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881.
M Mori Y Takai R Naito M Hosaka N Murase 《Virchows Archiv. B, Cell pathology including molecular pathology》1984,45(4):431-441
Immunohistochemical demonstration of epidermal growth factor (EGF) and nerve growth factor (NGF) was made during chemical carcinogenesis in the mouse submandibular gland. The granular convoluted tubule cells in the normal male submandibular gland contained larger amounts of EGF and NGF than in the female. The initial phase and early stages in chemical carcinogenesis showed degranulation of the granular convoluted tubule cells with a marked decrease in EGF and NGF. Premalignant lesions such as duct-like structures and multicystic lesions showed variable staining for EGF and were usually negative for NGF. Material secreted into the luminal spaces revealed increased staining for EGF and NGF. Scattered tumor cells of the poorly differentiated squamous-cell carcinoma type and desquamated tumor cells contained abundant EGF, but not NGF. No positive reaction for EGF or NGF was found in the induced squamous-cell carcinoma cells. 相似文献
882.
Y Kawakami T Kaji M Omuro Y Maruyama T Hiramune N Murase M Matumoto 《Japanese journal of microbiology》1966,10(3):171-182
883.
Summary Time-dependent changes in the molecular weights of poly(3-hydroxyalkanoates) (P(3HA)) produced byPseudomonas putida from octanoate were investigated. The mole ratio of carbon to nitrogen sources (C/N), incubation temperature, concentration
of octanoate, and pH of culture solution were varied to study the effects of culture conditions on the yield and molecular
weights of P(3HA). The molecular weights of P(3HA) decreased with time to reach a constant value during incubation. When the
incubation temperature and the concentration of octanoate were low, P(3HA) polymers of high molecular weights were produced. 相似文献
884.
The present study was performed to provide data to support the notion previously believed but not proved experimentally or theoretically, that blood vessels are formed by the selection of capillaries in the network. In an attempt to understand the mechanism of formation of blood vessel branching structures, the transformation of a capillary network to a branching system in the wall of quail yolk sac was successively recorded by a series of photographs, and a computer simulation was carried out for the process of in vivo vascularization based on the photographs. The simulation demonstrated that a positive feedback system participated in the formation of a branching structure. That is, vessels which had been much used were enlarged, whereas less used vessels were reduced in their size and finally extinguished. The enlarged vessels became major components of the branching system. As the body of an embryo grew, it was observed that polygonal capillary networks enlarged, which led each polygon of the network to divide into a few finer polygons. Then, some of the capillary vessels were again selected and formed a branching system. This process repeated during the body growth, indicating that the vascular system developed adaptively to the body growth. A region where the growth was fast, received much blood flow and produced finer networks of capillaries. Thus, it was experimentally demonstrated for the first time that capillaries in the network are successively selected by a positive feedback mechanism and form blood vessels. 相似文献