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Method for producing microsphere for embolization and method for producing microsphere combined with drug-containing nanotransporter

机译:栓塞用微球的制造方法以及与含药物的纳米转运体组合的微球的制造方法

摘要

A process for optimizing the recoverability of lyophilized microspheres for emboli and chitosan microspheres to which a drug-containing carrier is bound are disclosed. Specifically, a process for optimizing the recoverability, which includes adding trehalose as a lyophilization protectant prior to a lyophilization process for stable storage of the microspheres, and vortexing the lyophilized microspheres in order to rehydrate the microspheres, is provided. Also, microspheres capable of precisely controlling the release of the drug since the quantity of a drug released from the chitosan microspheres having a drug-containing nano-carrier bound thereto is adjusted according to the drug/chitosan ratio, and a method of preparing the same are provided. The optimization process can be useful in maintaining the physical properties, shapes, and the drug release level of the microspheres for emboli even after lyophilization of the microspheres. The chitosan microspheres having the drug-containing nano-carrier bound thereto can be useful in stably causing emboli in blood vessels, and precisely adjusting the release of the drug, and thus can be used in anticancer treatment.
机译:公开了一种优化冻干微球的栓子和壳聚糖微球的可回收性的方法,该微球与结合了含药物的载体结合。具体地,提供了一种优化可回收性的方法,该方法包括在冻干过程之前添加海藻糖作为冻干保护剂以稳定地保存微球,并涡旋冻干的微球以使微球再水化。另外,由于根据药物/壳聚糖的比例调节从结合有含药物的纳米载体的壳聚糖微球释放的药物的量,因此能够精确地控制药物释放的微球及其制备方法提供。即使在微球冻干之后,优化过程也可用于维持用于栓子的微球的物理性质,形状和药物释放水平。结合有含药物的纳米载体的壳聚糖微球可用于稳定地引起血管中的栓塞,并精确地调节药物的释放,因此可用于抗癌治疗。

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