Search PubMedSearch

Biomedical subjects

M Hawley

Publications and source records attributed to M Hawley.

5 recordsLinked to original sources

Gamma-interferon causes a selective induction of the lysosomal proteases, cathepsins B and L, in macrophages.

Previous studies have indicated that acid-optimal cysteine proteinase(s) in the endosomal-lysosomal compartments, cathepsins, play a critical role in the proteolytic processing of endocytosed proteins to generate the antigenic peptides presented to the immune system on major histocompatibility complex (MHC) class II molecules. The presentation of these peptides and the expression of MHC class II molecules by macrophages and lymphocytes are stimulated by gamma-interferon (gamma-IFN). We found that treatment of human U-937 monocytes with gamma-IFN increased the activities and the content of the two major lysosomal cysteine proteinases, cathepsins B and L. Assays of protease activity, enzyme-linked immunosorbant assays (ELISA) and immunoblotting showed that this cytokine increased the amount of cathepsin B 5-fold and cathepsin L 3-fold in the lysosomal fraction. By contrast, the aspartic proteinase, cathepsin D, in this fraction was not significantly altered by gamma-IFN treatment. An induction of cathepsins B and L was also observed in mouse macrophages, but not in HeLa cells. These results suggest coordinate regulation in monocytes of the expression of cathepsins B and L and MHC class II molecules. Presumably, this induction of cysteine proteases contributes to the enhancement of antigen presentation by gamma-IFN.

Animals

Experimental assessment of electrical impedance imaging for hyperthermia monitoring.

Two experimental studies are presented that attempt to assess the use of electrical impedance tomography (EIT) to map thermal changes deep in the body. The first was a joint study between our group in Sheffield and the Daniel den Hoed Cancer Center in Rotterdam, funded by the COMAC-BME Hyperthermia project. Phantom and in vivo experiments were conducted with a deep heating ring-capacitive hyperthermia device; the results highlighted some of the inherent problems (electromagnetic interference, nonuniform sensitivity) that remain to be solved for this application. The second experimental study involved heating the stomachs of volunteers by pumping known quantities of liquid (a salt/glucose solution, conductivity 5 mS) at controlled temperatures (25, 37 and 47 degrees C) in and out of the stomach via a nasogastric tube. Results indicated that the level of thermal change induced by these liquids could be reproducibly measured by impedance imaging. Both studies were a further step in assessing the capabilities of EIT for noninvasive monitoring of deep body hyperthermia. The results are encouraging and indicate the value of continued development of EIT for non-invasive thermometry.

Electric Conductivity

Onset and progression of experimental bioprosthetic heart valve calcification.

Calcification, the major cause of bioprosthetic heart valve failures, is a serious clinical problem with uncertain pathogenesis. The objectives of the present study were to define the progressive chemical and morphologic sequence of mineralization in glutaraldehyde-treated porcine aortic valve cusps implanted subcutaneously in rats and to compare the pathology and pathophysiology of calcification in subcutaneous implants with that of orthotopic valve replacements in calves. Cusps were implanted subcutaneously in 3-week-old rats for 24 hours to 18 weeks. Cuspal calcium was 114 +/- 18 micrograms/mg of dry weight (mean +/- SEM) at day 21 and 218 +/- 6 at day 56 of implantation and unchanged thereafter. The earliest mineral deposits, noted at 48 hours, were associated with devitalized porcine connective tissue cells, but by 7 days, mineral deposits also involved collagen bundles. Scanning electron microscopy with energy-dispersive x-ray analysis demonstrated predominant accumulation in the spongiosa with a spongiosa to fibrosa energy-dispersive x-ray analysis count ratio of calcium of 15 at 21 days. In stent-mounted glutaraldehyde-preserved porcine valves implanted in five calves as mitral replacements for 69 to 142 days, cuspal calcium was 86 micrograms/mg (mean) (range 47 to 128). Calf implants also had cell oriented and collagen calcification predominating in the valvar spongiosa. In both rat subcutaneous and calf mitral valve models, early diffuse calcific microcrystals evolved into confluent nodules that disrupted tissue architecture. It is concluded that calcification of glutaraldehyde-preserved porcine aortic valves implanted subcutaneously in rats begins within 48 hours, earliest deposits are localized to residual porcine connective tissue cells, but latter deposits also involve collagen fibrils, mineralization is most prominent in the spongiosa, the pathology of calcification in rat subcutaneous implants and calf mitral replacements is comparable, suggesting a common pathophysiology, and calcific nodule formation most likely initiates clinical features.

Animals

A feasibility study of microwave thermographic mapping for use during hyperthermia treatment.

A study to assess the possible use of a microwave radiometric system for tomographic thermal mapping during hyperthermia treatment has been examined using a computer model. Results indicate that as few as ten waveguide probes in contact with the body may be sufficient for spatial resolution of the heated region. A single probe microwave radiometer has been constructed and used to obtain scan data in a water phantom as an initial stage in the verification of the computer results.

Computers