研究概要
本研究强调了 iPSC 作为生成 NK 细胞的有效替代细胞来源的潜力。
中文摘要
背景:利用自然杀伤(NK)细胞的过继免疫疗法已受到广泛关注,多项临床试验正评估其治疗血液系统恶性肿瘤和实体瘤的效果。传统上,NK细胞主要来源于外周血(PB)或脐带血(UCB),但这些方法可能导致NK细胞群体存在变异和异质性。相比之下,诱导多能干细胞(iPSC)来源NK(iNK)细胞群体更可控且均一,适合大规模临床应用,因此有望用于开发“现货型”免疫治疗产品。然而,当前依赖胚状体(EB)培养的NK细胞分化方案劳动强度大,且分化过程中易出现非预期异质性。我们采用单层、无饲养细胞分化方案并优化培养基,开发了一种更高效的iNK细胞制备方法。
方法:采用遵循NK细胞发育过程的两步体外单层无饲养细胞系统制备iNK细胞。通过流式细胞术开展表型分析,并与PB-NK细胞及NK-92细胞系比较,以评估细胞成熟度。此外,采用单细胞RNA测序分析转录组谱。将iNK细胞分别置于单层(2D)和肿瘤细胞球(3D)共培养系统中,与胆管癌(CCA)及乳腺癌(BCA)细胞系共培养,以评估细胞毒活性。
结果:我们成功将iPSC分化为中胚层(ME)、造血干/祖细胞(HSPC)及NK细胞。所得iNK细胞表达典型NK细胞标志物CD45、CD56和CD16,并表达关键功能蛋白,包括活化受体和抑制性受体。单细胞RNA测序证实,本研究iNK细胞的转录组谱与PB-NK细胞高度相似。重要的是,本研究iNK细胞对多种CCA和BCA细胞系具有很强的细胞毒活性,在单层培养和肿瘤细胞球培养中均优于NK-92细胞系。
结论:本研究强调iPSC可作为制备NK细胞的有效替代细胞来源。通过两步体外单层无饲养细胞系统,我们成功制备了表达关键NK细胞标志物及受体、且转录组谱与PB-NK细胞高度相似的iNK细胞。此外,iNK细胞对CCA和BCA细胞系的细胞毒性与PB-NK细胞相当。该方法有望推动现货型NK细胞产品开发,并可能提高NK细胞过继治疗的疗效。
展开英文摘要原文
BACKGROUND: Adoptive immunotherapy using natural killer (NK) cells has attracted considerable interest in numerous clinical trials targeting both hematological and solid tumors. Traditionally, NK cells are primarily derived from either peripheral blood (PB) or umbilical cord blood (UCB). However, these methods can lead to variability and heterogeneity within the NK cell population. In contrast, induced pluripotent stem cell (iPSC)-derived NK (iNK) cells provide a more controlled and uniform cellular population, suitable for large-scale clinical applications. This makes iNK cells a promising option for developing "off-the-shelf" immunotherapeutic products. Nevertheless, current NK cell differentiation protocols, which rely on embryoid body (EB) cultures, are labor-intensive and susceptible to unwanted heterogeneity during differentiation. Here, we developed a more efficient approach for generating iNK cells by employing a monolayer and feeder-free differentiation protocol, alongside optimized culture media.
METHODS: The iNK cells were generated using a two-step in vitro monolayer feeder-free system following NK cell development. To evaluate their maturity, phenotypic analysis was performed using flow cytometry, comparing with PB-NK cells and the NK-92 cell line. Additionally, single-cell RNA sequencing was performed to examine their transcriptomic profiles. The cytotoxic activity of the iNK cells was evaluated by co-culturing with cholangiocarcinoma (CCA) and breast cancer (BCA) cell lines in both monolayer (2D) and tumor spheroid (3D) co-culture systems.
RESULTS: We successfully differentiated iPSCs into mesoderm (ME), hematopoietic stem/progenitor cells (HSPCs), and NK cells. The resulting iNK cells exhibited typical NK cell markers such as CD45, CD56, and CD16, and expressed key functional proteins, including both activating and inhibitory receptors. Single-cell RNA sequencing confirmed that the transcriptomic profile of our iNK cells closely resembles that of PB-NK cells. Importantly, our iNK cells demonstrated strong cytotoxic abilities against various CCA and BCA cell lines, surpassing the NK-92 cell line in both monolayer cultures and tumor spheroid cultures.
CONCLUSION: This study highlights the potential of iPSCs as an effective alternative cell source for generating NK cells. Using a two-step in vitro monolayer feeder-free system, we successfully generated iNK cells that not only expressed key NK cell markers and their receptors but also displayed a transcriptomic profile closely resembling PB-NK cells. Furthermore, iNK cells exhibited cytotoxicity against CCA and BCA cell lines comparable to that of PB-NK cells. This approach could pave the way for off-the-shelf NK cell products, potentially enhancing the effectiveness of adoptive NK cell therapy.
论文信息
- 作者
- Thongsin N、Suwanpitak S、Augsornworawat P、Srisantitham J、Saiprayong K、Jenjaroenpun P、Wattanapanitch M
- 第一作者单位
- Siriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, 10700, Thailand.Thailand
- 通讯作者单位
- Siriraj Center for Regenerative Medicine, Research Department, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, 10700, Thailand. methichit.wat@mahidol.ac.th.Thailand
- 文献类型
- 美国 NIH 资助研究 · 非美国政府资助研究
- 期刊
- Stem cell research & therapy2024 Nov 13