Department of Pharmacy, University of Salerno, via Giovanni Paolo II, 132, 84084, Fisciano, SA, Italy.
Drug Deliv Transl Res. 2022 Aug;12(8):1974-1990. doi: 10.1007/s13346-022-01135-4. Epub 2022 Feb 22.
Cancer therapies started to take a big advantage from new nanomedicines on the market. Since then, research tried to better understand how to maximize efficacy while maintaining a high safety profile. Polyethylene glycol (PEG), the gold standard for nanomedicines coating design, is a winning choice to ensure a long circulation and colloidal stability, while in some cases, patients could develop PEG-directed immunoglobulins after the first administration. This lead to a phenomenon called accelerated blood clearance (ABC effect), and it is correlated with clinical failure because of the premature removal of the nanosystem from the circulation by immune mechanism. Therefore, alternatives to PEG need to be found. Here, looking at the backbone structural analogy, the hydrophilicity, flexibility, and its GRAS status, the natural polysaccharide inulin (INU) was investigated as PEG alternative. In particular, the first family of Inulin-g-poly-D,L-lactide amphiphilic copolymers (INU-PLAs) was synthesized. The new materials were fully characterized from the physicochemical point of view (solubility, 1D and 2D NMR, FT-IR, UV-Vis, GPC, DSC) and showed interesting hybrid properties compared to precursors. Moreover, their ability in forming stable colloids and to serve as a carrier for doxorubicin were investigated and compared with the already well-known and well-characterized PEGylated counterpart, polyethylene glycol-b-poly-D,L-lactide (PEG-PLA). This preliminary investigation showed INU-PLA to be able to assemble in nanostructures less than 200 nm in size and capable of loading doxorubicin with an encapsulation efficiency in the same order of magnitude of PEG-PLA analogues.
癌症疗法开始从市场上的新型纳米药物中获得巨大优势。从那时起,研究人员试图更好地理解如何在保持高安全性的同时最大限度地提高疗效。聚乙二醇(PEG)是纳米药物涂层设计的金标准,是确保长循环和胶体稳定性的首选,而在某些情况下,患者在首次给药后可能会产生针对 PEG 的免疫球蛋白。这导致了一种称为加速血液清除(ABC 效应)的现象,由于免疫机制导致纳米系统过早从循环中清除,因此与临床失败相关。因此,需要寻找 PEG 的替代品。在这里,从骨干结构类似性、亲水性、柔韧性及其 GRAS 状态来看,天然多糖菊粉(INU)被研究为 PEG 的替代品。特别是,首次合成了菊粉-聚-D,L-乳酸两亲嵌段共聚物(INU-PLA)。从物理化学角度(溶解度、1D 和 2D NMR、FT-IR、UV-Vis、GPC、DSC)对新材料进行了全面表征,并与前体相比显示出有趣的混合特性。此外,还研究了它们形成稳定胶体的能力以及作为阿霉素载体的能力,并与已经众所周知和充分表征的聚乙二醇化对应物聚乙二醇-b-聚-D,L-乳酸(PEG-PLA)进行了比较。这项初步研究表明,INU-PLA 能够组装成小于 200nm 大小的纳米结构,并能够以与 PEG-PLA 类似物相同数量级的包封效率负载阿霉素。