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Nanoscale Organization of Human GnRH-R on Human Bladder Cancer Cells

机译:人膀​​胱癌细胞上人GnRH-R的纳米组织

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Human gonadotropin-releasing hormone receptor (GnRH-R; or type I GnRH-R), which is expressed in tumor cells, has gained more and more attention as a specific target for cancer therapy. Given the clinical utility, the improved characterization of both the subcellular distribution and surface organization of GnRH-R is an important step in the development of more effective and possibly new therapeutic strategies. In the present study, the nanoorganization of human GnRH-R was analyzed on fixed human bladder cancer cells (T24) by atomic force microscopy (AFM). The recognition images reveal that GnRH-Rs have a tendency to assemble in nanodomains (or clusters) that are irregularly distributed on the T24 cell surface. The locations of the GnRH-Rs were identified on the topographical images with nanometer accuracy. The obtained results enrich our understanding of the local distribution of GnRH-Rs on the bladder cancer cell membrane and demonstrate the ability of biological AFM to provide more complete and exact information at the single molecule level.
机译:在肿瘤细胞中表达的人促性腺激素释放激素受体(GnRH-R;或I型GnRH-R)作为癌症治疗的特定靶标越来越受到关注。考虑到临床用途,GnRH-R的亚细胞分布和表面组织的改进表征是开发更有效和可能新的治疗策略中的重要步骤。在本研究中,通过原子力显微镜(AFM)在固定的人膀胱癌细胞(T24)上分析了人GnRH-R的纳米组织。识别图像显示,GnRH-Rs倾向于在不规则分布在T24细胞表面的纳米域(或簇)中组装。 GnRH-Rs的位置以纳米精度在地形图上确定。获得的结果丰富了我们对GnRH-Rs在膀胱癌细胞膜上的局部分布的理解,并证明了生物AFM能够在单分子水平上提供更完整和准确的信息。

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