The safety and efficacy of enprofylline were studied in 55 moderately severe asthmatic patients [forced expiratory volume in 1 s (FEV1) and peak expiratory flow rate (PEFR) no more than 50% of predicted values] presenting with an acute attack. A bolus injection of 1.5 mg/kg enprofylline was given over 20 min and then maintenance infusion of 0.4 mg/kg.h enprofylline for up to 24 h. On admission, 200 mg hydrocortisone was administered intravenously and additional oxygen and/or inhaled beta 2-agonist therapy was permitted after 1 h; this additional therapy was given to 39 patients. The bolus injection increased the PEFR from 121 +/- 44 l/min to 164 +/- 49 l/min at 20 min, with a further improvement during the maintenance infusion to 200 +/- 79 l/min at 24 h. Heart rate and blood pressure decreased towards normal in parallel with the improvement in lung function. The mean steady-state enprofylline plasma concentration was slightly higher than predicted. The mean renal clearance and recovery of enprofylline from urine were in good agreement with results previously obtained from healthy Caucasian subjects.
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ACS Appl Energy Mater
January 2025
Hollingsworth and Vose, Groton, Massachusetts 01450, United States.
A low-cost method of green hydrogen production via the modification of a lead acid battery has been achieved, resulting in a hydrogen flow rate of 5.3 L min from a 20-cell string. The electrochemical behavior and catalytic effect of various metal additives on the hydrogen evolution reaction (HER) was evaluated using cyclic voltammetry.
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January 2025
School of Engineering, Faculty of Science and Engineering, Macquarie University, Sydney, NSW 2109, Australia.
Intranasal drug delivery is a promising non-invasive method for administering both local and systemic medications. While previous studies have extensively investigated the effects of particle size, airflow dynamics, and deposition locations on deposition efficiency, they have not focused on the thickness of deposited particles, which can significantly affect drug dissolution, absorption and therapeutic efficacy. This study investigates the deposition patterns of dry powder particles within the nasal airway, specifically examining how factors such as flow rates, particle size, and particle cohesiveness influence deposition patterns and their thickness.
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January 2025
John A. Reif, Jr. Department of Civil and Environmental Engineering, New Jersey Institute of Technology, 323 Martin Luther King Blvd., Newark, New Jersey 07102, United States.
Precise control of nanobubble size is essential for optimizing the efficiency and performance of nanobubble applications across diverse fields, such as agriculture, water treatment, and medicine. Producing fine bubbles, including nanobubbles, is commonly achieved by purging gas through porous media, such as ceramic or polymer membranes. Many operational factors and membrane properties can significantly influence nanobubble production and characteristics.
View Article and Find Full Text PDFEnviron Res
January 2025
Environmental Testing and Experiment Center, Chinese Research Academy of Environmental Sciences, Beijing 100012, China. Electronic address:
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