0.022) bacteria to cells. Water intake did not significantly reduce the bacterial adhesion or biofilm presence. CONCLUSION: The findings provide evidence in support of further, larger clinical trials into the use of functional foods, particularly cranberry juice, to reduce the risk of UTI in a patient population highly susceptible to morbidity and mortality associated with drug resistant uropathogens. SPONSORSHIP: This study was funded by Ocean Spray Cranberries, Lakeville, MA, USA.

Acids↗

Cardiac markers and point-of-care testing: a perfect fit.

Biochemical markers are of increasing importance in diagnostic strategies for ruling in and ruling out acute myocardial infarction (AMI), particularly when electrocardiographic (ECG) findings do not allow a diagnosis. Point-of-care testing (POCT) or "near-patient" testing allows for diagnostic assays to be performed at the site of patient care delivery. The biochemical markers that are commonly used by physicians to aid in the diagnosis of AMI are myoglobin, CK-MB, troponin I, and troponin T. Currently available POCT assays possess comparable diagnostic performance to laboratory-based cardiac marker assays. This provides an opportunity for POCT to evolve into the standard of care for evaluating the greater than 6 million American patients presenting with chest discomfort. Full acceptance of this relatively new technology will not be realized until users reach a comfort level where utilization of these devices is foolproof and they have faith in the results.

Biomarkers↗