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:Donor selection for adoptive immunotherapy with NK cells in AML patients: Comparison between analysis of lytic NK cell clones and phenotypical identification of alloreactive NK cell repertoire.
Donor selection for adoptive immunotherapy with NK cells in AML patients: Comparison between analysis of lytic NK cell clones and phenotypical identification of alloreactive NK cell repertoire.
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基于疗效和安全性的临床证据,白血病患者中基于自然杀伤(NK)细胞的过继免疫治疗是一个新兴的关注领域。老年急性髓系白血病(AML)患者已成功接受来自HLA单倍体相合供者的NK细胞治疗,尤其是当输注大量同种反应性NK细胞时。
本研究的目的是比较两种方法,以确定两项临床试验中招募的AML患者HLA单倍体相合供者同种反应性NK细胞的大小,这两项试验分别缩写为“NK-AML”(NCT03955848)和“MRD-NK”。标准方法基于能够裂解相关患者来源细胞的NK细胞克隆频率。替代方法包括对新鲜来源NK细胞的表型鉴定,这些细胞仅表达针对错配KIR-Ligand(HLA-C1、HLA-C2、HLA-Bw4)具有特异性的抑制性KIR作为抑制性受体。
然而,在KIR2DS2+供者和HLA-C1+患者中,由于缺乏仅染色抑制性对应物(KIR2DL2/L3)的试剂,可能导致同种反应性NK细胞亚群的鉴定被低估。相反,在HLA-C1错配的情况下,由于KIR2DL2/L3也能够以低亲和力识别HLA-C2,同种反应性NK细胞亚群可能被高估。尤其在这种情况下,额外排除表达LIR1的细胞可能对细化同种反应性NK细胞亚群的大小具有重要意义。
我们还可以结合脱颗粒试验,使用IL-2激活的供者外周血单个核细胞(PBMC)或NK细胞作为效应细胞,与相关患者靶细胞共培养。供者同种异体反应性NK细胞亚群始终表现出最高的功能活性,证实了流式细胞术鉴定的准确性。尽管存在表型上的局限性,并考虑到所提出的纠正措施,两种研究方法的比较显示出良好的相关性。
此外,对部分NK细胞克隆的受体表达特征分析揭示了预期模式,也发现了一些意外模式。因此,在大多数情况下,从PBMC中对表型定义的同种异体反应性NK细胞进行定量,可以提供与裂解性克隆分析相似的数据,并具有若干优势,例如获得结果的时间更短,以及可能在许多实验室中具有更高的可重复性/可行性。
Natural killer (NK) cell-based adoptive immunotherapy in leukemia patients is an emerging field of interest based on clinical evidence of efficacy and safety. Elderly acute myeloid leukemia (AML) patients have been successfully treated with NK cells from HLA-haploidentical donors, especially when high amounts of alloreactive NK cells were infused. The aim of this study was comparing two approaches to define the size of alloreactive NK cells in haploidentical donors for AML patients recruited in two clinical trials with the acronym "NK-AML" (NCT03955848), and "MRD-NK".
The standard methodology was based on the frequency of NK cell clones capable of lysing the related patient-derived cells. The alternative approach consisted of the phenotypic identification of freshly derived NK cells expressing, as inhibitory receptors, only the inhibitory KIR(s) specific for the mismatched KIR-Ligand(s) (HLA-C1, HLA-C2, HLA-Bw4).
However, in KIR2DS2 + donors and HLA-C1 + patients, the unavailability of reagents staining only the inhibitory counterpart (KIR2DL2/L3) may lead to an underestimated identification of the alloreactive NK cell subset. Conversely, in the case of HLA-C1 mismatch, the alloreactive NK cell subset could be overestimated due to the ability of KIR2DL2/L3 to recognize with low-affinity also HLA-C2. Especially in this context, the additional exclusion of LIR1-expressing cells might be relevant to refine the size of the alloreactive NK cell subset.
We could also associate degranulation assays, using as effector cells IL-2 activated donor peripheral blood mononuclear cells (PBMC) or NK cells upon co-culture with the related patient target cells. The donor alloreactive NK cell subset always displayed the highest functional activity, confirming its identification accuracy by flow cytometry. Despite the phenotypic limitations and considering the proposed corrective actions, a good correlation was shown by the comparison of the two investigated approaches.
In addition, the characterization of receptor expression on a fraction of NK cell clones revealed expected but also few unexpected patterns.
Thus, in most instances, the quantification of phenotypically defined alloreactive NK cells from PBMC can provide data similar to the analysis of lytic clones, with several advantages, such as a shorter time to achieve the results and, perhaps, higher reproducibility/feasibility in many laboratories.
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