研究概要
使用未经处理的 PBMC 对犬 NK 免疫治疗似乎是安全且可能有效的,其在 NK 扩增、活化和细胞毒性方面与 CD5 清除相当或更优。
中文摘要
背景:自然杀伤(NK)细胞具有细胞毒作用,无需预先致敏即可识别异质性癌细胞靶点,因此是细胞免疫治疗的有前景选择。伴侣犬在免疫系统完整的背景下自发发生癌症,是有效的癌症免疫治疗模型。既往在犬中采用外周血单个核细胞(PBMC)CD5耗竭方法,在与照射饲养细胞系共培养前分离CD5低表达NK细胞亚群,但该方法可能限制最终NK细胞产品产量。本研究旨在首次犬临床试验中,使用未经处理的PBMC制备NK细胞产品的新型系统,评估NK细胞活化、扩增及初步临床活性。
方法:将健康比格犬供者的CD5耗竭细胞和PBMC起始群分别共培养14天,测量细胞表型、细胞毒性和细胞因子分泌,并采用3'-Tag-RNA-Seq进行测序。另对共培养的人PBMC和分离的NK细胞进行测序比较。此外,研究开展两项首次犬临床试验,分别使用自体和异体NK细胞治疗黑色素瘤和骨肉瘤犬患者,以确立该制备方法的安全性和概念验证。
结果:与CD5耗竭细胞相比,犬PBMC扩增NK细胞的计算细胞数、存活率、杀伤能力和细胞因子分泌相当或更高;免疫表型确认,PBMC扩增细胞在第14天形成CD3⁻NKp46⁺产品。扩增细胞群转录组分析证实NK活化基因及相关通路上调;使用已充分表征NK标志物分析的人NK细胞与犬NK细胞基因表达模式高度相似。自体和异体PBMC来源NK细胞均成功扩增并用于首次犬临床试验,未出现严重不良事件,并获得初步疗效数据。接受异体NK细胞输注犬的PBMC RNA测序显示,每只患者存在特异性基因特征,并可见与治疗应答相关的NK基因表达趋势。
结论:未经处理的PBMC用于犬NK免疫治疗似乎安全且可能有效,在NK细胞扩增、活化和细胞毒性方面与CD5耗竭相比效果相当或更优。临床前和临床数据支持进一步评估该技术,将其作为优化犬NK免疫治疗的新平台。
展开英文摘要原文
BACKGROUND: Natural killer (NK) cells are cytotoxic cells capable of recognizing heterogeneous cancer targets without prior sensitization, making them promising prospects for use in cellular immunotherapy. Companion dogs develop spontaneous cancers in the context of an intact immune system, representing a valid cancer immunotherapy model. Previously, CD5 depletion of peripheral blood mononuclear cells (PBMCs) was used in dogs to isolate a CD5 dim -expressing NK subset prior to co-culture with an irradiated feeder line, but this can limit the yield of the final NK product. This study aimed to assess NK activation, expansion, and preliminary clinical activity in first-in-dog clinical trials using a novel system with unmanipulated PBMCs to generate our NK cell product.
METHODS: Starting populations of CD5-depleted cells and PBMCs from healthy beagle donors were co-cultured for 14 days, phenotype, cytotoxicity, and cytokine secretion were measured, and samples were sequenced using the 3'-Tag-RNA-Seq protocol. Co-cultured human PBMCs and NK-isolated cells were also sequenced for comparative analysis. In addition, two first-in-dog clinical trials were performed in dogs with melanoma and osteosarcoma using autologous and allogeneic NK cells, respectively, to establish safety and proof-of-concept of this manufacturing approach.
RESULTS: Calculated cell counts, viability, killing, and cytokine secretion were equivalent or higher in expanded NK cells from canine PBMCs versus CD5-depleted cells, and immune phenotyping confirmed a CD3-NKp46+ product from PBMC-expanded cells at day 14. Transcriptomic analysis of expanded cell populations confirmed upregulation of NK activation genes and related pathways, and human NK cells using well-characterized NK markers closely mirrored canine gene expression patterns. Autologous and allogeneic PBMC-derived NK cells were successfully expanded for use in first-in-dog clinical trials, resulting in no serious adverse events and preliminary efficacy data. RNA sequencing of PBMCs from dogs receiving allogeneic NK transfer showed patient-unique gene signatures with NK gene expression trends in response to treatment.
CONCLUSIONS: Overall, the use of unmanipulated PBMCs appears safe and potentially effective for canine NK immunotherapy with equivalent to superior results to CD5 depletion in NK expansion, activation, and cytotoxicity. Our preclinical and clinical data support further evaluation of this technique as a novel platform for optimizing NK immunotherapy in dogs.
论文信息
- 作者
- Razmara AM、Farley LE、Harris RM、Judge SJ、Lammers M、Iranpur KR、Johnson EG、Dunai C
- 第一作者单位
- Department of Surgery, University of California Davis School of Medicine, Sacramento, California, USA.United States
- 通讯作者单位
- Department of Surgery, University of California Davis School of Medicine, Sacramento, California, USA rjcanter@ucdavis.edu.United States
- 文献类型
- 美国 NIH 资助研究
- 期刊
- Journal for immunotherapy of cancer2024 Apr 16