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The interaction between chick embryo fibroblasts and various lectins has been studied at different stages of embryo development. There is evidence that Robinia lectin, Dolichos lectin, and Conca navalin A decrease cell number and proportion of cells incorporating [3H] thymidine in case of 8and 10day-old chick embryo fibroblasts, whereas they stimulated the proliferation of 16-dayold embryo cells. No effect was noticed in 12-day cells.
These results suggest that some cell surface changes occur during embryo development. The site number of Dolichos lectin remains the same during embryo development, and the affinity constant decreases. The site number of Robinia lectin and Concanavalin A decreases from the 8th to the 12th day of development, and slowly increases on the 16–day cells, the affinity constant remaining rather constant.
The results indicate that the age–dependent effect of lectin on embryo cells could not be directly related to the number of lectin–binding sites. Competitive binding experiments revealed that Dolichos receptor sites were distincts from binding sites of Robinia lectin and Concanavalin A, and Robina receptor sites distinct from those of Concanavalin A.
Lectin effects on embryo fibroblasts were very specific as determined by inhibitory assays.  相似文献   

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A selection of World Wide Web sites relevant to papers published in this issue of Current Opinion in Cell Biology.  相似文献   

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Abstract CHO cells which have been sorted by mitotic detachment, centrifugal elutriation and fluorescence activated cell sorting have been followed for up to 14 hr by flow cytometry to examine their progression characteristics. Mathematical modelling techniques were used to provide quantitative estimates of the cell-cycle parameters. Mitotic detachment gives an 11.2-hr cycle time with mean transit times TG1, Ts and TG2M equal to 3.2, 5.6 and 2.4 respectively. Cells prepared by central elutriation in an early G1 state have a 14-hr cycle time with TG1, Ts and TG2M of 5.7, 6.0 and 2.3 hr. Populations prepared by centrifugal elutriation enriched in early S and late S and G2M have transit times of 2.7, 5.9 and 1.6 hr and 4.9, 6.7 and 2.1 hr with cycle times of 11.2 and 13.2 hr respectively. Cell sorting for a G1 population gives transit times of 9.8, 8.0 and 3.6 for an overall 21.4-hr cycle time.  相似文献   

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Current cell therapies, despite all of the progress in this field, still faces major ethical, technical and regulatory hurdles. Because these issues possibly stem from the current, restricted, stereotypical view of cell ultrastructure and function, we must think radically about the nature of the cell. In this regard, the author's theory of the cell memory disc offers ‘memory‐based therapy’, which, with the help of immune system rejuvenation, nervous system control and microparticle‐based biodrugs, may have substantial therapeutic potential. In addition to its potential value in the study and prevention of premature cell aging, age‐related diseases and cell death, memory therapy may improve the treatment of diseases that are currently limited by genetic disorders, risk of tumour formation and the availability and immunocompatibility of tissue transplants.  相似文献   

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《Cell host & microbe》2014,15(6):741-752
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In multi-cellular organisms, activation of apoptosis can trigger compensatory proliferation in surrounding cells to maintain tissue homeostasis. Genetic studies in Drosophila have indicated that distinct mechanisms of compensatory proliferation are employed in apoptotic tissues of different developmental states. In proliferating eye and wing tissues, the initiator caspase Dronc coordinates cell death and compensatory proliferation through the Jun N-terminal kinase and p53. The mitogens Decapentaplegic and Wingless are induced in this process. By contrast, in differentiating eye tissues, the effector caspases DrICE and Dcp-1 activate the Hedgehog signaling pathway to induce compensatory proliferation. In this review, we summarize these findings and discuss how activation of apoptosis is linked to the process of compensatory proliferation. The developmental and pathological relevance of compensatory proliferation is also discussed.  相似文献   

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Cell adhesion and metastasis.   总被引:2,自引:0,他引:2  
There is no single phenotypic trait whose exclusive expression correlates universally with metastatic behaviour. Nevertheless, several lines of evidence point towards adhesive phenomena as mediating some crucial steps in the malignant spread of particular tumour types. These steps include detachment from the primary, invasion of the ECM including include detachment from the primary, invasion of the ECM including structures such as the basement membrane and organ capsules, and lodgement in the vessels of remote organs. Furthermore, there is evidence that adhesive phenomena can contribute at least in part to the selective patterns of spread shown by a variety of tumour cell types. The molecular dissection of the adhesive events involved in these processes has only just begun. It is clear already, however, that several different determinants are likely to be involved and the clinical application of this knowledge is unlikely to be immediate.  相似文献   

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Cell surface human alpha-L-fucosidase.   总被引:1,自引:0,他引:1  
The acid alpha-L-fucosidase is usually found as a soluble component of lysosomes where fucoglycoconjugates are degraded. In the present investigation, we have demonstrated the existence of a cell surface protein with enzymatic alpha-L-fucosidase activity that crossreacts specifically with a rabbit anti-(alpha-L-fucosidase) Ig. By different approaches, this alpha-L-fucosidase, which represents 10-20% of the total cellular fucosidase activity, was detected in all the tested human cells (hemopoietic, epithelial, mesenchymal). Two bands of approximately 43-49 kDa were observed, although theoretical data support the possibility of having the same genetic origin that the known 50 to 55-kDa Mr alpha-L-fucosidase. We speculate about an alternative traffic pathway for the plasma membrane alpha-L-fucosidase to work on the rapid turnover of glycoproteins.  相似文献   

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Plant cells interact during development through diverse mechanisms that range from genetically encoded signals to physical stresses. Pollen self-incompatibility is the best understood cell interaction in plants. Analysis of genes that appear to be involved in specific developmental signals, such as liguleless1 from maize and GLABROUS1 from Arabidopsis, will provide clues as to the nature of cell interactions in plant development. Recent data suggest that intercellular connections may be more similar in plants and animals than previously thought.  相似文献   

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Recent genetic studies in Drosophila have identified signals that direct cell movement, mechanisms that transduce such signals within migrating cells and some of the molecular machinery underlying cell motility. Activation of the fibroblast growth factor receptor signaling pathway is required for migration of the cells of the developing respiratory system and mesoderm. A signal dependent on 3-hydroxy-3-methylglutanyl Coenzyme A reductase attracts migrating primordial germ cells to the somatic gonad, whereas the phosphohydrolase, phosphatidic acid phosphatase type 2, repels germ cells. In the female germline, the migratory path of border cells is directed by the homophilic adhesion molecule E cadherin.  相似文献   

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Cell fusion without viruses.   总被引:1,自引:0,他引:1       下载免费PDF全文
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