PO.IM01.12 · 免疫学

COX-2/PGE2驱动的光免疫治疗诱导性水肿在小鼠肿瘤模型中可通过预防性使用NSAIDs而减轻

COX-2/PGE2 driven, photoimmunotherapy-induced edema is reduced by prophylactic NSAIDs in mouse tumor models

海报缩略图:COX-2/PGE2驱动的光免疫治疗诱导性水肿在小鼠肿瘤模型中可通过预防性使用NSAIDs而减轻
编号 4297 展板 1 时间 4/21 09:00–12:00 区域 Section 8 主讲 Christopher Amantea, BS
分会场 Immunomodulatory Agents
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作者与单位 Authors & Affiliations

Christopher M. Amantea1, Abram Lozano1, Ryosuke Takahashi2, Takuya Osada1, Shohei Sase1, Ryuhei Okada2, Amy H. Thorne1

1Rakuten Medical, San Diego, CA,2Department of Head and Neck Surgery, Institute of Science Tokyo, Tokyo, Japan

摘要 Abstract

中文摘要
ASP-1929光免疫治疗(PIT)是一种在研疗法,它将ASP-1929(一种偶联IRDye®700DX(IR700)的抗EGFR抗体)的结合与红光照射相结合,以实现选择性杀伤细胞。ASP-1929 PIT在头颈癌(HNC)中已显示出初步临床活性,尽管其安全性可控,但水肿是一种常见报告的不良事件,部分患者出现严重喉部水肿。因此,迫切需要在不影响治疗疗效的前提下减轻ASP-1929 PIT相关的水肿。在此,我们阐明了PIT诱导性水肿在体外和体内的潜在机制,扩展了我们此前关于使用预防性COX-2抑制来减轻水肿的发现,并将我们的发现转化到一个具有临床相关性的HNC异种移植模型中。简而言之,将CT26-EphA2或LL2-EphA2细胞与抗EphA2-IR700共孵育(加或不加光照),并使用实时PCR和Western blot评估COX-2表达的变化。结果显示PIT后COX-2升高,且该升高不受与COX拮抗剂罗贝考昔(选择性COX-2)或氟比洛芬(泛COX)共孵育的影响。考虑到前列腺素E2(PGE2)是COX-2的下游产物且是已知的血管通透性效应分子,我们通过ELISA评估了细胞培养基中的PGE2分泌,观察到PIT后PGE2水平立即升高,而使用任一COX抑制剂均可完全阻断该升高。为评估泛COX与选择性COX-2抑制对PIT后水肿减轻的影响,给携带CT26-EphA2或LL2-EphA2肿瘤的小鼠施用抗EphA2-IR700(加或不加光照)。与我们此前的数据一致,水肿在PIT后6h达到峰值,且当小鼠预先接受任一COX抑制剂处理时水肿显著减轻(p≤0.0001)。为确认COX-2的作用,我们评估了肿瘤裂解物,发现PIT后COX-2表达显著升高,而COX-1不受影响,且在任一COX抑制剂存在下COX-2表达均无降低。与我们的体外数据一致,通过评估PIT后循环中的PGE2代谢物,证实了PGE2分泌增加,而在COX抑制存在下该效应被逆转。最后,我们使用人下咽癌细胞建立了一个HNC异种移植模型,并评估了COX抑制对PIT后水肿形成的影响。与同基因模型一样,水肿在PIT后6h达到峰值,并可通过任一COX抑制剂逆转(p≤0.0001)。重要的是,COX抑制并未损害抗肿瘤疗效。总之,这是首篇显示PIT后COX-2/PGE2升高、将PGE2分泌与水肿产生相联系的报告,并提示COX-2抑制可用于对抗ASP-1929 PIT诱导的水肿以改善患者安全性。该结果向临床环境的转化正在日本各地的治疗中心进行研究(jRCTs031250140)。
查看英文原文 English abstract
ASP-1929 photoimmunotherapy (PIT) is an investigational therapy that combines binding of ASP-1929, an anti-EGFR antibody conjugated to IRDye®700DX (IR700), with red-light illumination for selective cell killing. ASP-1929 PIT has shown preliminary clinical activity for head and neck cancer (HNC) and although it has a manageable safety profile, edema is a commonly reported adverse event, with severe laryngeal edema noted in some patients. Thus, a critical need exists to reduce ASP-1929 PIT-associated edema without compromising therapeutic efficacy. Here, we elucidate the underlying mechanism of PIT-induced edema in vitro and in vivo, expand upon our previous finding for the use of prophylactic COX-2 inhibition to reduce edema, and translate our findings to a clinically relevant HNC xenograft model. Briefly, CT26-EphA2 or LL2-EphA2 cells were incubated with anti-EphA2-IR700 ± light and evaluated for changes in COX-2 expression using real-time PCR and Western blot. Results show an increase in COX-2 post-PIT which was unaffected by co-incubating with COX antagonists, robenacoxib (selective COX-2) or flurbiprofen (pan COX). Considering prostaglandin E2 (PGE2) is downstream of COX-2 and a known effector of vascular permeabilization, we evaluated PGE2 secretion in cell culture media by ELISA and observed an induction in PGE2 levels immediately post-PIT, which was completely blocked with either COX inhibitor. To evaluate the effect of pan COX vs selective COX-2 inhibition on edema reduction post-PIT, mice bearing CT26-EphA2 or LL2-EphA2 tumors were administered anti-EphA2-IR700 ± light. In agreement with our previous data, edema peaked 6h post-PIT and was significantly reduced when mice were pre-treated with either COX inhibitor (p≤0.0001). To confirm the role of COX-2, we evaluated tumor lysates and found a significant increase in COX-2 expression post-PIT, with no effect on COX-1, and no reduction in the presence of either COX inhibitor. In alignment with our in vitro data, increased secretion of PGE2 was confirmed by evaluating the PGE2 metabolites in circulation post-PIT and this effect was rescued in the presence of COX inhibition. Lastly, we developed a HNC xenograft model using human hypopharyngeal cancer cells and evaluated the effect of COX inhibition on edema formation post-PIT. As in the syngeneic models, edema peaked at 6h post-PIT and was rescued with either COX inhibitor (p≤0.0001). Importantly, COX inhibition did not compromise anti-tumor efficacy. In conclusion, this is the first report showing increased COX-2/PGE2 post-PIT, linking PGE2 secretion with edema generation, and suggests COX-2 inhibition to combat ASP-1929 PIT-induced edema for improved patient safety. The translation of this result to the clinical setting is under investigation at treatment centers throughout Japan (jRCTs031250140).
利益披露 Disclosure
C. M. Amantea, Rakuten Medical Employment, Stock Option. A. Lozano, Rakuten Medical Employment, Stock Option. R. Takahashi, None. T. Osada, Rakuten Medical Employment, Stock Option. S. Sase, Rakuten Medical Employment, Stock Option. R. Okada, Rakuten Medical ). A. H. Thorne, Rakuten Medical Employment, Stock Option, Patent.

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