Division of Biosurface Technology, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Science and Technology, Poojappura, Thiruvananthapuram 695012, Kerala, India.
Biomaterials. 2011 Apr;32(11):3030-41. doi: 10.1016/j.biomaterials.2010.11.048. Epub 2011 Jan 22.
Folate receptor mediated gene targeting provides several advantages such as delivery of high concentration of gene at specific tumor sites including brain, lung, ovary, uterus and kidney where folate receptors are over expressed. In the present study for both systemic stability and tumor targeting ability, poly (ethylene glycol)-folic acid (PEG-FA) conjugate was coupled with an arginine modified oligo (alkylaminosiloxane) graft poly (ethyleneimine) having enhanced transfection efficiency compared to poly (ethyleneimine). The resultant polymer P(SiDAAr)5FP2 complexed pDNA effectively and showed protection against nuclease degradation. The PEG group provided improved blood compatibility and cell viability. Uniformly oriented arginine moiety helped to enhance cellular and nuclear localisation, which led to improved transfection. The polymer was capable of releasing pDNA at the nucleus and being cleared from the cell after its purpose. Transfection in presence of cellular uptake inhibitors showed multiple pathways for cellular uptake of the targeted polymer, out of which folate receptor mediated uptake was more prominent. The folate mediated cellular uptake of P(SiDAAr)5FP2 was then confirmed by flow cytometric evaluation. The high accumulation of targeted polymers in the tumor tissues of tumor bearing mice from 2nd hour onwards proved the active targeting effect of the polymer. Besides tumor accumulation, the material showed capability to diffuse through the vascular endothelium. This property is expected to be beneficial for brain targeting experiments.
叶酸受体介导的基因靶向具有许多优点,例如可以在特定肿瘤部位(包括大脑、肺、卵巢、子宫和肾脏等叶酸受体过表达的部位)递送高浓度的基因。在本研究中,为了提高系统稳定性和肿瘤靶向能力,将聚乙二醇-叶酸(PEG-FA)偶联物与具有比聚乙二醇化多胺(PEI)更高转染效率的精氨酸修饰的低聚(烷氨基硅氧烷)接枝聚(亚乙基亚胺)(OASAr-PEI)偶联。所得聚合物 P(SiDAAr)5FP2 有效结合 pDNA,并具有抵抗核酸酶降解的保护作用。PEG 基团提供了更好的血液相容性和细胞活力。均匀定向的精氨酸部分有助于增强细胞和核定位,从而提高转染效率。该聚合物能够在细胞核中释放 pDNA,并在完成其作用后从细胞中清除。在细胞摄取抑制剂存在的情况下进行转染表明,靶向聚合物的细胞摄取有多种途径,其中叶酸受体介导的摄取更为突出。通过流式细胞术评估证实了 P(SiDAAr)5FP2 的叶酸介导的细胞摄取。从第 2 小时开始,荷瘤小鼠肿瘤组织中靶向聚合物的高积累证明了该聚合物的主动靶向作用。除了肿瘤积累外,该材料还显示出能够通过血管内皮扩散的能力。这种特性有望有益于脑靶向实验。