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黑色素瘤患者间免疫治疗临床反应的自体人源临床前建模

英文原题:Autologous human preclinical modeling of melanoma interpatient clinical responses to immunotherapeutics.

查看英文原题

Autologous human preclinical modeling of melanoma interpatient clinical responses to immunotherapeutics.

PubMed 2024/04/11(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

我们的模型再现了免疫治疗在黑色素瘤患者中的差异性效应,捕捉到了临床反应中固有的异质性。综上所述,这些数据表明我们的模型对黑色素瘤患者的新型免疫治疗具有转化价值。这些数据也支持继续对 nemvaleukin 作为治疗黑色素瘤的新型免疫治疗药物进行临床研究。

研究思路结论见上方概要

尽管免疫治疗最近取得了进展,仍有大量晚期黑色素瘤患者未能获得持续的临床获益。缺乏可转化的临床前模型仍然是免疫治疗领域的一个主要挑战;因此,更优化的转化模型可能强烈影响临床试验的开展。为满足这一未满足的需求,我们设计了一种反映黑色素瘤患者临床反应异质性的临床前模型,可用于评估新型免疫疗法和协同联合治疗策略。利用我们的全自体人源化黑色素瘤小鼠模型,我们检验了一种新型工程化基于白细胞介素2(IL-2)的细胞因子变体免疫疗法的疗效。

为研究人黑色素瘤肿瘤的免疫应答和抗肿瘤疗效,我们利用临床注释的、匹配的患者肿瘤细胞和外周血单个核细胞(PBMCs)开发了一种全自体人源化黑色素瘤小鼠模型。在将患者肿瘤接种至免疫缺陷NSG小鼠并进行自体PBMCs的过继细胞转移后,小鼠接受抗PD-1、一种新型研究性工程化IL-2基细胞因子(nemvaleukin)或重组人IL-2(rhIL-2)治疗。随后评估了这些治疗的药效学效应和抗肿瘤疗效。我们使用了来自具有不同免疫治疗反应的患者肿瘤细胞和自体PBMCs,既模拟临床环境中观察到的免疫治疗疗效多样性,也再现黑色素瘤的异质性本质。

我们的模型实现了移植人PBMC的长期存活,且未发生移植物抗宿主病。在我们的模型中,给予抗PD-1或nemvaleukin可引发抗肿瘤反应,这些反应具有患者特异性,并与临床对检查点抑制剂的反应性相平行。对nemvaleukin治疗小鼠的评估显示,肿瘤浸润CD4+和CD8+T细胞增加,脾脏中非调节性T细胞亚群优先扩增,与载体对照或rhIL-2治疗小鼠相比,肿瘤生长显著延迟。

展开英文摘要原文

Despite recent advances in immunotherapy, a substantial population of late-stage melanoma patients still fail to achieve sustained clinical benefit. Lack of translational preclinical models continues to be a major challenge in the field of immunotherapy; thus, more optimized translational models could strongly influence clinical trial development. To address this unmet need, we designed a preclinical model reflecting the heterogeneity in melanoma patients' clinical responses that can be used to evaluate novel immunotherapies and synergistic combinatorial treatment strategies. Using our all-autologous humanized melanoma mouse model, we examined the efficacy of a novel engineered interleukin 2 (IL-2)-based cytokine variant immunotherapy.

To study immune responses and antitumor efficacy for human melanoma tumors, we developed an all-autologous humanized melanoma mouse model using clinically annotated, matched patient tumor cells and peripheral blood mononuclear cells (PBMCs). After inoculating immunodeficient NSG mice with patient tumors and an adoptive cell transfer of autologous PBMCs, mice were treated with anti-PD-1, a novel investigational engineered IL-2-based cytokine (nemvaleukin), or recombinant human IL-2 (rhIL-2). The pharmacodynamic effects and antitumor efficacy of these treatments were then evaluated. We used tumor cells and autologous PBMCs from patients with varying immunotherapy responses to both model the diversity of immunotherapy efficacy observed in the clinical setting and to recapitulate the heterogeneous nature of melanoma.

Our model exhibited long-term survival of engrafted human PBMCs without developing graft-versus-host disease. Administration of an anti-PD-1 or nemvaleukin elicited antitumor responses in our model that were patient-specific and were found to parallel clinical responsiveness to checkpoint inhibitors. An evaluation of nemvaleukin-treated mice demonstrated increased tumor-infiltrating CD4 + and CD8 + T cells, preferential expansion of non-regulatory T cell subsets in the spleen, and significant delays in tumor growth compared with vehicle-treated controls or mice treated with rhIL-2.

Our model reproduces differential effects of immunotherapy in melanoma patients, capturing the inherent heterogeneity in clinical responses. Taken together, these data demonstrate our model's translatability for novel immunotherapies in melanoma patients. The data are also supportive for the continued clinical investigation of nemvaleukin as a novel immunotherapeutic for the treatment of melanoma.

论文信息

作者
Phoon YP、Lopes JE、Pfannenstiel LW、Marcela Diaz-Montero C、Tian YF、Ernstoff MS、Funchain P、Ko JS
第一作者单位
Center for Immunotherapy and Precision Immuno-Oncology (CITI), Cleveland Clinic, Cleveland, Ohio, USA.United States
通讯作者单位
Center for Immunotherapy and Precision Immuno-Oncology (CITI), Cleveland Clinic, Cleveland, Ohio, USA brian.gastman@iovance.com.United States
文献类型
非美国政府资助研究
期刊
Journal for immunotherapy of cancer2024 Apr 11
原文标识
PubMed 38604813 · DOI 10.1136/jitc-2023-008066