Department of Genetics Cell and Immunobiology, Semmelweis University, Nagyvárad tér. 4, H-1089, Budapest, Hungary.
J Pept Sci. 2013 Jan;19(1):46-58. doi: 10.1002/psc.2472. Epub 2012 Dec 4.
GnRH-III has been shown to exert a cytotoxic effect on the GnRH-R positive tumor cells. The chemotactic drug targeting (CDT) represents a new way for drug delivery approach based on selective chemoattractant guided targeting. The major goal of the present work was to develop and investigate various GnRH-III derivatives as potential targeting moieties for CDT. The cell physiological effects (chemotaxis, adhesion, and signaling) induced by three native GnRHs (hGnRH-I, cGnRH-II, and lGnRH-III) and nine GnRH-III derivatives were evaluated in two model cells (Tetrahymena pyriformis and Mono Mac 6 human monocytes). According to our results, the native GnRH-III elicited the highest chemoattractant and adhesion inducer activities of all synthesized peptides in micromolar concentrations in monocytes. With respect to chemoattraction, dimeric derivatives linked by a disulfide bridge (GnRH-III(C) ) proved to be efficient in both model cells; furthermore, acetylation of the linker region (GnRH-III(Ac-C) ) could slightly improve the chemotactic and adhesion effects in monocytes. The length of the peptide and the type of N-terminal amino acid could also determine the chemotactic and adhesion modulation potency of each fragment. The application of the chemoattractant GnRH-III derivatives was accompanied by a significant activation of phosphatidylinositol 3-kinase in both model cells. In summary, our work on low-level differentiated model cells of tumors has proved that GnRH-III and some of its synthetic derivatives are promising candidates to be applied in CDT: these compounds might act both as carrier, delivery unit, and antitumor agents.
GnRH-III 已被证明对 GnRH-R 阳性肿瘤细胞具有细胞毒性作用。趋化药物靶向(CDT)代表了一种新的药物输送方法,基于选择性趋化因子导向靶向。本工作的主要目标是开发和研究各种 GnRH-III 衍生物作为 CDT 的潜在靶向部分。在两种模型细胞(Tetrahymena pyriformis 和 Mono Mac 6 人单核细胞)中评估了三种天然 GnRH(hGnRH-I、cGnRH-II 和 lGnRH-III)和九种 GnRH-III 衍生物引起的细胞生理效应(趋化作用、黏附和信号转导)。根据我们的结果,天然 GnRH-III 在单核细胞中以微摩尔浓度引发了所有合成肽中最高的趋化剂和黏附诱导活性。就趋化作用而言,通过二硫键连接的二聚体衍生物 (GnRH-III(C) ) 在两种模型细胞中均有效;此外,连接区的乙酰化 (GnRH-III(Ac-C) ) 可略微提高单核细胞的趋化和黏附作用。肽的长度和 N-末端氨基酸的类型也可以决定每个片段的趋化和黏附调节能力。趋化剂 GnRH-III 衍生物的应用伴随着两种模型细胞中磷脂酰肌醇 3-激酶的显著激活。总之,我们对肿瘤低度分化模型细胞的研究证明,GnRH-III 及其一些合成衍生物是 CDT 的有前途的候选物:这些化合物既可以作为载体、输送单元,也可以作为抗肿瘤药物。