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库筛选和初步鉴定合成大麻素对前列腺癌和胰腺癌细胞系的作用。

Library Screening and Preliminary Characterization of Synthetic Cannabinoids Against Prostate and Pancreatic Cancer Cell Lines.

机构信息

Department of Pharmacology, Penn State College of Medicine, Hershey, Pennsylvania, USA.

Pennsylvania-Designated Medical Marijuana Academic Clinical Research Center at Penn State, Hershey, Pennsylvania, USA.

出版信息

Cannabis Cannabinoid Res. 2024 Apr;9(2):523-536. doi: 10.1089/can.2022.0270. Epub 2023 Mar 7.

Abstract

Our previous screening efforts with colorectal cancer cell lines suggested potential cannabinoid therapeutic leads for other solid cancers. The aim of this study was to identify cannabinoid lead compounds that have cytostatic and cytocidal activities against prostate and pancreatic cancer cell lines and profile cellular responses and molecular pathways of select leads. A library of 369 synthetic cannabinoids was screened against 4 prostate and 2 pancreatic cancer cell lines with 48 h of exposure at 10 μM in medium with 10% fetal bovine serum using the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) viability assay. Concentration titration of the top 6 hits was carried out to identify their concentration-response patterns and calculate IC values. Three select leads were examined for cell cycle, apoptosis, and autophagy responses. The role of cannabinoid receptors (CB and CB) and noncanonical receptors in apoptosis signaling was examined with selective antagonists. Two independent screening experiments in each cell line detected growth inhibitory activities against all six or a majority of cancer cell lines for HU-331 (a known cannabinoid topoisomerase II inhibitor), (±)5-epi-CP55,940, and PTI-2, each previously identified in our colorectal cancer study. 5-Fluoro NPB-22, FUB-NPB-22, and LY2183240 were novel hits. Morphologically and biochemically, (±)5-epi-CP55,940 elicited caspase-mediated apoptosis of PC-3-luc2 (a PC-3 subline with luciferase) prostate cancer and Panc-1 pancreatic cancer cell lines, each the most aggressive of the respective organ site. The apoptosis induced by (±)5-epi-CP55,940 was abolished by the CB antagonist, SR144528, but not modulated by the CB antagonist, rimonabant, and GPR55 antagonist, ML-193, nor TRPV antagonist, SB-705498. In contrast, 5-fluoro NPB-22 and FUB-NPB-22 did not cause substantial apoptosis in either cell line, but resulted in cytosolic vacuoles and increased LC3-II formation (suggestive of autophagy) and S and G/M cell cycle arrests. Combining each fluoro compound with an autophagy inhibitor, hydroxychloroquine, enhanced the apoptosis. 5-Fluoro NPB-22, FUB-NPB-22, and LY2183240 represent new leads against prostate and pancreatic cancer cells in addition to the previously reported compounds, HU-331, (±)5-epi-CP55,940, and PTI-2. Mechanistically, the two fluoro compounds and (±)5-epi-CP55,940 differed regarding their structures, CB receptor involvement, and death/fate responses and signaling. Safety and antitumor efficacy studies in animal models are warranted to guide further R&D.

摘要

我们之前的结直肠癌细胞系筛选工作表明,大麻素可能是其他实体瘤的治疗靶点。本研究旨在确定对前列腺癌和胰腺癌细胞系具有细胞抑制和细胞杀伤活性的大麻素先导化合物,并对选定先导化合物的细胞反应和分子途径进行分析。使用噻唑蓝(MTT)比色法,在含 10%胎牛血清的培养基中,用 369 种合成大麻素文库对 4 种前列腺癌和 2 种胰腺癌细胞系进行了 48 小时的 10 μM 浓度暴露筛选。对前 6 名命中化合物进行浓度滴定,以确定其浓度反应模式并计算 IC 值。对 3 种选定的先导化合物进行细胞周期、凋亡和自噬反应检测。用选择性拮抗剂研究大麻素受体(CB 和 CB)和非典型受体在凋亡信号中的作用。在每个细胞系中进行了两次独立的筛选实验,发现 HU-331(一种已知的大麻素拓扑异构酶 II 抑制剂)、(±)5-epi-CP55,940 和 PTI-2 对所有 6 种或大多数癌细胞系均具有生长抑制活性,这些先导化合物均在我们的结直肠癌研究中被鉴定过。5-氟-NPB-22、FUB-NPB-22 和 LY2183240 是新的命中化合物。形态学和生物化学分析表明,(±)5-epi-CP55,940 诱导 PC-3-luc2(PC-3 亚系,带有荧光素)前列腺癌和 Panc-1 胰腺癌细胞系发生 caspase 介导的凋亡,这两种细胞系分别是各自器官部位中侵袭性最强的。(±)5-epi-CP55,940 诱导的凋亡被 CB 拮抗剂 SR144528 阻断,但 CB 拮抗剂利莫那班和 GPR55 拮抗剂 ML-193 以及 TRPV 拮抗剂 SB-705498 均不能调节。相比之下,5-氟-NPB-22 和 FUB-NPB-22 不会导致这两种细胞系发生大量凋亡,但会导致细胞质空泡形成和 LC3-II 形成增加(提示自噬)以及 S 和 G/M 细胞周期停滞。将每种氟代化合物与自噬抑制剂羟氯喹联合使用可增强凋亡。除了先前报道的化合物 HU-331、(±)5-epi-CP55,940 和 PTI-2 外,5-氟-NPB-22、FUB-NPB-22 和 LY2183240 代表了针对前列腺癌和胰腺癌细胞的新先导化合物。在机制上,这两种氟代化合物和(±)5-epi-CP55,940 在结构、CB 受体参与以及死亡/命运反应和信号方面存在差异。需要在动物模型中进行安全性和抗肿瘤疗效研究,以指导进一步的研发。

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