Sopherion Therapeutics Inc., New Haven, CT 08540, USA.
Int J Oncol. 2011 Aug;39(2):401-8. doi: 10.3892/ijo.2011.1040. Epub 2011 May 11.
A major goal of treatment strategies for cancer is the development of agents which can block primary tumor growth and development as well as the progression of tumor metastasis without any treatment associated side effects. Using mini peptide display (MPD) technology, we generated peptides that can bind to the human vascular endothelial growth factor (VEGF) receptor KDR. These peptides were evaluated for their ability to block angiogenesis, tumor growth and metastasis in vitro and in vivo. A D-amino acid peptide with high serum stability (ST100,059) was found to have the most potent activity in vitro as indicated by inhibition of VEGF stimulation of endothelial cells. It was also found to be the most active of the series in blocking VEGF-mediated activity in vivo, as measured in Matrigel-filled angioreactors implanted in mice. ST100,059 blocks VEGF-induced MAPK phosphorylation, as well as inhibits VEGF-induced changes in gene expression in HUVEC cells. In in vivo studies, treatment of female C57BL/6 mice inoculated with B16 mouse melanoma cells with ST100,059 resulted in a dose-dependent decrease in tumor volume and lung metastasis as compared to control groups of animals receiving vehicle alone. These studies demonstrate that by using MPD, peptides can be identified with enhanced affinity relative to those discovered using phage display. Based on these studies we have identified one such peptide ST100,059 which can effectively block tumor growth and metastasis due to its anti-angiogenic effects and ability to block intracellular signaling pathways involved in tumor progression.
癌症治疗策略的一个主要目标是开发能够阻断原发性肿瘤生长和发展以及肿瘤转移进展的药物,而没有任何治疗相关的副作用。我们使用小型肽展示(MPD)技术生成了能够与人类血管内皮生长因子(VEGF)受体 KDR 结合的肽。这些肽被评估了其在体外和体内阻断血管生成、肿瘤生长和转移的能力。我们发现一种具有高血清稳定性的 D-氨基酸肽(ST100,059)在体外具有最强的活性,表现为抑制 VEGF 刺激内皮细胞。在体内,它也被发现是该系列中最活跃的,能够阻断 VEGF 介导的活性,如在植入小鼠的 Matrigel 填充血管生成器中测量的那样。ST100,059 阻断 VEGF 诱导的 MAPK 磷酸化,以及抑制 VEGF 诱导的 HUVEC 细胞中基因表达的变化。在体内研究中,用 ST100,059 治疗接种 B16 小鼠黑色素瘤细胞的雌性 C57BL/6 小鼠,与单独接受载体的对照组动物相比,肿瘤体积和肺转移明显减少,呈剂量依赖性。这些研究表明,通过使用 MPD,可以鉴定出比使用噬菌体展示发现的肽具有更高亲和力的肽。基于这些研究,我们已经确定了一种这样的肽 ST100,059,由于其抗血管生成作用和阻断肿瘤进展中涉及的细胞内信号通路的能力,它可以有效地阻断肿瘤生长和转移。