A small molecule inhibitor of the perinucleolar compartment, ML246, attenuates growth and spread of ovarian cancer.

Margaux J Kanis, Wenan Qiang, Mario Pineda, Kruti P Maniar, J Julie Kim
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引用次数: 3

Abstract

Background: Ovarian cancer remains a major health problem for women as it is often diagnosed at a late stage with metastatic disease. There are limited therapeutic agents and survival rates remain poor. The perinucleolar compartment (PNC) has been shown to be associated with malignancy and is considered a surrogate phenotypic marker for metastatic cancer cells. A small molecule, ML246, was derived from a screen against PNCs. In this study, the effect of ML246 on ovarian cancer growth and spread was investigated.

Methods: SKOV3 or OVCAR3 cells were treated with ML246 in vitro and PNC was visualized with immunofluorescent staining. Cell invasion was assessed using Matrigel-coated transwell systems. SKOV3 cells were xenografted orthotopically under the ovarian bursa of immunocompromised mice. Additionally, a patient derived ovarian cancer cell line was grafted subcutaneously. Mice were treated with ML246 and tumor growth and spread was assessed.

Results: PNCs were prevalent in the ovarian cancer cell lines OVCAR3 and SKOV3 with higher prevalence in OVCAR3 cells. Treatment with ML246 significantly reduced PNC prevalence in OVCAR3 and SKOV3 cells. Moreover, the invasive activity of both cell lines was significantly inhibited in vitro. Orthotopic implantation of SKOV3 cells resulted in growth of the tumor on the ovary as well as spread of tumor tissues outside of the primary site on organs into the abdominal cavity. Treatment with ML246 decreased the incidence of tumors outside of the ovary. In addition, a patient-derived xenograft (PDX) line was grafted subcutaneously to monitor tumor growth. ML246 significantly attenuated growth of tumors over a 5-week treatment period.

Conclusions: PNC's are present in ovarian cancer cells and treatment with ML246 decreases invasion in vitro and tumor growth and spread in vivo. Additional studies are warranted to determine the efficacy of ML246 as an inhibitor of metastatic disease in ovarian cancer and to determine its precise mechanism of action.

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核周区室的小分子抑制剂ML246可抑制卵巢癌症的生长和扩散。
背景:癌症仍然是女性的主要健康问题,因为它通常在晚期被诊断为转移性疾病。治疗药物有限,存活率仍然很低。核周区室(PNC)已被证明与恶性肿瘤相关,并被认为是转移性癌症细胞的替代表型标志物。一个小分子,ML246,是从针对PNCs的筛选中衍生出来的。在本研究中,研究了ML246对卵巢癌症生长和扩散的影响。方法:用ML246体外处理SKOV3或OVCAR3细胞,用免疫荧光染色法观察PNC。使用Matrigel涂层的transwell系统评估细胞侵袭。SKOV3细胞在免疫受损小鼠的卵巢囊下原位异种移植物。此外,患者来源的卵巢癌症细胞系被皮下移植。用ML246治疗小鼠,并评估肿瘤生长和扩散。结果:PNCs在卵巢癌症细胞系OVCAR3和SKOV3中普遍存在,OVCAR3细胞中PNCs的患病率较高。ML246治疗显著降低了OVCAR3和SKOV3细胞中PNC的患病率。此外,两种细胞系的侵袭活性在体外均受到显著抑制。SKOV3细胞的原位植入导致肿瘤在卵巢上生长,并导致肿瘤组织在器官原发部位外扩散到腹腔。ML246治疗降低了卵巢外肿瘤的发生率。此外,患者来源的异种移植物(PDX)系被皮下移植以监测肿瘤生长。ML246在5周的治疗期内显著减弱了肿瘤的生长。结论:PNC存在于卵巢癌症细胞中,ML246治疗可减少体外侵袭和体内肿瘤生长和扩散。需要进一步的研究来确定ML246作为卵巢癌症转移性疾病抑制剂的疗效,并确定其确切的作用机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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