PO.IM01.10 · 免疫学
瘤内IL-12联合HDAC抑制克服检查点难治性肿瘤
Intratumoral IL-12 in combination with HDAC inhibition overcomes checkpoint-refractory tumors
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:对免疫检查点阻断(ICB)的临床耐药在实体恶性肿瘤中普遍存在,因而促使对新型疗法的需求。白细胞介素-12(IL-12)因其能够桥接固有免疫和适应性免疫而成为癌症免疫治疗的重要细胞因子。然而,与全身性IL-12给药相关的狭窄治疗指数和毒性阻碍了其临床开发。ANK-101是一种明矾锚定的人IL-12,在瘤内递送后可提供肿瘤滞留。在本研究中,我们研究了瘤内递送的小鼠ANK-101(mANK-101)与I类组蛋白脱乙酰酶(HDAC)抑制剂entinostat联合在不同ICB难治性小鼠肿瘤模型中的抗肿瘤活性和作用机制,包括CT26(结直肠)和MOC-1(HPV16阴性头颈部)。
方法:对接受entinostat饮食和/或mANK-101的小鼠监测抗肿瘤活性、生存和保护性记忆。通过免疫清除研究CD8+、CD4+和NK淋巴细胞对抗肿瘤效应的贡献。在MOC-1肿瘤、肿瘤引流淋巴结(tdLN)和脾脏中进行了肿瘤特异性T细胞应答分析以及免疫组的全面蛋白质组学、转录组学和肿瘤结构分析。此外,还对外周CD8+ T细胞进行了功能分析。
结果:我们证明mANK-101与entinostat协同抑制CT26(结肠,Kras G12D突变型)和MOC-1(口腔,HPV16阴性)肿瘤,产生显著的抗肿瘤效应、生存获益和保护性记忆。免疫清除研究表明CD8+ T细胞、CD4+ T细胞和NK细胞在联合疗法所引发的抗肿瘤活性中发挥作用。机制上,联合疗法引发了外周CD8+ T细胞和NK淋巴细胞的显著活化、增加了CD8+ T效应记忆、肿瘤特异性T细胞应答以及多功能性IFNgamma+TNFalpha+CD8+ T细胞,同时伴随CD4+ Treg减少和CD8/Treg比值升高。值得注意的是,肿瘤结构的空间分析表明形成了联合疗法所特有的富含B细胞的干性枢纽。正在进行的深入研究包括肿瘤和tDLN中的单细胞转录组学,以及对免疫干性枢纽在所观察到的抗肿瘤活性中作用的探究,将有助于深入理解mANK-101与HDAC抑制的协同效应。
结论:总的来说,这些发现为将锚定IL-12的瘤内递送与表观遗传调控相结合用于ICB难治性实体瘤(如结直肠癌和HPV16阴性头颈癌)患者提供了理论依据。
查看英文原文 English abstract
Background: Clinical resistance to immune checkpoint blockade (ICB) is prevalent across solid malignancies, thus prompting the need for novel therapies. Interleukin-12 (IL-12) is an important cytokine for cancer immunotherapy due to its ability to bridge innate and adaptive immunity. However, the narrow therapeutic index and toxicity associated with systemic IL-12 administration has hampered its clinical development. ANK-101 is an alum-anchored human IL-12 providing tumor retention upon intra-tumoral delivery. In this study, we investigated the anti-tumor activity and mechanism of action of murine ANK-101 (mANK-101) delivered intra-tumorally in combination with the class I histone deacetylase (HDAC) inhibitor entinostat, in different ICB-refractory murine tumor models, including CT26 (colorectal) and MOC-1 (HPV16 neg head and neck).
Methods: Mice receiving Entinostat diet and/or mANK-101 were monitored for anti-tumor activity, survival and protective memory. The contribution of CD8 + , CD4 + , and NK lymphocytes to antitumor effects were investigated via immune depletion. Analysis of tumor-specific T cell responses and comprehensive proteomic, transcriptomic, and tumor architecture analysis of the immunome was performed in MOC-1 tumors, tumor-draining lymph node (tdLN), and spleen. In addition, functional analysis of CD8 + T cells in the periphery were performed.
Results: We demonstrate that mANK-101 synergizes with Entinostat to suppress CT26 (colon, Kras G12D mut ) and MOC-1 (oral, HPV16 neg ) tumors, resulting in significant anti-tumor effects, survival benefit, and protective memory. Immune depletion studies demonstrated a role for CD8 + T cells, CD4 + T cells, and NK cells in the anti-tumor activity elicited by combination therapy. Mechanistically, combination therapy elicited significant activation of peripheral CD8 + T cells and NK lymphocytes, increased CD8 + T effector memory, tumor-specific T cell responses, and multifunctional IFNgamma + TNFalpha + CD8 + T cells, with concomitant decrease in CD4 + Tregs and increased CD8/Treg ratio. Notably, spatial analysis of tumor architecture indicates the development of B-cell rich stemness hubs exclusive to combination therapy. Ongoing in-depth studies including single cell transcriptomics in the tumor and tDLN, and investigation of the role of immune stemness hubs in the observed anti-tumor activity will allow for an in-depth understanding of the synergistic effect of mANK-101 with HDAC inhibition.
Conclusion: Collectively, these findings provide a rationale for the combination of intratumoral delivery of anchored IL-12 with epigenetic modulation for patients with ICB-refractory solid tumors, such as colorectal and HPV16 neg head and neck cancers.
利益披露 Disclosure
A. S. Khelifa, None..
A. Meler, None..
C. M. Minnar, None..
K. E. Lothstein, None.
M. Miyamoto,
Daiichi Sankyo Employment.
N. Roller, None..
L. K. Poppe, None..
D. Peeney, None.
S. Battula,
Ankyra Therapeutics Employment.
H. L. Kaufman,
Ankyra Therapeutics Employment.
J. Schlom,
Ankyra Therapeutics, Inc. ), The National Cancer Institute has an ongoing CRADA agreement with Ankyra Therapeutics..
Syndax Pharmaceuticals The National Cancer Institute has an ongoing CRADA agreement with Syndax Pharmaceuticals..
S. R. Gameiro, None.