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91.
I S Watanabe R A Lopes E A Liberti R A Azeredo C H Takakura S Goldenberg 《Zeitschrift für mikroskopisch-anatomische Forschung》1989,103(6):925-935
In order to verify the effects of CO2 laser on the palatine mucosa of rats, 15 animals were utilized. The animals were anaesthetized with thionembutal by intra-peritoneal injection and the palatine mucosa of each animal was irradiated with a single pulse of 10 W. The results showed that immediately after the irradiation of CO2 laser, the formation of small cavities is observed. The wound healing post operationem is gradually in 1 week. The region is totally occupied by neoformed connective tissue and epithelial cells. Numerous polymorphonuclear cells and fibroblasts may be seen between the neoformed collagen fibres. 相似文献
92.
Protein A was applied as a reagent for the secondary reaction in ELISA (protein A-ELISA). Mouse hepatitis virus antibody in 6 prevalent mouse strains or stocks reared in a MHV-contaminated room was effectively detected by protein A-ELISA, whereas significant strain differences in the antibody detection rate were demonstrated using the complement fixation test. C57BL/6 mice were particularly reactive in the protein A-ELISA test. 相似文献
93.
Kimiko Yamakawa Hisako Yanagi Keijiro Saku Jun Sasaki Takaaki Okafuji Yae Shimakura Koichi Kawai Shigeru Tsuchiya Kohki Takada Setsuya Naito Kikuo Arakawa Hideo Hamaguchi 《Human genetics》1991,86(5):445-449
Summary To assess the relationship between relatively severe hereditary hypercholesterolemia with Achilles tendon xanthomas and the defect of the low density lipoprotein (LDL) receptor gene, family studies were carried out in 17 hypercholesterolemic families. In 16 out of the 17 families, hypercholesterolemia co-segregated with four different gross rearrangements, six different restriction fragment length polymorphism (RFLP) haplotypes, or an abnormal TaqI band of the LDL receptor gene. These findings are compatible with the interpretation that hypercholesterolemia is caused by defective LDL receptor genes, and that the origin of the mutant LDL receptor genes in Japanese generally differs among different pedigrees. In the remaining family, the proband and his sibling, both having relatively severe hypercholesterolemia and Achilles tendon xanthomas, shared an RFLP haplotype, although the proband's other sibling with moderate hypercholesterolemia but without Achilles tendon xanthomas did not. The mutant gene for familial defective apolipoprotein B-100 was not detected in the 17 probands. These data suggest that most, if not all, of the relatively severe hereditary hypercholesterolemia associated with Achilles tendon xanthomas is caused by a defect of the LDL receptor gene. 相似文献
94.
This study was undertaken to simplify the preparation procedures for test specimens by applying whole blood collected on filter paper disks. The results of ELISA obtained using specimens collected in this way for the detection of Sendai virus and mouse hepatitis virus antibodies in mice were comparable to those for ordinary ELISA using serum samples. 相似文献
95.
The correlation between plasma cell tumor development and antibody response in inbred strains of mice 总被引:1,自引:0,他引:1
96.
Apelin is a bioactive peptide with diverse physiological actions on many tissues mediated by its interaction with its specific receptor APJ. Since the identification of apelin and APJ in 1998, pleiotropic roles of the apelin/APJ system have been elucidated in different tissues and organs, including modulation of the cardiovascular system, fluid homeostasis, metabolic pathway and vascular formation. In blood vessels, apelin and APJ expression are spatiotemporally regulated in endothelial cells (ECs) during angiogenesis. In vitro analysis revealed that the apelin/APJ system regulates angiogenesis by the induction of proliferation, migration and cord formation of cultured ECs. Moreover, apelin seems to stabilize cell-cell junctions of ECs. In addition, genetically engineered mouse models suggest that apelin/APJ regulates vascular stabilization and maturation in physiological and pathological angiogenesis. In this review, we summarize the current understanding of the apelin/APJ system for vascular formation and maturation. 相似文献
97.
Nakayama M Kaneko Y Miyazawa Y Fujii N Higashitani N Wada S Ishida H Yoshimoto K Shirasu K Yamada K Nishimura M Takahashi H 《Planta》2012,236(4):999-1012
Seedling roots display not only gravitropism but also hydrotropism, and the two tropisms interfere with one another. In Arabidopsis (Arabidopsis thaliana) roots, amyloplasts in columella cells are rapidly degraded during the hydrotropic response. Degradation of amyloplasts involved in gravisensing enhances the hydrotropic response by reducing the gravitropic response. However, the mechanism by which amyloplasts are degraded in hydrotropically responding roots remains unknown. In this study, the mechanistic aspects of the degradation of amyloplasts in columella cells during hydrotropic response were investigated by analyzing organellar morphology, cell polarity and changes in gene expression. The results showed that hydrotropic stimulation or systemic water stress caused dramatic changes in organellar form and positioning in columella cells. Specifically, the columella cells of hydrotropically responding or water-stressed roots lost polarity in the distribution of the endoplasmic reticulum (ER), and showed accelerated vacuolization and nuclear movement. Analysis of ER-localized GFP showed that ER redistributed around the developed vacuoles. Cells often showed decomposing amyloplasts in autophagosome-like structures. Both hydrotropic stimulation and water stress upregulated the expression of AtATG18a, which is required for autophagosome formation. Furthermore, analysis with GFP-AtATG8a revealed that both hydrotropic stimulation and water stress induced the formation of autophagosomes in the columella cells. In addition, expression of plastid marker, pt-GFP, in the columella cells dramatically decreased in response to both hydrotropic stimulation and water stress, but its decrease was much less in the autophagy mutant atg5. These results suggest that hydrotropic stimulation confers water stress in the roots, which triggers an autophagic response responsible for the degradation of amyloplasts in columella cells of Arabidopsis roots. 相似文献
98.
