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21.
The effects of surgical operation on the generation of cell-mediated cytotoxicity in mixed cell cultures were studied in patients with various carcinomas or benign lesions. Peripheral blood mononuclear cells from patients were cultured with B lymphoblastoid cell line Raji in mixed culture, and the induced cytotoxicity was measured by 51Cr release assay. In 15 patients with various carcinomas, the capacity of cells to generate cytotoxic cells was significantly depressed 1, 3 and 6 days after surgery, as compared to that before surgery. It returned to the pre-operative level by the 8th post-operative day. In eight patients with benign lesions, significant decrease in cytotoxic cell activity was observed 3 and 6 days after operation. At the 8th day, however, there was a significant increase in the generated cytotoxicity. The depressed generation of cytotoxic cells 3 days after surgery could be abrogated by removal of adherent cells from the responding cell population. This effect could be partially reconstituted by addition of separated, autologous adherent cells back to the responding non-adherent cell culture. These results demonstrate that suppressor cells, presumably monocytes, may be responsible for the depressed generation of cytotoxic cells after surgery.  相似文献   
22.
Block copolymerizations of 1-chloro-1-octyne (1-ClO) with several substituted acetylenes were examined by means of living polymerization. o-(Trifluoromethyl)phenylacetylene (o-CF3PA), o-(trimethylsilyl)phenylacetylene (o-Me3SiPA), 1-chloro-2-phenylacetylene (1-ClPA), p-butyl-o,o,m,m-tetrafluorophenylacetylene (p-BuF4PA), and tert-butylacetylene (t-BuA) were used as comonomers, and the MoOCl4-n-Bu4Sn-EtOH (mole ratio 1:1:1) catalyst, which is known to effect living polymerization of substituted acetylenes, was employed. When o-CF3PA and 1-CIPA were the comonomers in combination with 1-CIO, block copolymers were exclusively obtained in both orders of monomer addition. In the cases of o-Me3SiPA and p-BuF4PA as comonomers, the copolymerizations initiated from 1-CIO produced block copolymers selectively, whereas the homopolymers of o-Me3SiPA and p-BuF4PA also formed if the order of monomer addition was reversed. The pair of 1-CIO and t-BuA did not selectively yield block copolymers irrespective of the order of monomer addition. Thus, block copolymerization occurred between 1-CIO and monomers that show high “livingness” and close reactivities.  相似文献   
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HNF-4, a member of the nuclear receptor superfamily, binds to HNF-4 response elements (HRE), consisting of a direct repeat of the hexameric half-sites spaced by 1 nt (direct repeat 1) and activates a number of genes, which play central roles in fatty acids and glucose metabolism. Glucose-6-phosphatase (G6Pase) catalyzes the terminal step in the gluconeogenic and glycogenolytic pathways. A previous study has shown that HNF-4 binds to two DR1s in the regions A (located between -266 and -234) and B (located between -306 and -274) on the human G6Pase promoter. We found that the region B contains the one more DR1 element, composed of the two half-sites, designated half-sites a and b, the latter of which overlaps with the previously identified DR1 consisting of two half-sites, designated half-sites b and c. In this study, electrophoretic mobility shift assay (EMSA) using point mutations in each half-site a, b, or c indicated that HNF-4 binds to the combination of half-sites a and b, but not to half-sites b and c. Furthermore, mutational analysis demonstrated that, in the context of the human G6Pase promoter, the half-sites a and b, but not the half-sites b and c, are required for the stimulatory effect of HNF-4. These results suggested that the DR1 element containing the half-sites a and b is a functional HRE that mediates the induction of hG6Pase promoter activity by HNF-4.  相似文献   
25.
