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首页> 外文期刊>Biomacromolecules >Incorporation of alkaline phosphatase into layer-by-layer polyelectrolyte films on the surface of affi-gel heparin beads:physicochemical characterization and evaluation of the enzyme stability
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Incorporation of alkaline phosphatase into layer-by-layer polyelectrolyte films on the surface of affi-gel heparin beads:physicochemical characterization and evaluation of the enzyme stability

机译:将碱性磷酸酶掺入亲和凝胶肝素珠粒表面的逐层聚电解质膜中:理化性质和酶稳定性的评估

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摘要

The preparation of functionalized beas in the micrometer size range that can be used to probe the action of immobilized biomolecules on cell cultures during controlled periods of time is of fundamnetal importance in cell biology.However,the preparation and characterization of such particles is tedious because of their fast sedimentation.It is hence difficult to prepare such beads in a reproducible manner.This highlights the need to prepare an important batch of functionalized particles and to store them under conditions where the loss of biological activity is minimized.The aim of this paper was to immobilize alkaline phosphatase (AP) as a model enzyme on the surface of Affi-gel heparin beads functionnalized by means of a layer-by-layer (LBL) film made of poly-L-glutamic (PGA) acid and poly-L-lysine (PLL).The enzyme has been adsorbed either on the top of the LBL film or embedded under five polyelectrolyte layer.When embedded,the enzyme was not released in buffer and retained more than 30% of its initial activity after 3 months of storage at 4 degC.However,when the enzyme was adsorbed on top of the LBL film,about 80% of the adsorbed enzyme was released in the buffer after a few days of storage.Longer storage did not lead to any further desorption and the remaining enzyme displayed the same evolution of its activity with time as the embedded enzyme.The time evolution of the enzyme activity on the beads is compared with that in solution alone and in the prsence of PGA and PLL separately.
机译:微米尺寸范围的功能化beas的制备可用于探测固定时间段内固定的生物分子对细胞培养物的作用在细胞生物学中具有重要的经济意义。然而,由于这种颗粒的制备和表征很繁琐,因为它们的快速沉降。因此很难以可重现的方式制备这种珠子。这突出了需要制备重要的一批功能化颗粒并将其存储在生物活性损失降至最低的条件下的目的。将碱性磷酸酶(AP)作为模型酶固定在通过聚-L-谷氨酸(PGA)酸和聚-L-谷氨酸制成的逐层(LBL)膜功能化的Affi-凝胶肝素珠的表面上赖氨酸(PLL)。该酶已被吸附在LBL膜的顶部或包埋在五个聚电解质层下。当包埋时,该酶不会在缓冲液中释放并保留超过在4摄氏度下储存3个月后,其初始活性的30%。但是,当酶被吸附在LBL膜的顶部时,几天储存后,约80%的被吸附酶在缓冲液中释放出来。不会导致进一步的解吸,并且剩余的酶随时间的变化与包埋的酶表现出相同的进化。将珠上的酶活性随时间的变化与单独溶液以及在PGA和PLL的存在下进行比较分别。

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