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METHOD FOR PRODUCING substrates with a multilayer coating based on polyelectrolyte microcapsules containing biologically active materials

机译:制备具有多层涂层的基底的方法,该多层涂层基于含有生物活性材料的聚电解质微胶囊

摘要

1. A method for producing a multilayer coating comprising the biologically active components fixed on a substrate, comprising forming a polyelectrolyte microcapsules comprising a core of biologically active composition of matter and the shaping component, applying a first polyelectrolyte multilayer on a substrate, applying an intermediate layer of microcapsules containing multiple polyelectrolyte layers on the first multilayer, depositing a second polyelectrolyte multilayer on the surface of the microcapsules, forming together with first multilayers and an intermediate layer of a multilayer coating microcapsules removing mold component of an inner microcapsule volume, characterized in that the dissolving and removing mold component from microcapsule mounted substrate position with the deposited multilayer coating so that the substrate occupies the upper position with respect to the multilayer coating that allows the output enable solute molecules mold component from the scope of microcapsules not only as by diffusion, but by the action of gravity, the inclination of the substrate, relative to a horizontal surface is selected in the range of 0 to 90 °. ! 2. A method according to claim 1, characterized in that the amount and composition of the layers that are applied over the nuclei selected organo formula: PSS- (PAH-PSS) n, n = 1-7. ! 3. A method according to claim 1, characterized in that the amount and composition of the layers that are applied over the nuclei selected organo formula: PSS- (PAH-PSS) n, n = 1-3. ! 4. A method according to claim 1, characterized in that the amount and composition of the layers that are applied over the body
机译:1。一种制备包含固定在基底上的生物活性组分的多层涂层的方法,包括形成包含生物活性物质的核和成型组分的芯的聚电解质微胶囊,在基底上施加第一聚电解质多层,施加中间体在第一多层体上包含多个聚电解质层的微胶囊层,在该微胶囊的表面上沉积第二聚电解质多层体,与第一多层体和多层涂覆微囊体的中间层一起形成,以去除内部微囊体的铸模成分,其特征在于从微胶囊安装的基底位置溶解和去除霉菌成分,并沉积多层涂层,从而使基板相对于多层涂层占据较高的位置,从而允许输出的溶质分子从microc的范围内塑造成分不仅通过扩散,而且通过重力作用,安瓿在0至90°的范围内选择基材相对于水平面的倾斜度。 ! 2.根据权利要求1所述的方法,其特征在于,施加在原子核上的层的数量和组成选择了有机分子式:PSS-(PAH-PSS)n,n = 1-7。 ! 3.根据权利要求1所述的方法,其特征在于,施加在核上的层的数量和组成选择了有机分子式:PSS-(PAH-PSS)n,n = 1-3。 ! 4.根据权利要求1所述的方法,其特征在于,施加在身体上的层的数量和组成

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