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:Early recovery of natural killer cells post T-cell depleted allogeneic stem cell transplantation using alemtuzumab "in the bag".
Early recovery of natural killer cells post T-cell depleted allogeneic stem cell transplantation using alemtuzumab "in the bag".
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这项关于体外 T 细胞去除的 SCT 的研究表明,与接受未分选移植物者相比,NK 细胞恢复更快。
异基因干细胞移植(SCT)是治疗血液系统恶性肿瘤的重要手段,但可能导致急性或慢性移植物抗宿主病(GvHD)。体内或体外使用阿仑单抗去除 T 细胞可降低 GvHD 发生率,但也会增加疾病复发风险并影响免疫重建。自然杀伤(NK)细胞是最早恢复的淋巴细胞。经典 NK 细胞占正常外周血 NK 细胞的 90% 以上,可直接杀伤肿瘤细胞或病毒感染细胞;调节性亚群不足 10%,可分泌细胞因子且不具细胞毒性。SCT 后这两类细胞的恢复及比例仍有争议,既往研究多分析未经处理的移植物及接受体内免疫抑制的患者。
评估连续 18 例接受体外 T 细胞去除 SCT 患者早期 NK 细胞恢复情况,并与 25 例接受单倍体、未去除 T 细胞移植物者比较。
所有患者均接受清髓性预处理。采集干细胞后,T 细胞去除组在输注袋内以每 10^8 个单个核细胞 1 mg 的浓度加入阿仑单抗(CAMPATH 1H)处理,随后立即输注。未去除 T 细胞组采用输注后治疗剂量环磷酰胺预防 GvHD。于第 21、28 和 90 天采集血样,使用自动分析仪进行全血细胞计数,并以多参数流式细胞术分析淋巴细胞和 NK 细胞亚群。NK 细胞定义为 CD3−/CD56+ 淋巴细胞;经典亚群为 CD56dim/CD16+,调节性亚群为 CD56bright/CD16−。使用 SPSS v8 比较两种移植方式各时间点的结果。
两组淋巴细胞恢复均较慢。未去除 T 细胞组第 21 天和第 28 天的 T 细胞计数显著高于 T 细胞去除组(P<0.05)。相反,体外去除 T 细胞组的 NK 细胞恢复较快,第 21 天已恢复至正常水平;未去除组 NK 细胞数量则显著降低(P<0.001),至第 90 天才恢复。两组 NK 细胞亚群比例均异常,调节性细胞比例显著升高(P<0.05)。但组间仍有显著差异:T 细胞去除组第 21、28 天调节性细胞比例较低,经典 NK 细胞数量较高(P<0.01)。
本研究显示,与接受未经分选移植物的患者相比,接受体外去除 T 细胞 SCT 的患者 NK 细胞恢复更快。这些结果可能与 GvHD 和移植物抗白血病(GvL)效应有关,值得进一步研究。
Allogeneic stem cell transplantation (SCT) is a critical therapy for haematological malignancy but may lead to acute and chronic graft versus host disease (GvHD). T-cell depletion with alemtuzumab, either in vivo or ex vivo, reduces the incidence of GvHD but is a risk factor for disease relapse and poor immune reconstitution. Natural killer (NK) cells are the first lymphocytes to recover. Classical NK cells make up >90% of the normal circulating population and can directly kill neoplastic or virally infected cells while the regulatory subset makes up <10%, secretes cytokines and is not cytotoxic. The recovery and balance of these subsets post SCT remains controversial, with most studies analysing patients who received unmanipulated grafts and in vivo immunosuppression.
The aim was to assess the early recovery of NK cells in 18 consecutive patients receiving ex vivo T-cell depleted SCT and to compare the results to 25 individuals receiving haploidentical non-T cell depleted grafts.
All patients received myeloablative conditioning. After stem cell collection, the stem cells of the T cell depleted group were treated "in the bag" with alemtuzumab (CAMPATH 1H) at a concentration of 1mg/10 8 mononuclear cells and thereafter immediately infused. For those receiving non-T cell depleted grafts, GvHD prophylaxis was with post infusion therapeutic doses of cyclophosphamide. Blood samples were collected at days 21, 28 and 90. Complete blood counts were performed on an automated analyser while lymphocyte and NK subsets were examined using multiparameter flowcytometry. NK cells were defined as lymphocytes which were CD3-/CD56+. The classical subset was recognised as CD56 dim /CD16+ while the regulatory population as CD56 bright /CD16-. The results for both transplant types were compared at all time points using SPSS v8 statistical software.
The recovery of lymphocytes was slow in both groups. Those receiving non-T cell depleted grafts had significantly higher T cell counts at day 21 and 28 when compared to the T cell depleted group (P < 0.05). In contrast, NK cells in the ex vivo T-cell depleted patients recovered rapidly and by day 21 was no different to normal (p > 0.05), while the non-T cell depleted group had significantly decreased numbers (p < 0.001), only recovering at day 90. Both groups had abnormal NK cell subset ratios with significantly elevated percentages of regulatory cells (p < 0.05). However, significant differences were observed between the two groups with those receiving T cell depleted grafts having lower percentages of regulatory cells as well as higher numbers of classical NK cells at day 21 and 28 (p < 0.01).
This study of ex vivo T-cell depleted SCT's demonstrates that NK cells recover quicker when compared to those receiving unfractionated grafts. These results may have implications for GvHD and the GvL effect which warrants further study.
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