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外周血来源体外扩增异体人 NK 细胞对膀胱癌的高选择性细胞毒性:对经尿道膀胱肿瘤电切术后 NK 细胞灌注的启示

英文原题:High and selective cytotoxicity of ex vivo expanded allogeneic human natural killer cells from peripheral blood against bladder cancer: implications for natural killer cell instillation after transurethral resection of bladder tumor.

PubMed 2024/01/20(内容时间) J Exp Clin Cancer Res Q1 · IF 14.3(JCR 2025)

研究概要

扩增后的NK细胞对BCa细胞表现出强效的细胞毒性,而对正常尿路上皮细胞的毒性副作用较少。此外,NK细胞通过分泌一系列趋化因子招募T细胞,这为TURBT术后NK细胞膀胱内灌注用于NMIBC治疗从基础到临床的转化应用提供了支持。

研究思路结论见上方概要

非肌层浸润性膀胱癌(NMIBC)的治疗方法是经尿道膀胱肿瘤电切术(TURBT),随后进行膀胱内灌注化疗或卡介苗治疗。然而,这些治疗方法的复发率高且存在副作用,因此迫切需要替代性的灌注疗法。此前,我们已经揭示,来自外周血的扩增异体人自然杀伤(NK)细胞是一种有前景的前列腺癌细胞疗法。然而,NK细胞在膀胱癌(BCa)中是否表现出类似的杀伤效果仍不清楚。

对从外周血获得的同种异体人NK细胞进行扩增、活化和冻存,方法如我们先前所述。使用细胞计数试剂盒-8评估体外细胞毒性。使用酶联免疫吸附测定法检测穿孔素、颗粒酶B、干扰素-、肿瘤坏死因子-以及趋化因子(C-C基序配体 [CCL]1、CCL2、CCL20、CCL3L1和CCL4;C-X-C基序配体 [CXCL]1、CXCL16、CXCL2、CXCL3和CXCL8;以及X基序配体1和2)的水平。使用流式细胞术检测NK细胞或BCa和正常尿路上皮细胞中CD107a、主要组织相容性复合体I类(MHC-I)、MHC-I多肽相关序列A和B(MICA/B)、巨细胞病毒UL16结合蛋白-2/5/6(ULBP-2/5/6)、B7-H6、CD56、CD69、CD25、杀伤细胞Ig样受体(KIR)2DL1、KIRD3DL1、NKG2D、NKp30、NKp46和CD16的表达。在患者来源类器官模型中使用乳酸脱氢酶测定法评估细胞毒性。在皮下注射5637和NK细胞的雄性NOD-scid IL2rg-/-小鼠中,使用卡尺在体内监测BCa生长。使用RNA序列分析研究差异基因表达。使用Transwell迁移实验评估T细胞的趋化性。

我们揭示,在体外,NK 细胞对 BCa 细胞系具有比正常尿路上皮细胞对应细胞更高的细胞毒性,并产生更多细胞因子,这通过脱颗粒标志物 CD107a 上调、干扰素-分泌增加,以及 MICA/B/NKG2D 和 B7H6/NKp30 介导的激活得到证明。此外,NK 细胞在患者来源类器官和 BCa 异种移植小鼠模型中显示出对 BCa 的抗肿瘤作用。NK 细胞在遇到 BCa 细胞时分泌趋化因子,包括 CCL1/2/20,以诱导 T 细胞趋化。

展开英文摘要原文

BACKGROUND: Non-muscle-invasive bladder cancer (NMIBC) is treated with transurethral resection of bladder tumor (TURBT) followed by intravesical instillation of chemotherapy or Bacillus Calmette-Gu rin therapy. However, these treatments have a high recurrence rate and side effects, emphasizing the need for alternative instillations. Previously, we revealed that expanded allogeneic human natural killer (NK) cells from peripheral blood are a promising cellular therapy for prostate cancer. However, whether NK cells exhibit a similar killing effect in bladder cancer (BCa) remains unknown. METHODS: Expansion, activation, and cryopreservation of allogeneic human NK cells obtained from peripheral blood were performed as we previously described. In vitro cytotoxicity was evaluated using the cell counting kit-8. The levels of perforin, granzyme B, interferon- , tumor necrosis factor- , and chemokines (C-C-motif ligand [CCL]1, CCL2, CCL20, CCL3L1, and CCL4; C-X-C-motif ligand [CXCL]1, CXCL16, CXCL2, CXCL3, and CXCL8; and X-motif ligand 1 and 2) were determined using enzyme-linked immunosorbent assay. The expression of CD107a, major histocompatibility complex class I (MHC-I), MHC-I polypeptide-related sequences A and B (MICA/B), cytomegalovirus UL16-binding protein-2/5/6 (ULBP-2/5/6), B7-H6, CD56, CD69, CD25, killer cell Ig-like receptors (KIR)2DL1, KIRD3DL1, NKG2D, NKp30, NKp46, and CD16 of NK cells or BCa and normal urothelial cells were detected using flow cytometry. Cytotoxicity was evaluated using lactate dehydrogenase assay in patient-derived organoid models. BCa growth was monitored in vivo using calipers in male NOD-scid IL2rg-/- mice subcutaneously injected with 5637 and NK cells. Differential gene expressions were investigated using RNA sequence analysis. The chemotaxis of T cells was evaluated using transwell migration assays. RESULTS: We revealed that the NK cells possess higher cytotoxicity against BCa lines with more production of cytokines than normal urothelial cells counterparts in vitro, demonstrated by upregulation of degranulation marker CD107a and increased interferon- secretion, by MICA/B/NKG2D and B7H6/NKp30-mediated activation. Furthermore, NK cells demonstrated antitumor effects against BCa in patient-derived organoids and BCa xenograft mouse models. NK cells secreted chemokines, including CCL1/2/20, to induce T-cell chemotaxis when encountering BCa cells. CONCLUSIONS: The expanded NK cells exhibit potent cytotoxicity against BCa cells, with few toxic side effects on normal urothelial cells. In addition, NK cells recruit T cells by secreting a panel of chemokines, which supports the translational application of NK cell intravesical instillation after TURBT from bench to bedside for NMIBC treatment.

论文信息

作者
Wang F、Zhang G、Xu T、Ma J、Wang J、Liu S、Tang Y、Jin S
第一作者单位
Department of Urology, Tsinghua University Affiliated Beijing Tsinghua Changgung Hospital, Tsinghua University Clinical Institute, Beijing, 102218, China.China
通讯作者单位
Department of Urology, National Clinical Research Center for Cancer/Cancer Hospital, National Cancer Center, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, 100021, China. xingnianzeng@126.com.China
期刊
Journal of experimental & clinical cancer research : CR2024 Jan 20
原文标识
PubMed 38245792 · DOI 10.1186/s13046-024-02955-7