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High-titer antidiphtheria antitoxic rabbit serum has been obtained, and on the basis of this serum a coagglutinating diagnosticum has been developed. The sensitivity of the test has been found to depend on the content of antitoxic antibodies in the serum and on its purity. Diagnostica prepared from native serum containing 500 I. U./ml (a titer of 1:51, 200 in the passive hemagglutination test) permit the detection of 0.02-0.03 Lf/ml of diphtheria toxin. A decrease in antibody titer to 5-25 I. U./ml leads to a drop in sensitivity to 0.2-2 Lf/ml. The use of LgG fraction and pure antibodies increases the sensitivity of the test to 0.002-0.003 Lf/ml. The possibility of detecting toxin in Corynebacterium diphtheriae strains is shown.  相似文献   
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Gelatinases A and B, which are members of the matrix metalloproteinase (MMP) family, play essential roles in cancer development and metastasis, as they can break down basal membranes. Therefore, the determination and inhibition of gelatinases is essential for cancer treatment. Peptides that can specifically block each gelatinase may, therefore, be useful for cancer treatment. In this study, subtractive panning was carried out using a 12-mer peptide library to identify peptides that block gelatinase A activity (MMP-2), which is a key pharmacological target. Using this method, 17 unique peptide sequences were determined. MMP-2 inhibition by these peptides was evaluated through zymogram analyses, which revealed that four peptides inhibited MMP-2 activity by at least 65%. These four peptides were synthesized and used for in vitro wound healing using human umbilical vein endothelial cells, and two peptides, AOMP12 and AOMP29, were found to inhibit wound healing by 40%. These peptides are, thus, potential candidates for MMP-2 inhibition for cancer treatment. Furthermore, our findings suggest that our substractive biopanning screening method is a suitable strategy for identifying peptides that selectively inhibit MMP-2.  相似文献   
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At the active developmental phases (up to 2 days) cells of toxigenic and nontoxigenic corynebacteria form extracellular vesicle-like material of two types which can be revealed both on whole cells set off by metal and stained negatively, and in ultrathin sections. Extracellular material of the first type is a derivative of an extensive membranous coat of corynebacteria and is formed as a result of its fragmentation. Vesicles of this type are devoid of electron microscope-dense content, have no tendency to coalescence, and fail to promote cell agglutination. Extracellular material of the second type is primarily formed by local thickening of the surface wall layer limited by its external dense layer and the main massif. These thickenings are filled with a microgranular substance of medium electron optic density; after accumulation this substance is released into the external environment. Vesicles of this type promote cell agglutination. Undoubtedly, extracellular material of the second type has a direct relation to the cell metabolic processes. Extracellular material of both types is encountered in all the cultures grown both on hard and in fluid nutrient media. However, in the latter case the process is apparently much more intensive. There is strict correlation between the morphology of the extracellular material and strain signs of the culture, although material of the second type is found to prevail in the cells from cultures possessing toxigenic activity.  相似文献   
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Autophagy and DNA repair are two essential biological mechanisms that maintain cellular homeostasis. Impairment of these mechanisms was associated with several pathologies such as premature aging, neurodegenerative diseases, and cancer. Intrinsic or extrinsic stress stimuli (e.g., reactive oxygen species or ionizing radiation) cause DNA damage. As a biological stress response, autophagy is activated following insults that threaten DNA integrity. Hence, in collaboration with DNA damage repair and response mechanisms, autophagy contributes to the maintenance of genomic stability and integrity. Yet, connections and interactions between these two systems are not fully understood. In this review article, current status of the associations and crosstalk between autophagy and DNA repair systems is documented and discussed.  相似文献   
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Four male mice were shown to have decreased fertility among 74 laboratory male mice exposed in the Chernobyl APP area during embryogenesis. Electron microscopic analysis of synaptonemal complexes (SC) of at zygotene-diplotene and light-optic analysis of chromosome aberrations at diakinesis-metaphase 1 demonstrated the presence of interchromosome translocations in autosomal chromosomes, and also intrachromosome translocations in two of four animals. The frequency of chromosome translocations in SC preparations was on the average 1.8 times higher than their frequency at the diakinesis-metaphase 1 stage. High percentage of cells in which associations of sex bivalent axes (XY) with the axes of autosomal bivalents were observed in the SC preparations and reduced fertility in the animals studied confirmed the Forejt's hypothesis that such associations caused the arrest of cells at pachytene and, as a consequence, disturbed the process of embryogenesis.  相似文献   
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Background  

Although the clinical results of autologous chondrocyte implantation for articular cartilage defects have recently improved as a result of advanced techniques based on tissue engineering procedures, problems with cell handling and scaffold imperfections remain to be solved. A new cell-sheet technique has been developed, and is potentially able to overcome these obstacles. Chondrocyte sheets applicable to cartilage regeneration can be prepared with this cell-sheet technique using temperature-responsive culture dishes. However, for clinical application, it is necessary to evaluate the characteristics of the cells in these sheets and to identify their similarities to naive cartilage.  相似文献   
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