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生物素功能化聚乙二醇化聚酰胺-胺树枝状大分子缀合物用于紫杉醇的主动靶向癌症治疗。

Biotin functionalized PEGylated poly(amidoamine) dendrimer conjugate for active targeting of paclitaxel in cancer.

机构信息

Department of Pharmacy, Birla Institute of Technology & Science-Pilani, Hyderabad Campus, Medchal, Hyderabad, Telangana 500078, India.

Department of Pharmacy, Birla Institute of Technology & Science-Pilani, Hyderabad Campus, Medchal, Hyderabad, Telangana 500078, India.

出版信息

Int J Pharm. 2019 Feb 25;557:329-341. doi: 10.1016/j.ijpharm.2018.12.069. Epub 2018 Dec 29.

Abstract

In the current study, we employed poly(amidoamine) (PAMAM) dendrimers of generation 4 (G4) to deliver paclitaxel (PTX), a poorly soluble anti-cancer agent precisely to cancer cells via its conjugation on dendrimer surface. Further, G4 PAMAM has been PEGylated (PEG) and tagged with Biotin, an essential micronutrient for cellular functions, receptors of which are overexpressed in certain cancers. The synthesized multifunctional conjugates were characterized by H NMR and zeta potential analysis techniques. In addition, the conjugates were evaluated in vitro in cell monolayers and 3D spheroids of biotin receptor over-expressed A549 cell line (human non-small cell lung cancer). G4 PTX PEG-Biotin conjugate penetrated at significantly higher extent in monolayers as well as spheroids as studied by flow cytometry and confocal microscopy by visualizing the cells at varied depth. The G4 PTX PEG-Biotin conjugate demonstrated higher cytotoxicity compared to free PTX and G4 PTX PEG conjugate as assessed by MTT assay in monolayers and Presto Blue assay in detached spheroidal cells. G4 PTX PEG-Biotin demonstrated significant inhibition of growth of tumor spheroids. Therefore, the newly synthesized biotin anchored PTX-conjugated dendrimer system is promising and could be further explored for efficiently delivering PTX to biotin receptor overexpressed cancers.

摘要

在当前的研究中,我们使用了第四代聚酰胺-胺(PAMAM)树状大分子(G4),通过将其接枝在树状大分子表面,将紫杉醇(PTX)这种难溶的抗癌药物精确递送到癌细胞中。此外,G4 PAMAM 已通过聚乙二醇(PEG)化和生物素标记,生物素是细胞功能所必需的微量营养素,其受体在某些癌症中过度表达。通过核磁共振(H NMR)和zeta 电位分析技术对合成的多功能缀合物进行了表征。此外,还在生物素受体过表达 A549 细胞系(人非小细胞肺癌)的单层细胞和 3D 球体中对这些缀合物进行了体外评估。通过流式细胞术和共聚焦显微镜对细胞在不同深度进行可视化研究,发现 G4 PTX PEG-Biotin 缀合物在单层和球体中的穿透程度显著更高。与游离 PTX 和 G4 PTX PEG 缀合物相比,MTT 法在单层细胞和 Presto Blue 法在分离的球体细胞中评估时,G4 PTX PEG-Biotin 缀合物表现出更高的细胞毒性。G4 PTX PEG-Biotin 对肿瘤球体的生长有明显的抑制作用。因此,新合成的生物素锚定的 PTX 缀合树状大分子系统具有很大的应用前景,可进一步用于将 PTX 高效递送到生物素受体过表达的癌症中。

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