LBPO.IM02 · 免疫学 · Late-Breaking

OBX-115膜结合IL15(mbIL15)表达型工程化肿瘤浸润淋巴细胞(TIL)在患者来源的自体非小细胞肺癌(NSCLC)模型中,通过直接杀伤和NK细胞的反式激活,克服与主要组织相容性复合体(MHC)沉默相关的靶细胞免疫逃逸

OBX-115 membrane-bound IL15 (mbIL15)-expressing engineered tumor-infiltrating lymphocytes (TIL) overcome target cell immune evasion related to major histocompatibility complex (MHC) silencing through both direct killing and transactivation of NK cells in patient-derived autologous non-small cell lung cancer (NSCLC) models

海报缩略图:OBX-115膜结合IL15(mbIL15)表达型工程化肿瘤浸润淋巴细胞(TIL)在患者来源的自体非小细胞肺癌(NSCLC)模型中,通过直接杀伤和NK细胞的反式激活,克服与主要组织相容性复合体(MHC)沉默相关的靶细胞免疫逃逸
编号 LB144 展板 9 时间 4/20 09:00–12:00 区域 Section 53 主讲 Adam Schoenfeld, MD
分会场 Late-Breaking Research: Immunology 2
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作者与单位 Authors & Affiliations

Adam J. Schoenfeld1, Alonso Villasmil Ocando2, Zheng Ao2, Rachel Burga2, Alicia Adamovich2, Hansini Wadan2, Sarah Cascarino1, Dhruv K. Sethi2, Giridharan Ramsingh2, Matthew Bott1

1Memorial Sloan Kettering Cancer Center, New York, NY,2Obsidian Therapeutics, Cambridge, MA

