首页> 外文期刊>Journal of nanoscience and nanotechnology >Release of Liposome-Encapsulated Calcein from Liposome Entrapping Gelatin-Carboxymethylcellulose Films: A Presentation of Different Possibilities
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Release of Liposome-Encapsulated Calcein from Liposome Entrapping Gelatin-Carboxymethylcellulose Films: A Presentation of Different Possibilities

机译:脂质体包封的钙黄绿素从脂质体中捕获明胶-羧甲基纤维素膜的释放:不同可能性的介绍。

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摘要

Liposome entrapment in films consisting of gelatin (GEL) or GEL/sodium carboxymethylcellulose (NaCMC) mixtures, as a method to alter drug release kinetics from polymeric films and/or incorporate sensitive bioactive molecules in solid films, was investigated. Bulk or thin complex (liposome trapping) films were formed by crosslinking (with glutaraldehyde) solutions of GEL or GEL/NaCMC in presence of calcein-encapsulating or rhodamine-labeled liposomes (Rho-Lip). Rho-Lip were observed by confocal microscopy to be homogenously distributed in the films. Calcein release from films was evaluated for periods up to 25 d, and it was found that several possibilities, concerning the release of the liposome-encapsulated molecule from the films, are offered; (i) Release can be sustained, if large Iiposomes are entrapped in the films. In this case the liposome-encapsulated molecules are released from the films only after they have been released from the vesicles, and the release can be controlled by modifying the film composition, the network density and/or the film geometry, (ii) Intact small unilamellar liposomes (SUV) can be released from the polymeric films depending on their swelling degree. The later can be controlled by modulating the film composition and amount of crosslinker. Film composition also affects the integrity of the film-entrapped liposomes during the crosslinking process, possibly due its effect on the density of the polymeric network of the film.
机译:研究了由明胶(GEL)或GEL /羧甲基纤维素钠(NaCMC)混合物组成的薄膜中的脂质体截留,作为改变药物从聚合物薄膜释放动力学和/或在固体薄膜中掺入敏感生物活性分子的方法。在钙黄绿素包封或若丹明标记的脂质体(Rho-Lip)存在下,通过交联(用戊二醛)GEL或GEL / NaCMC溶液形成大块或薄层复合物(脂质体捕获)。通过共聚焦显微镜观察到Rho-Lip均匀地分布在膜中。对钙黄绿素从薄膜中释放的时间进行了长达25 d的评估,发现存在多种可能性,涉及脂质体包裹的分子从薄膜中的释放。 (i)如果在膜中夹有大脂质体,则可以持续释放。在这种情况下,脂质体包裹的分子只有在从囊泡中释放后才从膜中释放,并且可以通过改变膜的组成,网络密度和/或膜的几何形状来控制释放,(ii)完整小单层脂质体(SUV)可以根据其溶胀度从聚合物薄膜中释放出来。后者可以通过调节膜组成和交联剂的量来控制。膜组合物在交联过程中也影响夹有膜的脂质体的完整性,这可能是由于其对膜的聚合物网络密度的影响。

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