CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Human lymphocytes mobilized with exercise have an anti-tumor transcriptomic profile and exert enhanced graft-versus-leukemia effects in xenogeneic mice.
Human lymphocytes mobilized with exercise have an anti-tumor transcriptomic profile and exert enhanced graft-versus-leukemia effects in xenogeneic mice.
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人体运动可动员具有抗肿瘤转录组特征的效应淋巴细胞,将其用作 DLI 可延长生存期并增强移植物抗白血病(GvL)效应,且不会加重人白血病异种移植小鼠的 GvHD。
每次运动都会动员并重新分布大量具有细胞毒性和组织迁移表型的效应淋巴细胞。这种反复重新分布被认为可增强免疫监视,并可能降低癌症风险、延缓运动活跃的癌症幸存者肿瘤进展。本研究首次对运动动员淋巴细胞进行详细单细胞转录组分析,并在移植人白血病的异种小鼠中测试其作为供者淋巴细胞输注(DLI)的效果。
健康志愿者休息时及一次急性骑行运动结束时采集PBMC,以流式及靶向人免疫基因单细胞测序比较表型和转录特征。将PBMC注入NSG-IL-15小鼠,再以荧光素酶标记慢性髓系白血病K562细胞挑战,连续40天每两周监测肿瘤生长及异种移植物抗宿主病(GvHD)。
运动优先动员分化且具效应表型的NK、CD8 T细胞和单核细胞亚型,并未显著动员CD4 Treg。动员效应淋巴细胞,尤其效应记忆CD8 T和NK细胞,富集抗肿瘤活性相关基因,包括细胞毒、迁移/趋化、抗原结合、细胞因子应答和异体反应。接受运动动员PBMC小鼠第40天肿瘤负荷较低、生存率更高(4.14×10^8 photons/s和47%),而休息PBMC组为12.1×10^8 photons/s和22%(p<0.05)。两组人免疫细胞植入相似;但K562使运动组DLI小鼠1至2周后NK和CD3+CD4-CD8- T细胞扩增增加,休息组无此现象。两组GvHD及无GvHD生存无差异。
运动可动员具有抗肿瘤转录特征的效应淋巴细胞;其作为DLI可延长白血病人源化小鼠生存并增强移植物抗白血病作用,而不加重GvHD。运动可能是提高异基因细胞疗法抗白血病效果且不增加GvHD的有效经济辅助方式。
Every bout of exercise mobilizes and redistributes large numbers of effector lymphocytes with a cytotoxic and tissue migration phenotype. The frequent redistribution of these cells is purported to increase immune surveillance and play a mechanistic role in reducing cancer risk and slowing tumor progression in physically active cancer survivors. Our aim was to provide the first detailed single cell transcriptomic analysis of exercise-mobilized lymphocytes and test their effectiveness as a donor lymphocyte infusion (DLI) in xenogeneic mice engrafted with human leukemia.
Peripheral blood mononuclear cells (PBMCs) were collected from healthy volunteers at rest and at the end of an acute bout of cycling exercise. Flow cytometry and single-cell RNA sequencing was performed to identify phenotypic and transcriptomic differences between resting and exercise-mobilized cells using a targeted gene expression panel curated for human immunology. PBMCs were injected into the tail vein of xenogeneic NSG-IL-15 mice and subsequently challenged with a luciferase tagged chronic myelogenous leukemia cell line (K562). Tumor growth (bioluminescence) and xenogeneic graft-versus-host disease (GvHD) were monitored bi-weekly for 40-days.
Exercise preferentially mobilized NK-cell, CD8+ T-cell and monocyte subtypes with a differentiated and effector phenotype, without significantly mobilizing CD4+ regulatory T-cells. Mobilized effector lymphocytes, particularly effector-memory CD8+ T-cells and NK-cells, displayed differentially expressed genes and enriched gene sets associated with anti-tumor activity, including cytotoxicity, migration/chemotaxis, antigen binding, cytokine responsiveness and alloreactivity (e.g. graft-versus-host/leukemia). Mice receiving exercise-mobilized PBMCs had lower tumor burden and higher overall survival (4.14E+08 photons/s and 47%, respectively) at day 40 compared to mice receiving resting PBMCs (12.1E+08 photons/s and 22%, respectively) from the same donors (p<0.05). Human immune cell engraftment was similar for resting and exercise-mobilized DLI. However, when compared to non-tumor bearing mice, K562 increased the expansion of NK-cell and CD3+/CD4-/CD8- T-cells in mice receiving exercise-mobilized but not resting lymphocytes, 1-2 weeks after DLI. No differences in GvHD or GvHD-free survival was observed between groups either with or without K562 challenge.
Exercise in humans mobilizes effector lymphocytes with an anti-tumor transcriptomic profile and their use as DLI extends survival and enhances the graft-versus-leukemia (GvL) effect without exacerbating GvHD in human leukemia bearing xenogeneic mice. Exercise may serve as an effective and economical adjuvant to increase the GvL effects of allogeneic cell therapies without intensifying GvHD.
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