Lymphokine-activated killer (LAK) cells generated by culture of peripheral blood mononuclear cells (PBMC), spleen cells (SPC) and regional lymph node cells (LNC) with IL-2 for 4 days were examined for their functional capabilities in 29 patients with gastric carcinoma. The cytotoxic activity of LAK cells induced from LNC was significantly lower than that from either PBMC or SPC, although there was no difference between PBMC or SPC. The induction of mRNA of interferon-gamma (IFN-gamma) or tumour necrosis factor-alpha (TNF-alpha) and the production of these cytokines in the non-adherent LAK cells from LNC were also significantly reduced compared with those from PBMC or SPC. Further, the LAK cells from LNC secreted significantly lower levels of these cytokines when stimulated with tumour target, Raji cells, although the production of these cytokines was markedly increased by stimulation with the targets in all three cell populations. Phenotypic analysis of each cell population revealed a decreased proportion of the cells mediating natural killer (NK) activity, including CD16+, CD56+, and CD57+ cells in LNC either before or after culture, although OKIa1+ and CD25+ cells were uniformly increased in all cell populations after culture. Changes in subpopulations of CD4+ and CD8+ cells in LNC were not apparently different from PBMC or SPC. These results indicated the differential reactivity of each lymphocyte population to IL-2 and the reduced LAK cell function of LNC compared with PBMC or SPC in patients with gastric carcinoma.  相似文献   
26.
Polymerization of phenylacetylenes (PAs) having various ortho-substituents were examined by using MoOCl4—n-Bu4Sn—EtOH (mole ratio 1:1:1) as catalyst. Phenylacetylenes with no or sterically small ortho-substituents did not polymerize in a living fashion. On the other hand, in the polymerization of phenylacetylenes having medium-sized substituents (e.g., CH3, Cl, Br, and iPr), the number-average molecular weights Mn of polymers increased in direct proportion to monomer consumption, while the polydispersity ratios were 1,2– 1,3, which is in favor of living polymerization. Further, monomers having bulky ortho-groups (CF3 and Me3Ge) exhibited excellent living nature with small polydispersity ratios of ≈ 1,1. Thus, it is concluded that not the electronic but the steric effect of the ortho-substituent is important to achieve living polymerization.  相似文献   
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Cytokines have been implicated in the etiology or pathology of various psychiatric diseases of developmental origin such as autism and schizophrenia. Leukemia inhibitory factor (LIF) is induced by a variety of brain insults and known to have many influences on mature and immature nervous system. Here, we assessed the neurobehavioral and pathological consequences of peripheral administration of LIF in newborn rats. Subcutaneous LIF injection induced STAT3 phosphorylation in many brain regions and increased glial fibrillary acidic protein (GFAP) immunoreactivity in the neocortex, suggesting that LIF had direct effects in the central nervous system. The LIF-treated rats displayed decreased motor activity during juvenile stages, and developed abnormal prepulse inhibition in the acoustic startle test during and after adolescence. They displayed normal learning ability in active avoidance test, however. Brain neuronal structures and startle responses were grossly normal, except for the cortical astrogliosis during neonatal LIF administration. These results indicate that LIF induction in the periphery of the infant has a significant, but discrete impact on neurobehavioral development.  相似文献   
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Yamaguchi I  Itoh S  Suzuki M  Sakane M  Osaka A  Tanaka J 《Biomaterials》2003,24(12):2031-2036
Crystalline chitosan was prepared from crab tendon consisting mainly of chitin, including various proteins and calcium phosphates. The crab tendon has high mechanical properties due to its aligned molecular structure. Crab tendon components, i.e. proteins and calcium phosphates, were removed by deacetyl treatment using 50wt% NaOH aqueous solution at 100 degrees C, and a subsequent ethanol treatment. As judged from microscopic observations using an optical polarizer, the treated chitosan remained intact regarding its aligned molecular structure, and had a high tensile strength of 67.9+/-11.4MPa. The tensile strength was further enhanced to 235+/-30MPa by a thermal treatment at 120 degrees C, corresponding to the formation of the intermolecular hydrogen bonds.  相似文献   
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