PO.CL12.02 · 临床研究
抑制二氢乳清酸脱氢酶(DHODH)并协同靶向ROR1:一种在小细胞肺癌中具有前景的治疗策略
Dihydroorotate dehydrogenase (DHODH) inhibition as a promising therapeutic strategy with synergistic targeting of ROR1 in small cell lung cancer
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摘要 Abstract
中文摘要
小细胞肺癌是一种侵袭性肺癌亚型,预后差,约占所有肺癌的15%。SCLC的一线治疗是铂类-依托泊苷化疗。然而,患者几乎在治疗开始后不久即复发,二线治疗通常仅带来数月的获益。显然,SCLC的治疗亟需更好的疗法。癌细胞常存在代谢通路失调。这些改变往往是维持癌细胞持续增殖所必需的。二氢乳清酸脱氢酶(DHODH)催化嘧啶从头合成通路中二氢乳清酸向乳清酸的转化,在包括SCLC在内的多种癌症的存活中发挥特殊作用。近期研究表明,SCLC细胞被认为对治疗有反应,但会因治疗诱导的化疗耐药性“干细胞”或“持留”肿瘤细胞群体而复发。受体酪氨酸激酶样孤儿受体1(ROR1)是一种在包括SCLC在内的多种癌症中重新表达的受体酪氨酸激酶,其表达与生存期缩短和快速复发相关。因此,靶向ROR1可能减少干细胞样肿瘤细胞并改善SCLC的治疗反应。我们在体外评估了DHODH抑制剂HOSU-53对SCLC肿瘤生长的影响。我们测定了18株SCLC细胞系的IC50,大多数SCLC细胞对HOSU-53治疗表现出可喜的敏感性。然而,部分SCLC细胞对DHODH抑制表现出耐药性。因此,我们在体外评估了HOSU-53与ROR1抑制剂KAN0441571C之间的协同作用。用这些化合物分别作为单药以及联合处理SCLC细胞。在SCLC细胞中观察到KAN0441571C与HOSU-53之间的协同作用。为评估DHODH抑制对SCLC肿瘤体内生长的影响,我们用HOSU-53单药或联合依托泊苷加顺铂处理异种移植模型。当HOSU-53单独使用及联合使用时,我们观察到肿瘤体积显著减小,且无显著的动物体重下降。此外,为评估HOSU-53与ROR1抑制对体内肿瘤负荷的影响,我们用HOSU-53与KAN0441571C分别作为单药以及联合处理一种治疗耐药的异种移植SCLC模型。与单药治疗组相比,我们在联合治疗组观察到肿瘤体积显著缩小,且无显著的体重下降。总之,这些数据证明了HOSU-53作为单药以及与KAN0441571C联合在治疗耐药SCLC模型中的良好疗效。这些发现支持启动一项I期临床试验以评估HOSU-53的初步疗效和耐受性,并支持将靶向DHODH和ROR1作为治疗SCLC的潜在治疗策略。
查看英文原文 English abstract
Small-cell lung cancer is an aggressive subtype of lung cancer with poor prognosis and comprises approximately 15% of all lung cancers. The frontline therapy for SCLC is platinum-etoposide chemotherapy. However, patients almost relapse shortly after the start of therapy, and second line therapies typically provide only a few months of benefit. Clearly, better therapeutics are necessary for the treatment of SCLC. Cancer cells often have dysregulated metabolic pathways. These changes are often necessary to enable the continued proliferation of cancer cells. Dihydroorotate dehydrogenase (DHODH), which catalyzes the conversion of dihydroorotate to orotate in the pyrimidine de novo synthesis pathway, has a particular role in the survival of multiple cancers including SCLC. Recent studies have shown that SCLC cells are thought to respond to therapy but recur due to a chemotherapy-resistant “stem cell” or “persister” population of tumor cells induced by therapy. Receptor tyrosine kinase-like orphan receptor 1 (ROR1) is a receptor tyrosine kinase that is re-expressed in multiple cancers, including SCLC, where its expression is associated with shorter survival and rapid relapse. Therefore, targeting ROR1 may reduce stem-like tumor cells and improve therapeutic response in SCLC. We evaluated the effect of HOSU-53, a DHODH inhibitor, on SCLC tumor growth in vitro . We measured IC50s of 18 SCLC cell lines and most SCLC cells showed promising sensitivity to HOSU-53 treatment. However, some SCLC cells demonstrated resistance to DHODH inhibition. Therefore, we evaluated the synergy between HOSU-53 and KAN0441571C, a ROR1 inhibitor in vitro . SCLC cells were treated with the compounds as single agents as well as the combination. Synergy was observed between KAN0441571C and HOSU-53 in SCLC cells. To evaluate the effect of DHODH inhibition on SCLC tumor growth in vivo , we treated xenograft models with HOSU-53 alone or in combination with etoposide plus cisplatin. We observed a significant decrease in tumor volume when HOSU-53 was used alone and in combination, without significant animal weight loss. Additionally, to evaluate the effect of HOSU-53 and ROR1 inhibition on tumor burden in vivo , a treatment-resistant xenograft SCLC model was treated with HOSU-53 and KAN0441571C as single agents and the combination. We observed a significant reduction in tumor volume in the combination arm compared with the single-agent treatment arms, without significant loss of body weight. Together, these data demonstrated the promising efficacy of HOSU-53 as single agent as well as in combination with KAN0441571C in treatment-resistant SCLC models. These findings support the initiation of a phase l clinical trial to evaluate the preliminary efficacy and tolerability of HOSU-53 and support the strategy of targeting DHODH and ROR1 as a potential therapeutic approach for the treatment of SCLC.
利益披露 Disclosure
B. Nourmohammadi, None..
O. A. Elgamal, None..
S. Vibhute, None..
C. C. Coss, None..
T. E. Goodwin, None..
E. Hertlein, None..
J. M. Amann, None..
J. Cho, None..
C. E. Bennett, None..
J. C. Byrd, None..
D. P. Carbone, None.