Unit of Pharmacology, Department of Molecular and Translational Medicine, University of Brescia, Viale Europa 11, 25123, Brescia, Italy.
Division of Endocrinology, IRCCS San Raffaele Hospital, San Raffaele Vita- Salute University - Head, Milan, Italy.
Pituitary. 2020 Jun;23(3):223-231. doi: 10.1007/s11102-020-01028-0.
The aim of this work was to investigate possible direct effects of the somatostatin analog octreotide on autophagy markers and markers of cellular metabolic activity using in vitro cultured rat pituitary tumor cells (GH3 cell line).
We measured two markers of the autophagic flux in cell lysates by Western blot and MTT reductive activity, total cellular ATP levels, pyruvate dehydrogenase (PDH) complex activity in cells lysates as markers of cell viability related to metabolic activity.
Octreotide (100 nM) treatment induced autophagy activation (increased LC3-I protein lipidation) and enhanced the autophagic flux (SQSTM1/p62 protein downregulation) in GH3 cells in different incubation media, in detail in Hank's balanced salt solution (HBSS) as well as in maintenance medium with serum. We did not observe any decrease of redox activity and energy production related to the induction of autophagy by octreotide. On the other hand, short-term treatments with octreotide in HBSS tended to enhance MTT reduction activity and to increase PDH complex enzymatic activity and ATP levels measured in GH3 cell lysates.
We provided evidence that octreotide can affect autophagy in pituitary tumor cells. The observed effects of octreotide were not related to a decrease of cellular metabolic activity. Finally, the induction of autophagy was either short-lived or overshadowed by other factors in the long term and this limit does not help clarifying their real impact on the pharmacological activity of somatostatin analogs.
本研究旨在通过体外培养的大鼠垂体瘤细胞(GH3 细胞系),探讨生长抑素类似物奥曲肽对自噬标志物和细胞代谢活性标志物的直接作用。
我们通过 Western blot 检测细胞裂解物中两种自噬流标志物,并通过 MTT 还原活性、总细胞三磷酸腺苷(ATP)水平和细胞裂解物中丙酮酸脱氢酶(PDH)复合物活性检测,评估与代谢活性相关的细胞活力标志物。
奥曲肽(100 nM)处理在不同孵育培养基中诱导 GH3 细胞发生自噬激活(LC3-I 蛋白脂质化增加),并增强自噬流(SQSTM1/p62 蛋白下调),在 Hank's 平衡盐溶液(HBSS)和含血清的维持培养基中更为明显。我们未观察到奥曲肽诱导自噬时氧化还原活性和能量产生的任何下降。另一方面,HBSS 中的奥曲肽短期处理可促进 MTT 还原活性,并增加 GH3 细胞裂解物中 PDH 复合物酶活性和 ATP 水平。
本研究提供了奥曲肽可影响垂体瘤细胞自噬的证据。奥曲肽的观察到的作用与细胞代谢活性的降低无关。最后,自噬的诱导要么是短暂的,要么在长期内被其他因素所掩盖,这一限制并不有助于阐明它们对生长抑素类似物药理学活性的实际影响。