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Biomedical subjects

M Leeson

Publications and source records attributed to M Leeson.

4 recordsLinked to original sources

Mechanism by which U937 promonocytic cells inactivate human interferon-gamma.

Mononuclear phagocytes produce proteinases that are thought to play a role in regulating the activity of cytokines. Activated macrophages secrete urokinase-type plasminogen activator (uPA), which mediates the formation of the serine proteinase plasmin from the ubiquitous zymogen plasminogen. We previously observed a correlation between in vitro plasminogen activation by the promonocytic cell line U937 and the apparent ability of these cells to inactivate recombinant interferon-gamma (rIFN-gamma) by proteolysis. The present study was designed to test the hypothesis that plasmin, generated in U937 cell cultures, is both necessary and sufficient to inactivate rIFN-gamma by limited proteolysis. The following observations are consistent with this hypothesis: (1) inactivation of rIFN-gamma was prevented by inhibitors of serine proteinases or an antibody that specifically immunodepleted plasmin activity; (2) purified plasmin inactivated rIFN-gamma as efficiently as U937 culture supernatants and was similarly sensitive to serine proteinase inhibitors; and (3) plasmin removed an 11 amino acid carboxyl-terminal peptide from rIFN-gamma, which included a region known to be required for bioactivity. Overall, these data indicate that plasminogen activation by U937 promonocytic cells leads to the proteolytic inactivation of IFN-gamma by a process that only requires the production of plasmin.

Amino Acid Sequence

Computed tomographic evaluation of extracranial carotid artery disease.

Axial computed tomographic (CT) scans after intravenous contrast infusion were used to image the cervical carotid arteries of patients with cerebral ischemic symptoms. Standard transfemoral cervical carotid and cerebral angiography was the principal diagnostic modality used in all patients studied. The angiographic results were compared to the CT images and to the gross and microscopic endarterectomy pathological specimens, when available. Examples of the various types of abnormalities that can be visualized using CT scans are presented. The CT scan was useful for determining the presence of degenerative atheromatous changes including carotid artery calcification, subintimal hemorrhage, carotid occlusion, carotid segmental occlusion, and carotid pseudoocclusion, as well as carotid artery dissection. The scans were particularly useful for identification of atheromatous carotid artery disease when the carotid angiogram appeared nearly normal and for identifying the cause of postoperative carotid stenosis. CT scanning allows visualization of the carotid artery wall and lumen rather than just the lumen and, consequently, can sometimes add helpful information about the pathological processes affecting this artery.

Arterial Occlusive Diseases

Angiography using a gamma camera.

This paper describes a simple technique for imaging the aorta, femoral and popliteal arteries and for assessing the rate and magnitude of blood flow in these vessels following a small intravenous injection of a radionuclide. The passage of the radionuclide along a particular vessel is monitored with a gamma camera/computer system.

Aorta