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:A rapid ex vivo co-culture of memory-like NK and activated T cells enhances anti-tumor response in gastric cancer.
A rapid ex vivo co-culture of memory-like NK and activated T cells enhances anti-tumor response in gastric cancer.
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我们的数据表明,用于过继性细胞回输的 iRGD 修饰的 CIML NK&Ac-T 细胞快速共培养系统在胃癌中表现出强效的抗肿瘤作用。该方法省时且节约成本,与常规 NK 细胞疗法相比具有更广泛的临床应用潜力。
单独过继转移NK或T细胞需要较长的制备时间。我们开发了一种快速共培养系统,包括细胞因子诱导的记忆样NK(CIML NK)细胞和活化T细胞(Ac-T),以及肿瘤穿透肽iRGD。
PBMCs先用IL-12/15/18预处理16 h,随后洗涤以诱导记忆NK表型。通过慢病毒转导生成K562-CD48-41BBL-mbIL-21细胞,并将其用作饲养细胞,以扩增和激活来自PBMCs的NK细胞,持续7天。第7天,加入抗CD3单克隆抗体(OKT3)和抗CD28单克隆抗体(CD28.2),并洗涤过夜24 h。将iRGD修饰的CIML NK&Ac-T细胞(CIML NK&Ac-T-iRGD)与未加入CD3/CD28的CIML NK&T-iRGD进行体外(细胞毒性、细胞因子)和体内(肿瘤抑制、生存)功能比较。
我们建立了一个包含NK和T细胞的为期一周的快速共培养系统。该系统显著增加了细胞因子分泌,并在体外对胃癌细胞系表现出强效的细胞毒性,显著抑制了肿瘤生长,并延长了胃癌异种移植模型中的生存期。值得注意的是,iRGD修饰的CIML NK&Ac-T细胞与CIML NK&T细胞相比显示出更优的疗效。
Adoptive transfer of NK or T cells alone requires a long preparation time. We developed a rapid co-culture system, including cytokine-induced memory-like NK (CIML NK) cells and activated T cells (Ac-T), as well as tumor-penetrating peptide iRGD.
PBMCs were pretreated with IL-12/15/18 for 16 h, then washed to induce a memory NK phenotype. K562-CD48-41BBL-mbIL-21 cells were generated by lentiviral transduction and used as feeder cells to expand and activate NK cells from PBMCs for 7 days. On day 7, an anti-CD3 monoclonal antibody (OKT3) and an anti-CD28 monoclonal antibody (CD28.2) were added and washed overnight for 24 h. The in vitro (cytotoxicity, cytokines) and in vivo (tumor inhibition, survival) functions of iRGD-modified CIML NK&Ac-T cells (CIML NK&Ac-T-iRGD) were compared to CIML NK&T-iRGD without addition of CD3/CD28.
We established a one-week rapid co-culture system comprising NK and T cells. This system markedly increased cytokine secretion and demonstrated potent in vitro cytotoxicity against gastric cancer cell lines, significantly inhibited tumor growth, and prolonged survival in a gastric cancer xenograft model. Notably, iRGD-modified CIML NK&Ac-T cells showed superior efficacy compared with CIML NK&T cells.
Our data suggest that the rapid co-culture system of iRGD-modified CIML NK&Ac-T cells used for adoptive cell transfer demonstrates potent anti-tumor effects in gastric cancer. This approach is time-efficient and cost-saving, with potential for broader clinical application compared with conventional NK cell therapies.
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