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C Koike

Publications and source records attributed to C Koike.

49 records · Page 3Linked to original sources

Positron emission tomography analysis of metastatic tumor cell trafficking.

Organ-specific colonization of metastatic tumor cells is regulated through complex interactions of specific adhesion molecules on the tumor cell surface with organ specific microvascular endothelium. The present paper shows the real time tumor cell trafficking under the actual blood flow, which became able to be determined using a new technology, positron emission tomography. This technology would be useful to evaluate the interaction of characteristic tumor cells with various organs in vivo. High and low metastatic rat mammary adenocarcinoma cell variants, MTLn3 and MTC, respectively, were labeled with [2-18F]2-fluoro-2-deoxy-D-glucose in vitro. The labeled cells preferentially accumulated in the lungs, in which the disposition was more intense for MTLn3 than for MTC cells especially for the first 2-10 min after injection, apparently reflecting the organ specific interaction of metastatic tumor cells which may lead to metastasis. Such a short time change of cell disposition is easily determined in a living animal by this new technique. Furthermore, sialidase treatment of MTLn3 cells suppressed the accumulation of these cells in lungs, suggesting that some sialyl glycoconjugates on the MTLn3 cell surface play an important role in cell adhesion to lung endothelium. Positron emission tomography scanning thus enables the noninvasive study of the interaction of characteristic tumor cells with specific endothelium in a living animal.

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[Organ xenotransplantation using human complement regulatory factor gene].

For the success of xenotransplantation, hyperacute rejection must be controlled. Hyperacute rejection is induced by the activation of complement system via alternative pathway and/or classical pathway. Complement regulatory factors can inhibit activation of complement system via the both pathways. To overcome hyperacute rejection in organ xenotransplantation, gene engineering in the establishment of xeno-endothelial cells and transgenic animals (mouse and pig) using human complement regulatory factors are studied. In the near future, transgenic pig using human complement regulatory factor genes can be used as a potential donor in organ xenotransplantation.

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