Guillermet-Guibert J, Lahlou H, Cordelier P, Bousquet C, Pyronnet S, Susini C
INSERM U531, IFR31, Institut Louis Bugnard, Toulose, France.
J Endocrinol Invest. 2005;28(11 Suppl International):5-9.
Since its discovery three decades ago as an inhibitor of GH release from the pituitary gland, somatostatin has attracted much attention because of its functional role in the regulation of a wide variety of physiological functions in the brain, pituitary, pancreas, gastrointestinal tract, adrenals, thyroid, kidney and immune system. Its actions include inhibition of endocrine and exocrine secretions, modulation of neurotransmission, motor and cognitive functions, inhibition of intestinal motility, absorption of nutrients and ions and vascular contractility. In addition, the peptide controls the proliferation of normal and tumor cells. Its action is mediated by a family of G protein-coupled receptors [somatostatin receptor (SSTR)1-SSTR5] that are widely distributed in normal and cancer cells. Direct antitumor activities, mediated through SSTR expressed in tumor cells, include blockade of autocrine/paracrine growth-promoting hormone and growth factor production, inhibition of growth factor-mediated mitogenic signals and induction of apoptosis. Indirect antitumor effects include inhibition of growth-promoting hormone and growth factor secretion, and antiangiogenic actions. Many human tumors express more than one SSTR subtype, with SSTR2 being predominant. These receptors represent the molecular basis for the clinical use of somatostatin analogs in the treatment of endocrine tumors and their in vivo localization. This review covers the present knowledge in SSTR biology and signaling.
自30年前被发现作为垂体生长激素释放的抑制剂以来,生长抑素因其在调节大脑、垂体、胰腺、胃肠道、肾上腺、甲状腺、肾脏和免疫系统等多种生理功能中的作用而备受关注。其作用包括抑制内分泌和外分泌、调节神经传递、运动和认知功能、抑制肠道蠕动、营养物质和离子吸收以及血管收缩。此外,该肽还控制正常细胞和肿瘤细胞的增殖。其作用由一类G蛋白偶联受体[生长抑素受体(SSTR)1 - SSTR5]介导,这些受体广泛分布于正常细胞和癌细胞中。通过肿瘤细胞中表达的SSTR介导的直接抗肿瘤活性包括阻断自分泌/旁分泌生长促进激素和生长因子的产生、抑制生长因子介导的有丝分裂信号以及诱导细胞凋亡。间接抗肿瘤作用包括抑制生长促进激素和生长因子的分泌以及抗血管生成作用。许多人类肿瘤表达不止一种SSTR亚型,其中SSTR2占主导。这些受体是生长抑素类似物在治疗内分泌肿瘤及其体内定位临床应用的分子基础。本综述涵盖了SSTR生物学和信号传导的现有知识。