Agarwal Abhiruchi, Jaye David L, Giegerman Cissy M, Bellamkonda Ravi V
Neurological Biomaterials and Therapeutics, Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
J Biomed Mater Res A. 2008 Dec 1;87(3):728-38. doi: 10.1002/jbm.a.31762.
Traditional therapies for high grade gliomas are limited in part by collateral damage to normal tissues. Selective delivery of therapies to tumors is, therefore, needed. Here, we report that liposomal nanocarriers coated with a novel oligopeptide enhance uptake by 9L gliosarcoma. A targeting nine amino acid peptide sequence (RSI) was identified by differential panning of random peptide phage display libraries on 9L cells and rat blood cells and plasma. Peptides were coupled to the surface of liposomal nanocarriers which were subsequently loaded with doxorubicin. The ability of RSI coated liposomes to facilitate drug uptake and cytotoxicity was compared with conventional liposomal nanocarriers and controls. In addition, plasma clearance profiles of the RSI peptide coupled liposomal nanocarriers were evaluated in adult immuno-competent rats. RSI peptide-coupled liposomal nanocarriers enhanced drug uptake by 9L cells by 500% compared with conventional liposomal nanocarriers, and significantly increased cytotoxicity. The plasma half-lives confirmed that the presence of the RSI peptide on the liposomal nanocarriers did not compromise circulation time in the blood in comparison with Stealth liposomal nanocarriers. These data suggest that phage-identified oligopeptides could lead to the development of new tumor selective nanocarriers.
高级别胶质瘤的传统治疗方法在一定程度上受到对正常组织的附带损害的限制。因此,需要将治疗方法选择性地递送至肿瘤。在此,我们报告一种涂有新型寡肽的脂质体纳米载体可增强9L胶质肉瘤的摄取。通过在9L细胞以及大鼠血细胞和血浆上对随机肽噬菌体展示文库进行差异淘选,鉴定出一种靶向性九氨基酸肽序列(RSI)。将肽偶联到脂质体纳米载体表面,随后装载阿霉素。将涂有RSI的脂质体促进药物摄取和细胞毒性的能力与传统脂质体纳米载体及对照进行比较。此外,还在成年免疫活性大鼠中评估了偶联有RSI肽的脂质体纳米载体的血浆清除情况。与传统脂质体纳米载体相比,偶联有RSI肽的脂质体纳米载体使9L细胞的药物摄取增加了500%,并显著提高了细胞毒性。血浆半衰期证实,与隐形脂质体纳米载体相比,脂质体纳米载体上RSI肽的存在并未影响其在血液中的循环时间。这些数据表明,噬菌体鉴定的寡肽可能会促使新型肿瘤选择性纳米载体的开发。