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Reconstitution properties of biologically active polymersomes after cryogenic freezing and a freeze-drying process

机译:低温冷冻和冷冻干燥过程后生物活性聚合物囊泡的重构特性

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Reconstitution of biologically active polymersomes from the frozen or solid state into any fluid state is still a challenging issue for the design of new biological experiments and for the formulation of therapeutic agents. To gain knowledge about the reconstitution of pH-responsive and photo-crosslinked polymersomes, surface-functionalized and enzyme-containing polymersomers were cryogenically frozen (?20 °C) or freeze-dried with inulin as the lyoprotectant (0.1% w/v) and stored for a defined time period. Reconstituting those polymersomes in solution by thawing or a re-dispersing process revealed their original physical properties as well as their function as a pH-switchable enzymatic nanoreactor.
机译:对于新的生物学实验的设计和治疗剂的配制,将生物活性多聚体从冷冻状态或固态恢复为任何流体状态仍然是一个具有挑战性的问题。为了了解有关pH响应和光交联的聚合物小体的重构的知识,将表面官能化的含酶多聚体进行低温冷冻(?20°C)或用菊粉作为冻干保护剂(0.1%w / v)冷冻干燥。存储一段确定的时间。通过解冻或再分散过程在溶液中重构这些聚合物囊泡,揭示了它们的原始物理性质以及它们作为pH可调酶纳米反应器的功能。

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