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New chimeric advanced Drug Delivery nano Systems (chi-aDDnSs) as doxorubicin carriers.

机译:作为阿霉素载体的新型嵌合高级药物递送纳米系统(chi-aDDnSs)。

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Since the late 1960s, the field of drug delivery has focused on the creation of new formulations with improved properties, taking much attention to drug release from the carrier. Liposomes and dendrimers represent two of the most studied drug carriers. A Modulatory Liposomal Controlled Release System (MLCRS) combining liposomal and dendrimeric technology has been recently published as well as Liposomal locked-in Dendrimers (LLDs) technology which was considered to be a class of MLCRSs. Chimeric advanced Drug Delivery nano Systems (chi-aDDnSs) can be defined as mixed nanosystems due to the combination of the bionanomaterials used and can offer advantages as drug carriers. This work deals with the production of two new chi-aDDnSs incorporating the newly synthesized dendrimer PG1. One of the two formulations bears the exact lipidic composition as the commercial liposomal drug "Myocet". Doxorubicin (Dox) was incorporated into conventional (free of dendrimer) liposomal formulations and into the corresponding chi-aDDnSs, and the physicochemical characteristics, the in vitro drug release and the in vitro cytotoxicity against human cancer cell lines were assessed. The results revealed a different modulation release effect of doxorubicin from the chi-aDDnS, compared to the Myocet replica. Pharmacological cytotoxicity concerning all the chi-aDDnSs was very close to that of the conventional liposomal systems.
机译:自1960年代后期以来,药物输送领域一直专注于创建具有改善性能的新制剂,并特别注意药物从载体中的释放。脂质体和树状聚合物代表了研究最多的两种药物载体。脂质体和树状体技术相结合的调节性脂质体控释系统(MLCRS)以及被认为是一类MLCRS的脂质体锁定树状体(LLDs)技术已在最近发布。嵌合高级药物递送纳米系统(chi-aDDnSs)由于使用的生物纳米材料的组合可以定义为混合纳米系统,并且可以提供作为药物载体的优势。这项工作涉及结合了新合成的树枝状聚合物PG1的两种新型chi-aDDnS的生产。两种制剂之一具有与商业脂质体药物“ Myocet”相同的脂质成分。将阿霉素(Dox)掺入常规(不含树状聚合物)脂质体制剂中,并掺入相应的chi-aDDnSs中,并评估其理化特性,体外药物释放和对人癌细胞系的体外细胞毒性。结果表明,与Myocet复制品相比,阿霉素从chi-aDDnS中释放出不同的调节作用。关于所有chi-aDDnS的药理细胞毒性非常接近于常规脂质体系统。

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