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Biomedical subjects

E McMenamin

Publications and source records attributed to E McMenamin.

2 recordsLinked to original sources

Plasma protein thiol oxidation and carbonyl formation in chronic renal failure.

BACKGROUND: Myeloperoxidase-catalyzed oxidative pathways have recently been identified as an important cause of oxidant stress in uremia and hemodialysis (HD), and can lead to plasma protein oxidation. We have examined patterns of plasma protein oxidation in vitro in response to hydrogen peroxide (H2O2) and hypochlorous acid (HOCl). We measured thiol oxidation, amine oxidation, and carbonyl concentrations in patients on chronic maintenance HD compared with patients with chronic renal failure (CRF) and normal volunteers. We have also examined the effect of the dialysis procedure on plasma protein oxidation using biocompatible and bioincompatible membranes. METHODS: Plasma proteins were assayed for the level of free thiol groups using spectrophotometry, protein-associated carbonyl groups by enzyme-linked immunosorbent assay, and oxidation of free amine groups using a fluorescent spectrophotometer. RESULTS: In vitro experiments demonstrate HOCl oxidation of thiol groups and increased carbonyl formation. In vivo, there are significant differences in plasma-free thiol groups between normal volunteers (279 +/- 12 micromol/L), CRF patients (202 +/- 20 micromol/L, P = 0.005) and HD patients (178 +/- 18 micromol/L, P = 0.0001). There are also significant differences in plasma protein carbonyl groups between normal volunteers (0.76 +/- 0.51 micromol/L), CRF patients (13.73 +/- 4.45 micromol/L, P = 0.015), and HD patients (16.95 +/- 2.62 micromol/L, P = 0.0001). There are no significant differences in amine group oxidation. HD with both biocompatible and bioincompatible membranes restored plasma protein thiol groups to normal levels, while minimally affecting plasma protein carbonyl expression. CONCLUSIONS: First, both CRF and HD patients have increased plasma protein oxidation manifested by oxidation of thiol groups and formation of carbonyl groups. Second, HD with biocompatible and bioincompatible membranes restored plasma protein thiol groups to normal levels. Third, these experiments suggest that there is a dialyzable low molecular weight toxin found in uremia that is responsible for plasma protein oxidation.

Amines↗

Implementing a multidisciplinary cancer pain education program.

Cancer pain remains problematic for many patients. No standardized guidelines were available for the management of cancer pain until the early 1990s. In addition, many healthcare personnel have not been trained adequately in pain management, despite the abundance of literature. As a result, clinicians often manage patient's pain poorly. This article provides an overview of the process of development and implementation of a 5-year multidisciplinary cancer pain education program, begun in 1989 by the University of Pennsylvania School of Nursing, School of Medicine, and Cancer Center. The program was comprised of a multidisciplinary cancer pain consultation panel that sought to educate healthcare personnel in community hospitals and nursing homes in southeastern Pennsylvania about cancer pain. This was accomplished by providing consultations for agencies with patients experiencing uncontrolled and/or progressive cancer pain. The panel also provided education through lectures, newsletters, and symposia. A total of 1949 healthcare personnel attended 92 consultations, lectures, and symposia during the 5 years that the program has operated. With the linkage approach to innovation diffusion framework used in this consultation program, and the implementation of the guidelines now available, many healthcare personnel may be able to increase their skills and manage pain more effectively, thus reducing and/or eliminating needless suffering for patients. Developing role models in the area of pain management at community hospitals may be the most effective means of incorporating pain control guidelines and fostering innovation.

Diffusion of Innovation↗