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Biomedical subjects

Y Shiga

Publications and source records attributed to Y Shiga.

116 records · Page 7Linked to original sources

[Myocardial infarction due to thrombi in coronary aneurysms in a young woman with systemic lupus erythematosus].

Acute myocardial infarction (AMI) is relatively rare in systemic lupus erythematosus (SLE), although other cardiac complications, such as pericarditis and myocarditis, occur frequently in this disease. A 20-year-old woman with documented SLE experienced a transmural anterior AMI due to thrombi in saccular aneurysms of the left main coronary artery and the proximal portion of the left anterior descending coronary artery. There were also saccular and fusiform aneurysms in the right coronary artery, but thrombi were not observed in them. Aorto-coronary bypass surgery was performed to salvage the viable myocardium and to prevent recurrent myocardial infarction and rupture or infection of these coronary aneurysms. Postoperative coronary angiography revealed a new small saccular aneurysm in the mid-portion of the right coronary artery. During this period, there was no immunological evidence of active SLE. It is important to ascertain whether such coronary aneurysms resulted from atherosclerosis or arteritis, because of the choice of the different therapeutic interventions. In this case, however, it was difficult to determine. It was speculated that these coronary aneurysms arose from an arteritic process, because the saccular aneurysm in the mid-portion of the right coronary artery was formed in less than three months, there were no coronary risk factors, and any microscopic evidence of atherosclerosis was not obtained in the aortic specimen during aortocoronary bypass surgery. Serial coronary angiographic studies are necessary for accurately diagnosing coronary artery disease. Anticoagulant therapy and antiinflammatory medication may be necessary to prevent myocardial infarction in patients with SLE, even if there is no immunological evidence of active SLE.

Adult↗

Amino acid sequence around the covalently-bound flavin prosthetic group of Corynebacterium sarcosine oxidase.

A flavin peptide from Corynebacterium sarcosine oxidase was obtained by proteolytic digestion with trypsin and chymotrypsin, and purified by the method of Kenney et al. (1). Amino acid analyses of the flavin peptide gave the following results: Asx(1), Ala(1), Val(1), and His(1) per flavin group. By carboxypeptidase A digestion and partial acid hydrolysis, the structure of the flavin peptide was determined as (Formula: see text).

Amino Acid Sequence↗

The formalin test: effects of formalin concentration and short-term halothane inhalation.

BACKGROUND AND OBJECTIVES: In order to evaluate the effects of formalin concentration and inhalational anesthetics in formalin tests, we injected 5 concentrations of formalin into awake and anesthetized rats and investigated their behavior and the c-fos immunoreactivity of their spinal cords. METHODS: Sixty adult male Sprague-Dawley rats were divided into 10 experimental groups. Each rat was either manually restrained or subdued through several minutes of 2% to 2.5% halothane inhalation, and then 1 of 5 concentrations of 0%, 5%, 10%, 27%, or 100% formalin (0%, 1.85%, 3.7%, 10%, or 37% formaldehyde solutions) was injected into its rear paw. Nociceptive behaviors were checked for 1 hour, 6 times for each 5-minute period. Two hours after the formalin injections, the rats were killed and c-fos immunoreactivity was measured. RESULTS: Typical responses were observed in the 5% and 10% formalin (1.85% and 3.7% formaldehyde) groups, and nociceptive behaviors were lower in the 27% and 100% formalin (10% and 37% formaldehyde) groups. The number of c-fos-positive cells increased as the formalin concentration increased. Halothane inhalation affected the results of both the behavior and the c-fos immunoreactivity, especially in the 10% formalin (3.7% formaldehyde) group. CONCLUSIONS: It is desirable to describe both formalin and formaldehyde concentrations simultaneously and to do formalin tests without inhalational anesthetics.

Administration, Inhalation↗