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生长抑素2、3和5型受体的内化:生长抑素激动剂和拮抗剂的作用

Internalization of sst2, sst3, and sst5 receptors: effects of somatostatin agonists and antagonists.

作者信息

Cescato Renzo, Schulz Stefan, Waser Beatrice, Eltschinger Véronique, Rivier Jean E, Wester Hans-Jürgen, Culler Michael, Ginj Mihaela, Liu Qisheng, Schonbrunn Agnes, Reubi Jean Claude

机构信息

Division of Cell Biology and Experimental Cancer Research, Institute of Pathology, University of Berne, Berne, Switzerland.

出版信息

J Nucl Med. 2006 Mar;47(3):502-11.

Abstract

UNLABELLED

The uptake of radiolabeled somatostatin analogs by tumor cells through receptor-mediated internalization is a critical process for the in vivo targeting of tumoral somatostatin receptors. In the present study, the somatostatin receptor internalization induced by a variety of somatostatin analogs was measured with new immunocytochemical methods that allow characterization of trafficking of the somatostatin receptor subtype 2 (sst2), somatostatin receptor subtype 3 (sst3), and somatostatin receptor subtype 5 (sst5) in vitro at the protein level.

METHODS

Human embryonic kidney 293 (HEK293) cells expressing the sst2, sst3, or the sst5 were used in a morphologic immunocytochemical internalization assay using specific sst2, sst3 and sst5 antibodies to qualitatively and quantitatively determine the capability of somatostatin agonists or antagonists to induce somatostatin receptor internalization. In addition, the internalization properties of a selection of these agonists have been compared and quantified in sst2-expressing CHO-K1 cells using an ELISA.

RESULTS

Agonists with a high sst2-binding affinity were able to induce sst2 internalization in the HEK293 and CHO-K1 cell lines. New sst2 agonists, such as Y-DOTA-TATE, Y-DOTA-NOC, Lu-DOTA-BOC-ATE (where DOTA is 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid; TATE is [Tyr3, Thr8]-octreotide; NOC is [1-NaI3]-octreotide; and BOC-ATE is [BzThi3, Thr8]-octreotide), iodinated sugar-containing octreotide analogs, or BIM-23244 were considerably more potent in internalizing sst2 than was DTPA-octreotide (where DTPA is diethylenetriaminepentaacetic acid). Similarly, compounds with high sst3 affinity such as KE108 were able to induce sst3 internalization. In sst2- or sst3-expressing cell lines, agonist-induced receptor internalization was efficiently abolished by sst2- or sst3-selective antagonists, respectively. Antagonists alone had no effect on sst2 or sst3 internalization. We also showed that somatostatin-28 and somatostatin-14 can induce sst5 internalization. Unexpectedly, however, potent sst5 agonists such as KE108, BIM-23244, and L-817,818 were not able to induce sst5 internalization under the same conditions.

CONCLUSION

Using sensitive and reproducible immunocytochemical methods, the ability of various somatostatin analogs to induce sst2, sst3, and sst5 internalization has been qualitatively and quantitatively determined. Whereas all agonists triggered sst2 and sst3 internalization, sst5 internalization was induced by natural somatostatin peptides but not by synthetic high-affinity sst5 agonists. Such assays will be of considerable help for the future characterization of ligands foreseen for nuclear medicine applications.

摘要

未标记

肿瘤细胞通过受体介导的内化作用摄取放射性标记的生长抑素类似物是体内靶向肿瘤生长抑素受体的关键过程。在本研究中,采用新的免疫细胞化学方法测量了多种生长抑素类似物诱导的生长抑素受体内化,该方法可在体外蛋白质水平上对生长抑素受体亚型2(sst2)、生长抑素受体亚型3(sst3)和生长抑素受体亚型5(sst5)的转运进行表征。

方法

使用表达sst2、sst3或sst5的人胚肾293(HEK293)细胞,进行形态学免疫细胞化学内化试验,使用特异性sst2、sst3和sst5抗体定性和定量测定生长抑素激动剂或拮抗剂诱导生长抑素受体内化的能力。此外,使用酶联免疫吸附测定法(ELISA)比较并定量了在表达sst2的CHO-K1细胞中这些激动剂的内化特性。

结果

具有高sst2结合亲和力的激动剂能够在HEK293和CHO-K1细胞系中诱导sst2内化。新的sst2激动剂,如Y-DOTA-泰曲肽(Y-DOTA-TATE)、Y-DOTA-奥曲肽(Y-DOTA-NOC)、镥-DOTA-BOC-奥曲肽(Lu-DOTA-BOC-ATE,其中DOTA为1,4,7,10-四氮杂环十二烷-1,4,7,10-四乙酸;TATE为[酪氨酸3,苏氨酸8]-奥曲肽;NOC为[1-碘代丙氨酸3]-奥曲肽;BOC-ATE为[苯硫醚3,苏氨酸8]-奥曲肽)、碘化含糖奥曲肽类似物或BIM-23244在使sst2内化方面比二乙三胺五乙酸-奥曲肽(DTPA-奥曲肽,其中DTPA为二乙三胺五乙酸)的效力要强得多。同样,具有高sst3亲和力的化合物如KE108能够诱导sst3内化。在表达sst2或sst3的细胞系中,激动剂诱导的受体内化分别被sst2或sst3选择性拮抗剂有效消除。单独的拮抗剂对sst2或sst3内化没有影响。我们还表明生长抑素-28和生长抑素-14能够诱导sst5内化。然而,出乎意料的是,在相同条件下,强效的sst5激动剂如KE108、BIM-23244和L-817,818不能诱导sst5内化。

结论

使用灵敏且可重复的免疫细胞化学方法,已定性和定量地确定了各种生长抑素类似物诱导sst2、sst3和sst5内化的能力。虽然所有激动剂都能触发sst2和sst3内化,但sst5内化是由天然生长抑素肽诱导的,而非合成的高亲和力sst5激动剂。此类测定对于未来核医学应用中预期配体的表征将有很大帮助。

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