Arthritis is a major source of disability for the American population. It results in significant morbidity for the millions of patients affected and costs billions of dollars yearly for diagnosis and management. Nonsteroidal antiinflammatory drugs (NSAIDs) are the principal therapy for the majority of arthritis patients. It has been estimated that more than 15 million people with arthritis take these drugs daily. This use is predicted to increase greatly not only as a result of an aging population, with the consequent increase in the prevalence of arthritis, but also because NSAIDs may prove to have a role in decreasing colonic neoplasia and in reducing the likelihood of conditions such as Alzheimer's disease. It is therefore increasingly important to understand the nature of the side effects associated with these agents as well as ways of decreasing or preventing their occurrence. NSAIDs inhibit the enzymes cyclooxygenase-1 and cyclooxygenase-2. This reduces the synthesis of prostaglandins and therefore decreases joint inflammation, but it may also lead to the development of gastric and duodenal ulcers. For this reason, exogenous prostaglandins have been studied for their potential role in preventing NSAID-associated ulcers and ulcer complications. This paper reviews the development of the prostaglandin E1 analog misoprostol, the theory behind its use as a mucosal protective agent, and the results of studies in animals as well as in normal volunteers and patients with arthritis. Ultimately, a study was performed to evaluate whether misoprostol reduces the incidence of serious ulcer complications in patients taking NSAIDs. It is an interesting story, which promises to be of increasing importance as NSAID use expands to new indications while concern remains about their associated complications, especially those related to the gastrointestinal tract.
This study describes a method of applying very thin broadband matching layers to 2 mm diameter 20 MHz transducers. Dual layer acoustic matching between tile ceramic and the medium at the front face of the transducer was accomplished by selecting 1/4 wavelength glass layers from a commercial source, epoxying them to the ceramic, and vapor depositing parylene to 1/4 wavelength thickness on the glass. A 6 dB fractional bandwidth of 0.75 and insertion loss of -10 dB was found on the average for these transducers, This method allowed fabricating probes that performed well, were reproducible, provided both a matching and protection coating, and could be fabricated in a practical manner.