PO.ET02.07 · 实验与分子治疗

PHD2-HDAC 双重抑制剂 31c 预防顺铂-贝伐珠单抗肾毒性并保持宫颈癌抗肿瘤疗效

Dual PHD2-HDAC inhibitor 31c prevents cisplatin-bevacizumab nephrotoxicity and preserves antitumor efficacy in cervical cancer

海报缩略图:PHD2-HDAC 双重抑制剂 31c 预防顺铂-贝伐珠单抗肾毒性并保持宫颈癌抗肿瘤疗效
编号 291 展板 9 时间 4/19 02:00–05:00 区域 Section 13 主讲 Xi Chen, MS
分会场 Innovative Therapeutic Modalities and Translational Platforms
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作者与单位 Authors & Affiliations

Xi Chen1, Dongyu Han1, Xiaohua Kong1, Wenfeng Gou2, Yang Song3, Huiqiang Wei2, Yiliang Li2, Yong Qin1

1The University of Texas at El Paso, El Paso, TX,2Peking Union Medical College & Chinese Academy of Medical Sciences, Tianjin, China,3The First Affiliated Hospital of Jinzhou Medical University, Jinzhou, China

摘要 Abstract

中文摘要
以顺铂为基础的化疗联合贝伐珠单抗(CB)仍是晚期或复发性宫颈癌的标准一线治疗方案,其整合了细胞毒性和抗血管生成机制以改善临床结局。然而,治疗成功常因顺铂引起的剂量依赖性肾毒性和贝伐珠单抗诱导的血管改变而受到影响。因此,迫切需要能够在不削弱抗肿瘤活性的前提下保护肾功能的策略,以优化治疗的持久性和患者生存。我们此前开发了 31c,一种新型脯氨酰羟化酶结构域蛋白 2(PHD2)与组蛋白去乙酰化酶(HDAC)的双重抑制剂,作为肾保护剂。因此,我们在 HeLa 异种移植小鼠模型中评估了 31c 的肾保护潜力。小鼠接受顺铂、贝伐珠单抗或其联合治疗,并联合或不联合 31c。监测肿瘤生长动力学和体重,以评估治疗反应和全身毒性。通过血尿素氮(BUN)、血清肌酐(Scr)和促红细胞生成素(EPO)水平检测肾功能。肾组织采用苏木精-伊红(H&E)和 Masson 三色染色进行组织病理学评估,以量化肾小管损伤和纤维化。对肾脏样本进行 RNA 测序(RNA-seq)以鉴定转录组改变,并通过免疫荧光染色验证肾损伤标志物脂质运载蛋白-2(Lcn2/NGAL)和肾损伤分子-1(Havcr1/KIM-1)。联合给予 31c 保持了 CB 方案的抗肿瘤疗效,其肿瘤抑制效果与单用 CB 相当。值得注意的是,31c 显著降低了肾毒性。仅接受 CB 的小鼠表现出 BUN 和 Scr 水平显著升高、广泛的肾小管变性以及明显的胶原沉积,这些都是急性肾损伤和纤维化的标志。相比之下,31c 显著减轻了这些病理改变并维持了正常的肾小管结构。转录组分析揭示了各治疗组之间明显的聚类,31c 部分逆转了 CB 诱导的转录失调。在 CB 组上调最显著的基因中,Lcn2 和 Havcr1 被 31c 显著抑制,这与免疫荧光验证结果一致。PHD2-HDAC 双重抑制剂 31c 在不损害抗肿瘤活性的情况下对顺铂-贝伐珠单抗诱导的肾损伤提供了强有力的肾保护。这一整合性保护策略突显了一种提高铂类-抗血管生成治疗的安全性、耐受性和连续性的有前景的方法。通过保持肾脏完整性,31c 可能有助于维持治疗强度并延长晚期宫颈癌患者以及潜在地接受类似方案治疗的其他恶性肿瘤患者的治疗获益。
查看英文原文 English abstract
Cisplatin-based chemotherapy combined with bevacizumab (CB) remains the standard first-line treatment for advanced or recurrent cervical cancer, integrating cytotoxic and anti-angiogenic mechanisms to improve clinical outcomes. However, treatment success is frequently undermined by dose-dependent nephrotoxicity caused by cisplatin and bevacizumab-induced vascular alterations. Thus, strategies capable of safeguarding renal function without attenuating antitumor activity are urgently needed to optimize treatment durability and patient survival. We previously developed 31c, a novel dual inhibitor of prolyl hydroxylase domain-containing protein 2 (PHD2) and histone deacetylases (HDACs), as a nephroprotective agent. Therefore, we evaluated the nephroprotective potential of 31c in a HeLa xenograft mouse model. Mice were treated with cisplatin, bevacizumab, or their combination, with or without 31c. Tumor growth kinetics and body weight were monitored to assess therapeutic response and systemic toxicity. Renal function was examined through blood urea nitrogen (BUN), serum creatinine (Scr), and erythropoietin (EPO) levels. Kidney tissues underwent histopathological evaluation using hematoxylin and eosin (H&E) and Masson's trichrome staining to quantify tubular injury and fibrosis. RNA sequencing (RNA-seq) of kidney samples identified transcriptomic alterations, and immunofluorescence staining validated renal injury markers lipocalin-2 (Lcn2/NGAL) and kidney injury molecule-1 (Havcr1/KIM-1). Co-administration with 31c preserved the antitumor efficacy of the CB regimen, yielding tumor inhibition comparable to CB alone. Notably, 31c markedly reduced renal toxicity. Mice receiving CB alone displayed significant increases in BUN and Scr levels, extensive tubular degeneration, and marked collagen accumulation, hallmarks of acute renal injury and fibrosis. In contrast, 31c significantly reduced these pathological changes and maintained normal tubular structure. Transcriptomic profiling revealed distinct clustering among treatment groups, with 31c partially reversing CB-induced transcriptional dysregulation. Among the most upregulated genes in CB group, Lcn2 and Havcr1 were significantly suppressed by31c, consistent with immunofluorescence validation. The dual PHD2-HDAC inhibitor 31c confers robust nephroprotection against cisplatin-bevacizumab-induced renal injury without compromising antitumor activity. This integrated protective strategy highlights a promising approach to enhance the safety, tolerability, and continuity of platinum-anti-angiogenic therapies. By preserving renal integrity, 31c may support sustained treatment intensity and prolonged therapeutic benefit in patients with advanced cervical cancer and potentially other malignancies treated with similar regimens.
利益披露 Disclosure
X. Chen, None.. X. Kong, None.. W. Gou, None.. Y. Song, None.. H. Wei, None.. Y. Li, None.. Y. Qin, None.

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