PO.CL08.01 · 临床研究
WNC0901是一种新型DNA-PK抑制剂及对原本放射抵抗实体瘤的强效放射增敏剂
WNC0901 is a novel DNA-PK inhibitor and potent radiosensitizer of otherwise radioresistant solid tumors
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
治疗抵抗限制了放射治疗在许多肿瘤中的疗效,为开发增强放射敏感性的新型治疗提供了充分理由。DNA依赖性蛋白激酶(DNA-PK)是放射后DNA修复的主要介导因子,DNA-PK抑制剂是有效的放射增敏剂。WNC0901在无细胞激酶实验(IC50 = 0.073 nM)及基于细胞的实验(IC50 = 76 nM)中均为强效DNA-PK抑制剂。WNC0901对DNA-PK相对于其他PI3K相关激酶具有30倍的特异性。在更广泛的激酶组筛选(363种激酶)中,1 μM WNC0901仅对另外五种激酶产生>25%的抑制。经Western blot分析,对放射诱导的DNA-PK自磷酸化(Ser-2056)有强烈抑制,在A549(肺癌)、U2OS(骨肉瘤)及HT29(结直肠)细胞中,300 nM WNC0901时效果最大。在这三种放射抵抗肿瘤模型中,通过克隆形成实验评估WNC0901作为放射增敏剂的疗效。用梯度浓度WNC0901(0-1000 nM)联合2.5 Gy放射处理后,在A549(相对克隆形成生存较单纯RT降低88倍,p<0.001)、U2OS(降低5.8倍,p=0.002)及HT29(降低59倍,p=0.008)中,300 nM浓度时观察到最大效应。在完整放射克隆形成实验中,10%生存时的增敏增强比(SER10)为3.8(A549)、2.3(U2OS)及1.8(HT29)。体外代谢研究已鉴定去甲基化WNC0901(WNC0901-M)为主要代谢产物。与母体药物相似,WNC0901-M是强效DNA-PK抑制剂,该代谢产物的最大放射增敏效应在300nM时观察到,SER10为2.4(A549)、1.9(U2OS)及1.8(HT29)。在A549肿瘤异位异种移植中评估了50 mg/kg WNC0901联合8 Gy的体内疗效,并与另一种DNA-PK抑制剂50 mg/kg peposertib进行比较。与安慰剂(中位到达终点时间63天)或单纯RT(中位72天)相比,WNC0901与RT联合显著延迟了肿瘤再生长(中位169天;相较RT p=0.002)。有趣的是,peposertib + RT无效(中位83天;相较RT p=0.332)。在第二项研究中,在HT29异种移植中观察到WNC0901同样强劲的增敏效应(安慰剂—中位45天;RT—中位75天;RT + WNC0901—中位>110天;相较RT p=0.03)。总之,这些发现证明了WNC0901在放射抵抗肿瘤中的强劲放射增敏效应,并为该药物的继续开发提供了理由。
查看英文原文 English abstract
Therapeutic resistance limits the efficacy of radiation therapy in many tumors and provides a compelling rationale to develop novel treatments to enhance radiation sensitivity. DNA-dependent protein kinase (DNA-PK) is a major mediator of DNA repair following radiation, and DNA-PK inhibitors are effective radiosensitizers. WNC0901 is a potent DNA-PK inhibitor in both a cell-free kinase assay (IC50 = 0.073 nM) and a cell-based assay (IC50 = 76 nM). WNC0901 has a 30-fold specificity for DNA-PK relative to other PI3K-related kinases. In a broader kinome screen (363 kinases), 1 μM WNC0901 resulted in >25% inhibition of only five other kinases. There is robust inhibition of radiation-induced DNA-PK autophosphorylation (Ser-2056), as analyzed by Western blotting, with maximal effect at 300 nM WNC0901 in A549 (lung carcinoma), U2OS (osteosarcoma), and HT29 (colorectal) cells. The efficacy of WNC0901 as a radiosensitizer was evaluated in clonogenic assays across these same three radioresistant tumor models. Following treatment with graded concentrations of WNC0901 (0-1000 nM) combined with 2.5 Gy radiation, maximal effects were observed at a 300 nM concentration in A549 (88-fold reduction in relative clonogenic survival compared to RT alone, p<0.001), U2OS (5.8-fold decrease, p=0.002), and HT29 (59-fold decrease, p=0.008) In a full radiation clonogenic, the sensitizer enhancement ratio at 10% survival (SER10) was 3.8 (A549), 2.3 (U2OS), and 1.8 (HT29). In vitro metabolism studies have identified demethylated WNC0901 (WNC0901-M) as a major metabolite. Similar to the parent drug, WNC0901-M is a potent DNA-PK inhibitor with maximal radiosensitizing effects of the metabolite observed at 300nM with SER10 of 2.4 (A549), 1.9 (U2OS), and 1.8 (HT29). The in vivo efficacy of 50 mg/kg WNC0901 combined with 8 Gy was evaluated and compared to another DNA-PK inhibitor, 50 mg/kg peposertib, in A549 tumor heterotopic xenografts. Compared to placebo (median time to endpoint 63 days) or RT alone (median 72 days), the combination of WNC0901 and RT significantly delayed tumor regrowth (median 169 days; p=0.002 compared to RT). Interestingly, peposertib + RT was ineffective (median 83 days; p=0.332 compared to RT). In a second study, similarly robust sensitizing effects of WNC0901 was observed in HT29 xenografts (placebo - median 45 days; RT - median 75 days; RT + WNC0901 - median >110 days; p=.03 relative to RT). Together, these findings demonstrate the robust radiosensitizing effects of WNC0901 in radioresistant tumors and provide a rationale for continued development of this drug.
利益披露 Disclosure
J. L. Abraham, None..
A. C. Mladek, None..
S. Jain, None..
S. K. Gupta, None..
P. A. Decker, None..
M. L. Kosel, None..
K. K. Bakken, None..
B. L. Carlson, None..
L. L. Ott, None..
D. M. Burgenske, None..
J. E. Eckel-Passow, None..
W. Zhong, None.
J. N. Sarkaria,
ModifiBio ).
ABL Bio ).
Otomagnetics ).
Inhibrx ).
Breakpoint Therapeutics ).
Bristol Myers Squibb ).
Cybrexa Inc ).