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通过高渗作用增强脐带血干细胞来源的 NK 细胞的生长和分化。

Enhancing cord blood stem cell-derived NK cell growth and differentiation through hyperosmosis.

机构信息

State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Haihe Laboratory of Cell Ecosystem, Institute of Hematology and Blood Diseases Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Tianjin, China.

Tianjin Institutes of Health Science, Tianjin, China.

出版信息

Stem Cell Res Ther. 2023 Oct 15;14(1):295. doi: 10.1186/s13287-023-03461-x.

Abstract

BACKGROUND

Natural killer (NK) cells hold great promise in treating diverse hematopoietic and solid tumors. Despite their availability from peripheral blood and cord blood, stem cell-derived NK cells offer an 'off-the-shelf' solution. Hematopoietic stem and progenitor cells (HSPCs) derived from cord blood pose no risk to the newborn or mother and are virtually ideal sources for NK cell differentiation.

METHODS

We developed a modified protocol to differentiate HSPCs to NK cells under serum-free conditions using defined factors. The HSPC-derived NK (HSC-NK) cells could be expanded in a K562 feeder cell-dependent manner. Furthermore, using lentivirus transduction, chimeric antigen receptor (CAR)-modified HSPCs could be differentiated into NK cells, leading to the establishment of CAR-NK cells.

RESULTS

The efficiency of NK cell differentiation from HSPCs was increased through the simple modulation of osmotic pressure by the addition of sodium chloride or glucose. Furthermore, the hyperosmosis-primed HSC-NK cells exhibited enhanced proliferation capacity and maintained normal functional characteristics, including transcriptome and antitumor efficacy. The optimized protocol yielded approximately 1.8 million NK cells from a single CD34-positive cell within a 28-day cycle, which signifies more than a ten-fold increase in efficiency relative to the conventional methods. This optimized protocol was also suitable for generating CAR-NK cells with high yields compared to standard conditions.

CONCLUSIONS

The results of this study establish high osmotic pressure as a simple yet powerful adjustment that significantly enhances the efficiency and functionality of HSC-NK cells, including CAR-NK cells. This optimized protocol could lead to cost-effective, high-yield NK cell therapies, potentially revolutionizing cancer immunotherapy strategies.

摘要

背景

自然杀伤 (NK) 细胞在治疗多种血液系统和实体肿瘤方面具有广阔的应用前景。尽管外周血和脐带血中都存在 NK 细胞,但来源于干细胞的 NK 细胞提供了一种“现成”的解决方案。来自脐带血的造血干细胞和祖细胞 (HSPCs) 对新生儿或母亲没有风险,是 NK 细胞分化的理想来源。

方法

我们开发了一种改良的无血清条件下使用定义因子从 HSPC 分化 NK 细胞的方案。HSPC 衍生的 NK(HSC-NK)细胞可以在 K562 饲养细胞依赖性的方式下进行扩增。此外,通过慢病毒转导,嵌合抗原受体 (CAR) 修饰的 HSPC 可以分化为 NK 细胞,从而建立 CAR-NK 细胞。

结果

通过添加氯化钠或葡萄糖简单调节渗透压,可以提高 HSPC 向 NK 细胞分化的效率。此外,高渗预处理的 HSC-NK 细胞表现出增强的增殖能力并保持正常的功能特性,包括转录组和抗肿瘤功效。优化的方案可在 28 天的周期内从单个 CD34 阳性细胞中产生约 180 万个 NK 细胞,与传统方法相比,效率提高了 10 倍以上。与标准条件相比,该优化方案也适用于生成具有高产率的 CAR-NK 细胞。

结论

这项研究的结果表明,高渗透压是一种简单而强大的调节手段,可以显著提高 HSC-NK 细胞的效率和功能,包括 CAR-NK 细胞。该优化方案可能会导致成本效益高、产量高的 NK 细胞疗法,从而可能彻底改变癌症免疫治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba3c/10578005/044dc892f4c9/13287_2023_3461_Fig1_HTML.jpg

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