Kim Yong-Dong, Park Tae-Eun, Singh Bijay, Maharjan Sushila, Cho Kye-Soo, Park Kyoung Pyo, Choi Yun-Jaie, Arote Rohidas B, Cho Chong-Su
Department of Molecular Genetics & Dental Research Institute, School of Dentistry, Seoul National University,Seoul, Korea.
Curr Pharm Des. 2015;21(31):4637-56. doi: 10.2174/138161282131151013192327.
With the discovery of RNA interference technology, small-interfering RNA (siRNA) has emerged as new powerful tool for gene therapy because of its high targeting specificity and selectivity. However, one of the limitations to successful gene therapy is the inability to monitor delivery of genes and therapeutic responses at the targeted site. Hence, a combinatorial approach of gene therapy with molecular imaging has been crucial in optimizing gene therapy. Recent advances in nanotechnology have made tremendous efforts to develop multifunctional nanoparticles that contain imaging and therapeutic agents together for image-guided therapy. The nanoparticles serve as contrast agents in imaging for disease detection with simultaneous delivery of therapeutics to cure the diseases. The therapy also helps to monitor the drug accumulation and assimilation in the body, thereby facilitating the evaluation of treatment effects. Here, we present an overview of polymer and lipid-based carriers for siRNA delivery, along with imaging agents as image guided therapy, in the treatment of breast, lung, liver, ovarian, cervical, and prostate cancers.
随着RNA干扰技术的发现,小干扰RNA(siRNA)因其高靶向特异性和选择性,已成为基因治疗的一种新的强大工具。然而,成功进行基因治疗的局限性之一是无法监测基因在靶向部位的递送情况和治疗反应。因此,基因治疗与分子成像的联合方法对于优化基因治疗至关重要。纳米技术的最新进展做出了巨大努力,以开发多功能纳米颗粒,这些纳米颗粒同时包含成像剂和治疗剂用于图像引导治疗。纳米颗粒在成像中作为造影剂用于疾病检测,同时递送治疗剂以治愈疾病。该疗法还有助于监测药物在体内的积累和同化,从而便于评估治疗效果。在此,我们概述了用于递送siRNA的基于聚合物和脂质的载体,以及作为图像引导治疗的成像剂,用于治疗乳腺癌、肺癌、肝癌、卵巢癌、宫颈癌和前列腺癌。