Strigolactones: chemical signals for fungal symbionts and parasitic weeds in plant roots 总被引:12,自引:0,他引:12
• Aims Arbuscular mycorrhizae are formed between >80 % of land plants and arbuscular mycorrhizal (AM) fungi. This Botanical Briefing highlights the chemical identification of strigolactones as a host-recognition signal for AM fungi, and their role in the establishment of arbuscular mycorrhizae as well as in the seed germination of parasitic weeds.• Scope Hyphal branching has long been described as the first morphological event in host recognition by AM fungi during the pre-infection stages. Host roots release signalling molecules called ‘branching factors’ that induce extensive hyphal branching in AM fungi. Strigolactones exuded from host roots have recently been identified as an inducer of hyphal branching in AM fungi. Strigolactones are a group of sesquiterpenes, previously isolated as seed germination stimulants for the parasitic weeds Striga and Orobanche. Parasitic weeds might find their potential hosts by detecting strigolactones, which are released from plant roots upon phosphate deficiency in communication with AM fungi. In addition to acting as a signalling molecule, strigolactones might stimulate the production of fungal symbiotic signals called ‘Myc factors’ in AM fungi.• Conclusions Isolation and identification of plant symbiotic signals open up new ways for studying the molecular basis of plant–AM-fungus interactions. This discovery provides a clear answer to a long-standing question in parasitic plant biology: what is the natural role for germination stimulants? It could also provide a new strategy for the management and control of beneficial fungal symbionts and of devastating parasitic weeds in agriculture and natural ecosystems. 相似文献
99.
Tianqing Kong Daosong Xu Wanfeng Yu Ayumi Takakura Ilene Boucher Mei Tran Jordan A. Kreidberg Jagesh Shah Jing Zhou Bradley M. Denker 《Molecular biology of the cell》2009,20(21):4596-4610
Regulation of epithelial cell attachment and migration are essential for normal development and maintenance of numerous tissues. G proteins and integrins are critical signaling proteins regulating these processes, yet in polarized cells little is known about the interaction of these pathways. Herein, we demonstrate that Gα12 inhibits interaction of MDCK cells with collagen-I, the major ligand for α2β1 integrin. Activating Gα12 (QL point mutation or stimulating endogenous Gα12 with thrombin) inhibited focal adhesions and lamellipodia formation and led to impaired cell migration. Consistent with Gα12-regulated attachment to collagen-I, Gα12-silenced MDCK cells revealed a more adherent phenotype. Inhibiting Rho kinase completely restored normal attachment in Gα12-activated cells, and there was partial recovery with inhibition of Src and protein phosphatase pathways. Gα12 activation led to decreased phosphorylation of focal adhesion kinase and paxillin with displacement of α2 integrin from the focal adhesion protein complex. Using the MDCK cell 3D-tubulogenesis assay, activated Gα12 inhibited tubulogenesis and led to the formation of cyst-like structures. Furthermore, Gα12-silenced MDCK cells were resistant to thrombin-stimulated cyst development. Taken together, these studies provide direct evidence for Gα12–integrin regulation of epithelial cell spreading and migration necessary for normal tubulogenesis. 相似文献
100.
Kohtaro Miyazawa Tetsuya Hondo Takashi Kanaya Sachi Tanaka Ikuro Takakura Wataru Itani Michael T. Rose Haruki Kitazawa Takahiro Yamaguchi Hisashi Aso 《Histochemistry and cell biology》2010,133(1):125-134
Membranous epithelial cells (M cells) of the follicle-associated epithelium in Peyer’s patches have a high capacity for transcytosis
of several viruses and microorganisms. Here, we report that we have successfully established a bovine intestinal epithelial
cell line (BIE cells) and developed an in vitro M cell model. BIE cells have a cobblestone morphology and microvilli-like
structures, and strongly express cell-to-cell junctional proteins and cytokeratin, which is a specific intermediate filament
protein of epithelial cells. After co-culture with murine intestinal lymphocytes or treatment with supernatant from bovine
PBMC cultured with IL-2, BIE cells acquired the ability of transcytosis. Therefore, BIE cells have typical characteristics
of bovine intestinal epithelial cells and also have the ability to differentiate into an M cell like linage. In addition,
our results indicate that contact between immune cells and epithelial cells may not be absolutely required for the differentiation
of M cells. We think that BIE cells will be useful for studying the transport mechanisms of various pathogens and also the
evaluation of drug delivery via M cells. 相似文献