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Whereas conservative therapies aim to stall the advance of disease,regenerative medicine strives to reverse it.The capacityof most tissues to regenerate derives from stem cells,but there are a number of barriers which have to be circumvented before itwill be possible to use stem-cell-based therapies.Such therapies,however,are expected to improve human health enormously,and knowledge gained from studying stem cells in culture and in model organisms is now laying the groundwork for a new eraof regenerative medicine.One of the most prominent methods to study stem cell differentiation is to let them to form embryoidbodies.Under favourable conditions any stem cell line will form embryoid bodies.However,the mechanism of the formation ofembryoid bodies is not very well understood,and to produce them in the laboratory is in no way trivial-an important technicalbarrier in stem cell research.Recently,the embryoid body cultivation step has been successfully circumvented for the derivationof osteogenic cultures of embryonic stem cells.Here we report on a simple and reusable system to cultivate embryoid bodies inextremely short times.The method is inspired by the principles that lead to the establishment of the biomimetic triangle.  相似文献   
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Polystyrene Petri dishes are in use in hundreds of thousands of laboratories world wide. Cell culture experiments performed in them provide fundamental information in a wide range of applications, including but not limited to testing novel biomaterials and pharmaceuticals, and stem cell research. These experiments cost billions of dollars per year. In this study we report on a potential deficiency of polystyrene Petri dishes, possibly caused by an increase in interracial pH under relevant culture condi-tions and affecting cell performance. We conclude that cell performance on Petri dishes could be improved by improving the Petri dishes. As a spin-off of our study we postulate the concept that cancer cells and stem cells are social. It is impossible to validate this concept on the basis of the model established in this paper. However. the coherence of our insights may encourage further study and lead to the development of a qualitative improvement of cell culture devices, including Petri dishes and culture flasks, to the identification of potential strategies for chemotherapy and chemoprevention that could suppress progression of metastasis, and to the establishment of improved settings for tissue engineering and stem cell research. An immediate recom-mendation of our study is to use chemically and biologically inert substrates for important cell culture experiments, for example, nanocrystalline diamond.  相似文献   
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There is increasing observational evidence indicating that crystalline interfacial water layers play a central role in evolution and biology. For instance in cellular recognition processes, in particular during first contact events, where cells decide upon survival or entering apoptosis. Understanding water layers is thus crucial in biomedical engineering, specifically in the design of biomaterials inspired by biomimetic principles. Whereas there is ample experimental evidence for crystalline interfacial water layers on surfaces in air, their subaquatic presence could not be verified directly, so far. Analysing a polarity dependent asym- metry in the surface conductivity on hydrogenated nanocrystalline diamond, we show that crystalline interfacial water layers persist subaquatically. Nanoscopic interfacial water layers with an order different from that of bulk water have been identified at room temperature on both hydrophilic and hydrophobic model surfaces - in air and subaquatically. Their generalization and systematic inclusion into the catalogue of physical and chemical determinants of biocompatibility complete the biomimetic triangle.  相似文献   
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Iwasaki  Kōozō  Maier  Peter  Fecht  Marion  Horst  Walter J. 《Plant and Soil》2002,238(2):281-288
The effects of silicon (Si) supply on manganese (Mn) toxicity symptoms and Mn and Si concentrations in the leaf apoplast in a Mn-sensitive cowpea cultivar (Vigna unguiculata (L.) Walp. cv. TVu 91) were investigated in solution culture experiments. When 1.44 mM Si was supplied concurrently with 50 M Mn, the Mn toxicity symptoms were clearly avoided without decreasing the total Mn concentration. On the other hand, the symptoms were not completely alleviated when the plants were pretreated with 1.44 mM Si and then exposed to 50 M Mn without concurrent Si supply. Plants of both of these treatments exhibited lower Mn concentrations in the apoplastic washing fluids but higher amounts of adsorbed Mn on the cell walls than the plants treated with 50 M Mn without Si supply. However, the difference in Mn concentration between plants with continuous and interrupted Si supply was not significant. Moreover, the Mn concentration in the apoplastic washing fluids of the plants with continuous supply of 1.44 mM Si and 50 M Mn and not showing Mn toxicity symptoms was higher than that of the plants grown at 10 M Mn without Si supply which showed distinct Mn toxicity symptoms. These results show that Si supply alleviates Mn toxicity not only by decreasing the concentration of soluble apoplastic Mn through the enhanced adsorption of Mn on the cell walls. A role of the soluble Si in the apoplast in the detoxicification of apoplastic Mn is indicated.  相似文献   
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We wish to draw the attention to a potential deficiency in the biocompatibility of polystyrene cell culturc dishes which is caused by a softening of the material under relevant culture conditions.The finding confirms the central hypothesis of our previous model study.In it we assumed a local increase in pH at the interface between the hydrophilic polymer and liquid.The finding is of considerable biological interest.Polystyrene tissue culture dishes are now in use for 50 years.To the best of our knowledge their biocompatibility has never been challenged.Here we report the first experimental proof that exposure to water softens the surface of polystyrene Petri dishes.We expect that our results will stimulate the development ofa new generation of cell culture devices,including Petri dishes and culture flasks,and the establishment of improved biomimetic settings for tissuc engineering and stem cell research.New non-swelling biomaterials or nanocoatings designed to reduce the swelling of polymer culture dishes could improve cell performance.The need for further study is clear.  相似文献   
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Green space has been identified as a modifiable feature of the urban environment and associations with physiological and psychological health have been reported at the local level. This study aims to assess whether these associations between health and green space are transferable to a larger scale, with English cities as the unit of analysis. We used an ecological, cross-sectional study design. We classified satellite-based land cover data to quantify green space coverage for the 50 largest cities in England. We assessed associations between city green space coverage with risk of death from all causes, cardiovascular disease, lung cancer and suicide between 2002 and 2009 using Poisson regression with random effect. After adjustment for age, income deprivation and air pollution, we found that at the city level the risk of death from all causes and a priori selected causes, for men and women, did not significantly differ between the greenest and least green cities. These findings suggest that the local health effects of urban green space observed at the neighbourhood level in some studies do not transfer to the city level. Further work is needed to establish how urban residents interact with local green space, in order to ascertain the most relevant measures of green space.  相似文献   
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