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将 bempegaldesleukin(CD122 偏好性 IL-2 通路激动剂)与 NKTR-262(TLR7/8 激动剂)联合使用,相比 BEMPEG+RT,可改善全身性抗肿瘤 CD8(+) T 细胞细胞毒性

英文原题:Combining bempegaldesleukin (CD122-preferential IL-2 pathway agonist) and NKTR-262 (TLR7/8 agonist) improves systemic antitumor CD8(+) T cell cytotoxicity over BEMPEG+RT.

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Combining bempegaldesleukin (CD122-preferential IL-2 pathway agonist) and NKTR-262 (TLR7/8 agonist) improves systemic antitumor CD8(+) T cell cytotoxicity over BEMPEG+RT.

PubMed 2022/04/01(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

与 BEMPEG+RT 相比,BEMPEG+NKTR-262 治疗引发了活化 CD8+ T 细胞更为强劲的扩增,提示瘤内 TLR 刺激相较于 RT 能提供更优越的抗原呈递和共刺激活性。针对转移性实体瘤患者的 BEMPEG+NKTR-262 临床试验正在进行中(NCT03435640)。

研究思路结论见上方概要

肿瘤细胞因放射治疗(RT)而死亡,部分原因是垂死的细胞释放佐剂因子,从而放大并维持树突状细胞和T细胞反应,进而触发抗肿瘤免疫。我们此前已证明,bempegaldesleukin(BEMPEG:NKTR-214,一种免疫刺激性IL-2细胞因子前药)通过T细胞依赖性机制显著增强了RT的抗肿瘤疗效。由于RT可诱导免疫原性或耐受原性细胞死亡,这取决于多种因素(放射剂量、细胞周期时相),我们假设提供一种特异性免疫原性佐剂,如瘤内注射新型toll样受体(TLR)7/8激动剂NKTR-262,将通过激活局部先天免疫来改善全身性肿瘤特异性反应。因此,我们评估了瘤内注射NKTR-262联合全身性BEMPEG治疗是否比RT联合BEMPEG能引发更好的肿瘤特异性免疫和生存。

荷瘤小鼠(CT26;EM6)接受BEMPEG(0.8 mg/kg;静脉注射)、RT(12 Gy × 1)和/或瘤内注射NKTR-262(0.5 mg/kg)。治疗后7天,采用流式细胞术评估血液和肿瘤中的CD4+和CD8+ T细胞反应。通过清除CD4+、CD8+或NK细胞来确定特定免疫亚群的贡献。通过体外CTL试验测定CD8+ T细胞的细胞溶解活性。数据代表1-2次独立实验(每组n=5-14),统计学显著性通过单因素方差分析(ANOVA)或重复测量ANOVA确定(P值截止值为0.05)。

BEMPEG+NKTR-262以CD8+ T细胞依赖的方式显著改善了生存,优于BEMPEG+RT。对BEMPEG+NKTR-262的应答特征为血液中活化CD8+ T细胞(GzmA+;Ki-67+;ICOS+;PD-1+)显著扩增,这与肿瘤缩小相关(p<0.05)。在肿瘤中,与BEMPEG+RT相比,BEMPEG+NKTR-262诱导了更高频率的GzmA+ CD8+ T细胞,且这些细胞抑制性分子(PD-1+)表达降低(p<0.05)。此外,BEMPEG+NKTR-262治疗诱导的肿瘤特异性CD8+ T细胞杀伤功能强于BEMPEG+RT。

展开英文摘要原文

Tumor cell death caused by radiation therapy (RT) triggers antitumor immunity in part because dying cells release adjuvant factors that amplify and sustain dendritic cell and T cell responses. We previously demonstrated that bempegaldesleukin (BEMPEG: NKTR-214, an immunostimulatory IL-2 cytokine prodrug) significantly enhanced the antitumor efficacy of RT through a T cell-dependent mechanism. Because RT can induce either immunogenic or tolerogenic cell death, depending on various factors (radiation dose, cell cycle phase), we hypothesized that providing a specific immunogenic adjuvant, like intratumoral therapy with a novel toll-like receptor (TLR) 7/8 agonist, NKTR-262, would improve systemic tumor-specific responses through the activation of local innate immunity. Therefore, we evaluated whether intratumoral NKTR-262 combined with systemic BEMPEG treatment would elicit improved tumor-specific immunity and survival compared with RT combined with BEMPEG.

Tumor-bearing mice (CT26; EMT6) received BEMPEG (0.8 mg/kg; intravenously), RT (12 Gy × 1), and/or intratumoral NKTR-262 (0.5 mg/kg). Flow cytometry was used to evaluate CD4 + and CD8 + T cell responses in the blood and tumor 7 days post-treatment. The contribution of specific immune subsets was determined by depletion of CD4 + , CD8 + , or NK cells. CD8 + T cell cytolytic activity was determined by an in vitro CTL assay. Data are representative of 1-2 independent experiments (n=5-14/group) and statistical significance was determined by 1-way analysis of variance (ANOVA) or repeated measures ANOVA (p value cut-off of 0.05).

BEMPEG+NKTR-262 significantly improved survival compared with BEMPEG+RT in a CD8 + T cell-dependent manner. Response to BEMPEG+NKTR-262 was characterized by a significant expansion of activated CD8 + T cells (GzmA + ; Ki-67 + ; ICOS + ; PD-1 + ) in the blood, which correlated with reduced tumor size (p<0.05). In the tumor, BEMPEG+NKTR-262 induced higher frequencies of GzmA + CD8 + T cells exhibiting reduced expression of suppressive molecules (PD-1 + ), compared with BEMPEG+RT (p<0.05). Further, BEMPEG+NKTR-262 treatment induced greater tumor-specific CD8 + T cell cytolytic function than BEMPEG+RT.

BEMPEG+NKTR-262 therapy elicited more robust expansion of activated CD8 + T cells compared with BEMPEG+RT, suggesting that intratumoral TLR stimulation provides superior antigen presentation and costimulatory activity compared with RT. A clinical trial of BEMPEG+NKTR-262 for patients with metastatic solid tumors is in progress (NCT03435640).

论文信息

作者
Rolig AS、Rose DC、McGee GH、Rubas W、Kivimäe S、Redmond WL
第一作者单位
Earle A Chiles Research Institute, Providence Cancer Institute, Portland, OR, USA.Chile
通讯作者单位
Earle A Chiles Research Institute, Providence Cancer Institute, Portland, OR, USA william.redmond@providence.org.Chile
期刊
Journal for immunotherapy of cancer2022 Apr
原文标识
PubMed 35444059 · DOI 10.1136/jitc-2021-004218