摘要 Abstract

中文摘要
背景:非工程化TIL细胞疗法已在NSCLC中展现出抗肿瘤活性[Schoenfeld Cancer Discov 2024, Creelan Nat Med 2021]。MHC丢失仍是NSCLC对TIL细胞疗法及其他免疫疗法产生耐药的关键机制[Wang Nat Cancer 2025]。已证明杀肿瘤性CD8+ TIL通过淋巴毒素在黑色素瘤中表现出MHC非依赖性细胞毒性,并在对TIL疗法应答的患者中富集[Xie J Immunother Cancer 2025]。OBX-115工程化TIL在药理调控下表达mbIL15,使用FDA批准的小分子药物乙酰唑胺(ACZ)进行调控。我们假设,由于mbIL15介导的NK细胞反式激活,OBX-115在NSCLC中MHC丢失后仍将保留细胞毒性和反应性。 方法:OBX-115 TIL如先前所述[Bott SITC 2024]从NSCLC肿瘤样本中生成。自体NK细胞从供者匹配的外周血单个核细胞中扩增。自体患者来源细胞系(PDc)经基因改造以敲除(KO)B2M位点;使用流式细胞术和Sanger测序确认B2M KO。与OBX-115 TIL和ACZ共培养后,通过流式细胞术检测磷酸化STAT5(pSTAT5)来评估NK细胞的反式激活。通过定量IFNγ分泌和活细胞成像,对OBX-115 TIL针对染料标记PDc的反应性和细胞毒性进行功能评估。 结果:B2M KO效率为98.1% ± 0.7%(改造PDc中MHC-I阴性细胞的百分比)。OBX-115 TIL对携带基因B2M KO的自体肿瘤细胞系部分保留了反应性(针对自体肿瘤细胞系的IFNγ分泌为821.2 ± 562.6 pg/mL,针对相应B2M KO细胞系为762.4 ± 545.4 pg/mL,n=4,p=0.27)。如在正交3D球体共培养模型中所示,针对自体B2M KO模型的细胞毒性也得到部分保留。与自体NK细胞共培养后,OBX-115 TIL能够反式激活NK细胞(pSTAT5+%:单独NK,0.6% ± 0.3%;NK + OBX-115 + ACZ,21.8% ± 9.5%,n=3,p=0.02)。在使用患者特异性TIL、NK细胞和B2M-KO肿瘤细胞的三培养系统中,TIL/NK混合物比单独TIL引发了更高的ACZ依赖性细胞毒性和IFNγ分泌(IFNγ分泌高23%,caspase染色测定的细胞毒性高65%,n=1)。 结论:我们的数据表明,与先前在黑色素瘤CD8+ T细胞中观察到的MHC-I非依赖性杀肿瘤效应类似,OBX-115工程化mbIL15表达型NSCLC TIL在MHC丢失模型中对自体肿瘤细胞部分保留了细胞毒性和反应性。此外,通过mbIL15对自体NK细胞的反式激活独特地增强了活性。
查看英文原文 English abstract
Background: Non-engineered TIL cell therapy has demonstrated antitumor activity in NSCLC [Schoenfeld Cancer Discov 2024, Creelan Nat Med 2021]. MHC loss remains a key mechanism of resistance to TIL cell therapy and other immunotherapies in NSCLC [Wang Nat Cancer 2025]. Tumoricidal CD8+ TIL have been shown to demonstrate MHC-independent cytotoxicity through lymphotoxin in melanoma, and are enriched in patients responsive to TIL therapy [Xie J Immunother Cancer 2025]. OBX-115 engineered TIL express mbIL15 under pharmacologic regulation using the FDA-approved small-molecule drug acetazolamide (ACZ). We hypothesize that OBX-115 will retain cytotoxicity and reactivity following MHC loss in NSCLC due to mbIL15-mediated NK cell transactivation. Methods: OBX-115 TIL were generated from NSCLC tumor samples as previously described [Bott SITC 2024]. Autologous NK cells were expanded from donor-matched peripheral blood mononuclear cells. Autologous patient-derived cell lines (PDc) were genetically modified to knock-out (KO) the B2M locus; B2M KO was confirmed using flow cytometry and Sanger sequencing. After co-culture with OBX-115 TIL and ACZ, NK cell transactivation was assessed by detection of phosphorylated STAT5 (pSTAT5) via flow cytometry. OBX-115 TIL reactivity and cytotoxicity against dye-labeled PDc were functionally assessed by quantitation of IFNgamma secretion and live-cell imaging. Results: B2M KO efficiency was 98.1% ± 0.7% (% of MHC-I-negative cells in the modified PDc). OBX-115 TIL partially retained reactivity against autologous tumor cell lines with the genetic B2M KO (IFNgamma secretion 821.2 ± 562.6 pg/mL against autologous tumor cell lines and 762.4 ± 545.4 pg/mL against corresponding B2M KO cell lines, n=4, p=0.27). Cytotoxicity against autologous B2M KO models was also partially retained as demonstrated in an orthogonal 3D spheroid co-culture model. Upon co-culture with autologous NK cells, OBX-115 TIL were able to transactivate the NK cells (pSTAT5+%: NK alone, 0.6% ± 0.3%; NK + OBX-115 + ACZ, 21.8% ± 9.5%, n=3, p=0.02). In a tri-culture system using patient-specific TIL, NK cells, and B2M-KO tumor cells, the TIL/NK mixture elicited higher ACZ-dependent cytotoxicity and IFNgamma secretion than TIL alone (23% higher IFNgamma secretion and 65% higher cytotoxicity by caspase staining, n=1). Conclusions: Our data demonstrate that, similar to previously reported MHC-I-independent tumoricidal effect observed in melanoma CD8+ T cells, OBX-115 engineered mbIL15-expressing NSCLC TIL partially retain cytotoxicity and reactivity toward autologous tumor cells in MHC-loss models. Further, transactivation of autologous NK cells via mbIL15 uniquely enhances activity.
利益披露 Disclosure
A. J. Schoenfeld, J&J, Bayer, KSQ therapeutics, BioNtech, BMS, Merck, Astrazeneca, Oxford Biotherapeutics, Roche, Synthekine, cTRL therapeutics, Regeneron, Enara Bio, Perceptive Advisors, Foresight Diagnostics Other, Consulting/advising. Oppenheimer and Co, Umoja Biopharma, Legend Biotech, Iovance Biotherapeutics, Obsidian Therapeutics, Prelude Therapeutics, Immunocore, Lyell Immunopharma, Amgen, Boehringer Ingelheim, Heat Biologics Other, Consulting/advising. GSK, Obsidian, Lilly, Astrazeneca, BioNtech, Clasp Therapeutics, PACT Pharma, Iovance Biotherapeutics, Achilles Therapeutics, Merck, Synthekine, BMS ). Harpoon Therapeutics, AffiniT Therapeutics, Legend Therapeutics, Synthekine, Amgen ). A. Villasmil Ocando, Obsidian Therapeutics Employment, Stock, Travel. Z. Ao, Obsidian Therapeutics Employment, Stock, Travel. R. Burga, Obsidian Therapeutics Employment, Stock, Travel. A. Adamovich, Obsidian Therapeutics Employment. H. Wadan, Obsidian Therapeutics Employment. S. Cascarino, None. D. K. Sethi, Obsidian Therapeutics Employment, Stock, Travel. G. Ramsingh, Obsidian Therapeutics Employment, Stock, Travel. M. Bott, Intuitive Surgical, Merck, AstraZeneca Other, Consulting.

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