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Poly(vinyl alcohol) (PVA) has attracted considerable research interest and is recognized among the largest volume of synthetic polymers that have been produced worldwide for almost one century. This is due to its exceptional properties which dictated its extensive use in a wide variety of applications, especially in medical and pharmaceutical fields. However, studies revealed that PVA-based biomaterials present some limitations that can restrict their use or performances. To overcome these limitations, various methods have been reported, among which blending with poly(vinylpyrrolidone) (PVP) showed promising results. Thus, our aim was to offer a systematic overview on the current state concerning the preparation, properties and various applications of biomaterials based on synergistic effect of mixtures between PVA and PVP. Future trends towards where the biomaterials research is headed were discussed, showing the promising opportunities that PVA and PVP can offer.  相似文献   
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The rate of packing of human erythrocytes in whole blood and washed ones in aqueous suspension was investigated in a centrifugal field of 250 g. The Voigt-Kelvin rheological model was found to be well suited to describe the packing process. The ratio of the elastic modulus to viscosity was evaluated from this model. Its value suggests that the flexibility of the cell plays a minor role compared to other viscosity factors. Also the model suggests that the rate of packing is a complicated function of various viscoelastic factors. Empirical parameters describing the rate of packing are sensitive to drastic changes in cell flexibility, such as caused by formaldehyde treatment, whereas no fluidizing effect of procaine on cell membrane was detected. The rate of packing is not affected by decreasing the pH from 7.4 to 6.5. The method of mild centrifugation could be of some use for rapid evaluation of substantial flexibility changes in washed blood cells.  相似文献   
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