RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Enhancing cord blood stem cell-derived NK cell growth and differentiation through hyperosmosis.
Enhancing cord blood stem cell-derived NK cell growth and differentiation through hyperosmosis.
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本研究结果确立了高渗透压作为一种简单而有效的调节手段,可显著提升 HSC-NK 细胞(包括 CAR-NK 细胞)的效率与功能。
自然杀伤(NK)细胞在治疗多种血液肿瘤和实体瘤方面前景良好。NK细胞可取自外周血和脐带血,而干细胞来源NK细胞可提供“现货型”治疗方案。脐带血来源造血干/祖细胞(HSPC)不会对新生儿或母亲造成风险,几乎是分化制备NK细胞的理想来源。
研究人员开发了一种改良方案,在无血清、使用成分明确因子的条件下,将HSPC分化为NK细胞。HSPC来源NK(HSC-NK)细胞可依赖K562饲养细胞扩增。此外,通过慢病毒转导可将嵌合抗原受体(CAR)改造的HSPC分化为NK细胞,制备CAR-NK。
简单加入氯化钠或葡萄糖调节渗透压,即可提高HSPC向NK细胞分化的效率。高渗预处理的HSC-NK细胞增殖能力增强,同时保留正常功能特征,包括转录组特征和抗肿瘤效力。优化方案在28天周期内可由单个CD34阳性细胞产生约180万个NK细胞,效率较传统方法提高十倍以上。该优化方案也适用于CAR-NK制备,产量高于标准条件。
本研究证明,提高渗透压是一种简单而有力的调节方式,可显著增强HSC-NK及CAR-NK细胞的生产效率和功能。优化方案有望推动高产、低成本NK细胞疗法,并可能改变癌症免疫治疗策略。
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.
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.
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.
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.
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