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From poly(alkyl cyanoacrylate) to squalene as core material for the design of nanomedicines

机译:从聚(烷基氰基丙烯酸烷基酯)至Squalene作为纳米喂养ines设计的芯材料

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摘要

This review article covers the most important steps of the pioneering work of Patrick Couvreur and tries to shed light on his outstanding career that has been a source of inspiration for many decades. His discovery of biodegradable poly(alkyl cyanoacrylate) (PACA) nanoparticles (NPs) has opened large perspectives in nanomedicine. Indeed, NPs made from various types of alkyl cyanoacrylate monomers have been used in different applications, such as the treatment of intracellular infections or the treatment of multi-drug resistant hepatocarcinoma. This latest application led to the Phase III clinical trial of Livatag?, a PACA nanoparticulate formulation of doxorubicin. Despite the success of PACA NPs, the development of a novel type of NP with higher drug loadings and lower burst release was tackled by the discovery of squalene-based nanomedicines where the drug is covalently linked to the lipid derivative and the resulting conjugate is self-assembled into NPs. This pioneering work was accompanied by a wide range of novel applications which mainly dealt with the management of unmet medical needs (e.g. pancreatic cancer, brain ischaemia and spinal cord injury).
机译:该审查文章涵盖了Patrick Couvreur的开创性工作中最重要的步骤,并试图阐明他杰出的职业生涯,这已经成为了几十年来的灵感来源。他发现可生物降解的聚(烷基氰基丙烯酸烷基酯)(PACA)纳米颗粒(NPS)在纳米卫生尼开放了大观点。实际上,由各种类型的烷基氰基丙烯酸酯单体制成的NPS已用于不同的应用中,例如治疗细胞内感染或治疗多毒性肝癌。这种最新应用导致了LivataG的III期临床试验,治疗多柔比星的PACA纳米粒子制剂。尽管PACA NPS成功,所以通过发现基于Squalene的纳米型碱性的纳米型纳米型纳米型纳米型纳米型纳米型纳米型纳米型新型NP的开发,其中药物与脂质衍生物共价连接,所得的缀合物是自我的组装成NPS。这种开拓性工作伴随着广泛的新应用,主要是处理未满足医疗需求的管理(例如胰腺癌,脑缺血和脊髓损伤)。

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