CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:BiTE secretion by adoptively transferred stem-like T cells improves FRα+ ovarian cancer control.
BiTE secretion by adoptively transferred stem-like T cells improves FRα+ ovarian cancer control.
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这些发现凸显了 FR-B T 细胞在 OC 中的治疗潜力,并表明 FR-B T 细胞能够在肿瘤外空间持续存在,同时积极引导抗肿瘤免疫。由于输注 T 细胞疗法在实体瘤适应症中的治疗活性常因转移 T 细胞在肿瘤内积聚不良而受限,能够有效利用内源性免疫的 engager 分泌型 T 细胞可能在提高治疗缓解率方面具有独特的机制优势。
癌症免疫疗法可以产生完全的治疗反应,然而,在卵巢癌(OC)中效果有限。虽然过继性T细胞转移(ACT)已在OC中进行评估,但持久效果罕见。疗效不佳可能是多因素的,源于抗原识别有限、抑制性肿瘤微环境(TME)导致的肿瘤靶向不足,以及输注T细胞在肿瘤内积累/持久性有限。重要的是,宿主T细胞浸润肿瘤,利用内源性肿瘤浸润T细胞进行抗肿瘤免疫的ACT方法可以有效放大治疗反应。
使用逆转录病毒转导,我们生成了分泌靶向叶酸受体α(FRα)的双特异性T细胞衔接器(FR-B T细胞)的T细胞,FRα是一种在OC和其他肿瘤类型中常见过表达的肿瘤抗原。使用FRα+癌细胞系、OC患者样本和临床前肿瘤模型及伴随的机制研究,评估了FR-B T细胞的抗肿瘤活性和治疗效果。还评估了在FR-B T细胞生产过程中不同细胞因子刺激T细胞(白细胞介素(IL)-2+IL-7 vs IL-2+IL-15)以及由此对ACT后治疗结果的影响。
FR-B T细胞有效裂解FRα+细胞系,靶向FRα+ OC患者肿瘤细胞,并通过分泌T细胞衔接器被发现能够接合并激活TME中存在的患者T细胞。此外,FR-B T细胞疗法在免疫活性体内OC模型中有效,其应答持续时间依赖于内源性T细胞和FR-B T细胞的持久性。ACT前进行IL-2/IL-15预适应产生了分化程度较低的FR-B T细胞并增强了治疗效果,机制研究揭示TCF-1+CD39-CD69-干细胞样CD8+ FR-B T细胞优先积聚在腹腔而非实体瘤中。
Cancer immunotherapies can produce complete therapeutic responses, however, outcomes in ovarian cancer (OC) are modest. While adoptive T-cell transfer (ACT) has been evaluated in OC, durable effects are rare. Poor therapeutic efficacy is likely multifactorial, stemming from limited antigen recognition, insufficient tumor targeting due to a suppressive tumor microenvironment (TME), and limited intratumoral accumulation/persistence of infused T cells. Importantly, host T cells infiltrate tumors, and ACT approaches that leverage endogenous tumor-infiltrating T cells for antitumor immunity could effectively magnify therapeutic responses.
Using retroviral transduction, we have generated T cells that secrete a folate receptor alpha (FRα)-directed bispecific T-cell engager (FR-B T cells), a tumor antigen commonly overexpressed in OC and other tumor types. The antitumor activity and therapeutic efficacy of FR-B T cells was assessed using FRα+ cancer cell lines, OC patient samples, and preclinical tumor models with accompanying mechanistic studies. Different cytokine stimulation of T cells (interleukin (IL)-2+IL-7 vs IL-2+IL-15) during FR-B T cell production and the resulting impact on therapeutic outcome following ACT was also assessed.
FR-B T cells efficiently lysed FRα+ cell lines, targeted FRα+ OC patient tumor cells, and were found to engage and activate patient T cells present in the TME through secretion of T cell engagers. Additionally, FR-B T cell therapy was effective in an immunocompetent in vivo OC model, with response duration dependent on both endogenous T cells and FR-B T cell persistence. IL-2/IL-15 preconditioning prior to ACT produced less differentiated FR-B T cells and enhanced therapeutic efficacy, with mechanistic studies revealing preferential accumulation of TCF-1+CD39-CD69- stem-like CD8+ FR B T cells in the peritoneal cavity over solid tumors.
These findings highlight the therapeutic potential of FR-B T cells in OC and suggest FR-B T cells can persist in extratumoral spaces while actively directing antitumor immunity. As the therapeutic activity of infused T cell therapies in solid tumor indications is often limited by poor intratumoral accumulation of transferred T cells, engager-secreting T cells that can effectively leverage endogenous immunity may have distinct mechanistic advantages for enhancing therapeutic responses rates.
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