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601.
Noriko Akashi Shunji Hitotsubashi Hiroyasu Yamanaka Yoshio Fujii Takao Tsuji Akio Miyama Josephine Encarnacion Joya Keinosuke Okamoto 《FEMS microbiology letters》1993,109(2-3):311-315
Abstract Enterotoxigenic Escherichia coli isolated from diarrhea stools of chickens were examined for production of heat-stable enterotoxin II which is considered to be implicated only in diarrhea of pigs. Seven out of 38 strains examined were found to contain heat-stable enterotoxin II gene, determined by colony hybridization and the polymerase chain reaction. The culture supernatants of these strains caused fluid accumulation in the mouse intestinal loop test. This fluid accumulation activity was not lost by heating at 100°C and was neutralized by anti-heat-stable enterotoxin II antiserum. Purified heat-stable enterotoxin II caused fluid accumulation in the chicken intestinal loop assay. These results indicate that STII-producing E. coli is implicated in chicken diarrhea. 相似文献
602.
Human thrombomodulin (TM) was for the first time immobilized on glass beads by the reaction between the carboxyl group of TM and the amino group of glass beads using water-soluble carbodiimide. Immobilized human TM exhibited both anticoagulant activity and inhibition of platelet aggregation of human blood. 相似文献
603.
Nucleic acid bases such as adenine and uracil, and nitrobenzeneboronic acid substituted silicas were prepared by the reaction of chloromethylbenzene substituted silica with adenine sodium salt and trimethylsilylated uracil, and nitration of benzeneboronic acid substituted silica, respectively. From the results of HPLC of nucleosides and N-ethyl derivatives of nucleic acid bases using modified silicas, hydrophobic base stacking interaction, selective hydrogen bonding interaction between purine and pyrimidine bases, and reversible cyclic boronate ester formation between diols of nucleosides with boronic acid were effective for the separation of nucleic acid related compounds. Moreover, association constants for hydrogen bonding formation of nucleic acid bases were estimated. 相似文献
604.
A key common feature of all but three known mammalian genera is the strict seven cervical vertebrae blueprint, suggesting the involvement of strong conserving selection forces during mammalian radiation. This is further supported by reports indicating that children with cervical ribs die before they reach reproductive age. Hypotheses were put up, associating cervical ribs (homeotic transformations) to embryonal cancer (e.g., neuroblastoma) or ascribing the constraint in cervical vertebral count to the development of the mammalian diaphragm. Here, we describe a spontaneous mutation c.196A > G in the Bos taurus T gene (also known as brachyury) associated with a cervical vertebral homeotic transformation that violates the fundamental mammalian cervical blueprint, but does not preclude reproduction of the affected individual. Genome-wide mapping, haplotype tracking within a large pedigree, resequencing of target genome regions, and bioinformatic analyses unambiguously confirmed the mutant c.196G allele as causal for this previously unknown defect termed vertebral and spinal dysplasia (VSD) by providing evidence for the mutation event. The nonsynonymous VSD mutation is located within the highly conserved T box of the T gene, which plays a fundamental role in eumetazoan body organization and vertebral development. To our knowledge, VSD is the first unequivocally approved spontaneous mutation decreasing cervical vertebrae number in a large mammal. The spontaneous VSD mutation in the bovine T gene is the first in vivo evidence for the hypothesis that the T protein is directly involved in the maintenance of the mammalian seven-cervical vertebra blueprint. It therefore furthers our knowledge of the T-protein function and early mammalian notochord development. 相似文献
605.
Eishi Nagai Takahiro Ogawa Tammy Kielian Akashi Ikubo Tsuneo Suzuki 《Cancer immunology, immunotherapy : CII》1998,47(2):72-80
The specific aim of this study was to examine the prophylactic as well as the therapeutic efficacies of irradiated mouse
CT26 colon cancer cells, infected with recombinant adenoviruses harboring cDNAs specific for granulocyte macrophage-colony-stimulating
factor (GM-CSF), interferon (IFN-γ) and monocyte chemotactic protein1 (MCP-1). Results showed that tumor cells secrete the
respective cytokines for several days after infection and subsequent irradiation. Vaccination with irradiated GM-CSF-secreting
CT26 cells protected 90% of syngeneic mice challenged with live parental cells. On the other hand, vaccination with irradiated
IFNγ or MCP-1-secreting CT26 cells totally failed to protect mice from tumor development after challenge with parental cells.
None of the tumor-free mice initially vaccinated with irradiated GM-CSF-producing CT26 cells developed tumor upon repeated
challenge with parental cells during the entire observation period. The establishment of specific and long-lasting antitumor
immunity following vaccination with GM-CSF-producing tumor cells requires the simultaneous presence of GM-CSF and tumor antigen
at the vaccine site. Depletion of CD8+ cells, but not CD4+ cells, blocked the vaccine efficacy of GM-CSF-producing tumor cells. Subcutaneous injection of irradiated GM-CSF-producing
CT26 cells also effectively prevented the growth of a small load of parental tumor that was implanted 3 days earlier or the
development of metastatic foci in the lung from intravenously injected parental cells either 7 days before or 3 days after
vaccination. Our data thus show that, in these experimental tumor models, subcutaneous injection of irradiated tumor cells
adenovirally, transduced with the GM-CSF gene leads not only to prevention of growth of subsequently implanted tumor but also
to elimination of pre-existing and metastatic tumors. 相似文献