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Biomedical subjects

Ryoichi Kondo

Publications and source records attributed to Ryoichi Kondo.

5 recordsLinked to original sources

Neutrophil cytoskeletal rearrangements during capillary sequestration in bacterial pneumonia in rats.

RATIONALE: Neutrophils accumulate in pulmonary capillaries during acute inflammation. Initial events in injury recognition and sequestration do not occur through selectin-mediated rolling. Cytoskeletal rearrangements, as assessed by submembrane F-actin rims, result in poorly deformable neutrophils that may not pass through capillaries. OBJECTIVE: To test the hypothesis that neutrophils sequestering during pneumonia contain F-actin rims and to determine the roles of CD11/CD18, L-selectin expression, and neutrophil-platelet adhesion in neutrophil sequestration. METHODS: Neutrophils were compared in blood obtained simultaneously from venous and arterial sites before and 4 h after instillation of Streptococcus pneumoniae or Escherichia coli in rats. MEASUREMENTS AND MAIN RESULTS: At 4 h of pneumonia, the number of neutrophils was greater in the venous blood entering the lungs than in the arterial blood leaving the lungs, indicating that neutrophil sequestration was occurring. More neutrophils entering the lungs contained F-actin rims than did neutrophils exiting, and the venous-arterial difference in F-actin-rimmed neutrophil counts completely accounted for sequestration. In E. coli pneumonia, in which neutrophil adhesion is mediated by CD11/CD18, CD18 blockade 15 min before blood samples were obtained did not prevent this sequestration of F-actin-rimmed neutrophils. Neutrophils expressing high or low levels of L-selectin or of neutrophils that bound platelets while circulating did not preferentially sequester. CONCLUSIONS: Neutrophils with cytoskeletal rearrangements preferentially sequester within the lungs during pneumonia, and this sequestration is not due to CD11/CD18-mediated adhesion, L-selectin expression, or platelet adhesion to neutrophils, suggesting that cytoskeletal rearrangements result in sequestration of neutrophils.

Actins↗

Giant intraatrial septal aneurysm originating from a branch of the left coronary artery.

We present the case of a 38-year-old woman who had a large intraatrial aneurysm occupied by old thrombosis. The aneurysm was successfully removed, and the atrium was repaired. Pathohistological findings indicated that the inflow artery of the aneurysm had an anomalous origin from the left main coronary artery, and its pathogenesis was unknown. It is occasionally difficult to distinguish a large coronary aneurysm from a mediastinal tumor because this aneurysm is a rare entity, even more so in an atrial septum. A giant coronary aneurysm should be considered an alternative diagnosis in the event of a mediastinal mass. Surgery is recommended for a large coronary aneurysm.

Adult↗

A subtotal sternectomy successfully reconstructed with composix mesh.

Sternal tumors are uncommon, which often require extended resections with reconstructions. Various techniques have been used, including a choice of prostheses and the use of musculocutaneous flaps for reconstructions. A 74-year-old male presented with a metastatic sternal tumor. He underwent a subtotal sternectomy with partial resection of bilateral clavicles and ribs. A sternal reconstruction was performed with Composix mesh and pectoralis major (PM) muscle flaps. This prosthesis was thought to be very suitable due to the ease of handling, good stability, and prevention of adhesion. In comparison to conventional prostheses, these points could be advantageous.

Adenocarcinoma↗

Effects of expiratory pressure on nitric oxide in exhaled breath. Is exhaled nitric oxide really unaffected by pressure?

The measurements of exhaled nitric oxide (ENO) concentrations in several previous reports have been quite disparate but the cause of this variability is unclear. In the present study, we have attempted to elucidate the effects of expiratory pressure upon ENO values by taking measurements at pressures ranging from 2 to 10 cmH2O in control subjects and in both smokers and asthmatics. Differences in ENO concentrations (delta pNO) were then estimated and the concentration levels were found to increase with elevated expiratory pressure levels in both the control volunteers and in the asthmatics (under 2 and 3 L/min flow rates). These results indicate that changes in expiratory pressure indeed affect ENO concentrations. The measurement of ENO concentrations in human patients must therefore be undertaken using standard procedures that must incorporate expiratory pressure levels in order to properly interpret ENO values.

Adolescent↗