• 中国科学论文统计源期刊
  • 中国科技核心期刊
  • 美国化学文摘(CA)来源期刊
  • 日本科学技术振兴机构数据库(JST)

临床输血与检验 ›› 2026, Vol. 28 ›› Issue (4): 525-532.DOI: 10.3969/j.issn.1671-2587.2026.04.010

• 基础研究 • 上一篇    下一篇

CD8+调节性T细胞来源小细胞外囊泡对输血相关急性肺损伤小鼠的保护作用及机制研究*

杨懿铭, 高跞, 蒋雪玉, 杨洁   

  1. 上海市血液中心血液工程学科,上海 200051
  • 收稿日期:2026-07-07 出版日期:2026-08-20 发布日期:2026-08-26
  • 通讯作者: 杨洁,主要从事细胞治疗、血液保存等输血医学研究,(E-mail)yangjie@sbc.org.cn。
  • 作者简介:杨懿铭,主要从事细胞治疗等输血医学研究,(E-mail)yangyiming@sbc.org.cn。
  • 基金资助:
    *本课题受中国输血协会威高科研基金(No.CSBT-WG-2024-03)、上海市血液中心科技基金项目(No.01J2402-03,L24-3)资助

Protective Effects and Mechanisms of Small Extracellular Vesicles Derived from CD8+ Regulatory T Cells in a Mouse Model of Transfusion-related Acute Lung Injury

YANG Yiming, GAO Li, JIANG Xueyu, YANG Jie   

  1. Blood Engineering Laboratory, Institute of Blood Transfusion, Shanghai Blood Center, Shanghai 200051
  • Received:2026-07-07 Online:2026-08-20 Published:2026-08-26

摘要: 目的 分离人外周血诱导CD8+调节性T细胞上清来源小细胞外囊泡(small extracellular vesicles, sEVs, TR-sEVs),探究其输注对输血相关急性肺损伤(transfusion-related acute lung injury, TRALI)小鼠模型的干预效果及初步机制。方法 差速联合超速离心提取TR-sEVs,通过纳米颗粒跟踪分析技术(nanoparticle tracking analysis, NTA)、透射电子显微镜(transmission electron microscope, TEM)与蛋白质免疫印迹(western blot, WB)完成囊泡鉴定。参照TRALI二次打击假说构建小鼠模型并分组,小鼠腹腔注射脂多糖(lipopolysaccharide, LPS)完成初次炎症打击(0 h),2 h后尾静脉输注梯度剂量TR-sEVs,24 h后尾静脉注射H-2Kd抗体完成二次打击。记录小鼠生存期,肺干湿重比,采用HE染色、免疫组化染色评估肺部病理损伤及炎性浸润水平,酶联免疫吸附试验(enzyme-linked immunosorbent assay, ELISA)检测肺泡灌洗液白细胞介素-6(interleukin-6, IL-6)含量。体外构建LPS诱导EA.hy926内皮细胞炎症损伤模型,通过实时荧光定量PCR(qRT-PCR)、流式细胞术检测内皮细胞间黏附分子-1(intercellular adhesion molecule-1, ICAM-1)的表达,评估人急性单核细胞白血病细胞系(tohoku hospital pediatrics-1, THP-1)细胞内皮黏附效果。结果 TR-sEVs可提升TRALI小鼠存活率,降低肺干湿重比(对照组6.21±0.15,干预组4.45±0.12),减轻肺部炎症、下调IL-6表达;体外可抑制内皮ICAM-1表达,削弱单核-内皮黏附作用。结论 输注TR-sEVs可减轻输血相关急性肺损伤小鼠肺病变、炎症细胞浸润及炎症因子释放,其机制可能通过下调内皮细胞ICAM-1表达及抑制单核-内皮细胞黏附进行作用。在输血相关急性肺损伤的预防阻断与早期干预中具备潜在应用价值。

关键词: CD8+调节性T细胞, 细胞外囊泡, 输血相关急性肺损伤, TRALI小鼠模型, 细胞间黏附分子-1, 单核-内皮细胞黏附

Abstract: Objective To isolate small extracellular vesicles(sEVs) derived from the supernatant of CD8+ regulatory T cells induced from human peripheral blood mononuclear cells (TR-sEVs), and explore their intervention effect and preliminary mechanism against transfusion-related acute lung injury (TRALI) in mouse model. Methods TR-sEVs were extracted by differential centrifugation combined with ultracentrifugation, and identified via nanoparticle tracking analysis (NTA), transmission electron microscopy (TEM), and Western blotting (WB). A mouse model was established and grouped according to the two-hit hypothesis of TRALI. Mice received an intraperitoneal injection of lipopolysaccharide (LPS) as the first insult at 0 h. After 2 h, gradient doses of TR-sEVs were administered via tail vein, and anti-mouse H-2Kd antibody was injected via the tail vein at 24 h to establish the second insult. Mouse survival time and lung wet-dry weight ratio were recorded. Hematoxylin-eosin (HE) staining and immunohistochemical staining were performed to evaluate pulmonary pathological damage and inflammatory infiltration. The level of interleukin-6 (IL-6) in bronchoalveolar lavage fluid was detected by enzyme-linked immunosorbent assay (ELISA). An LPS-induced inflammatory injury model of EA.hy926 endothelial cells was established in vitro. Quantitative real-time polymerase chain reaction (qRT-PCR) and flow cytometry were used to detect the expression of intercellular adhesion molecule-1 (ICAM-1) in endothelial cells, and the adhesion effect of Tohoku Hospital Pediatrics-1 (THP-1) monocytes to endothelial cells was further evaluated. Results TR-sEVs increased the survival rate of TRALI mice, decreased lung wet-dry weight ratio (6.21±0.15 in control group vs 4.45±0.12 in intervention group), alleviated pulmonary inflammation and reduced IL-6 level. In vitro, TR-sEVs inhibited endothelial ICAM-1 expression and weakened monocyte-endothelial adhesion. Conclusion Infusion of TR-sEVs alleviates pulmonary lesions, inflammatory cell infiltration and the release of inflammatory cytokines in mice with transfusion-related acute lung injury. Its mechanism may exert effects via downregulating ICAM-1 expression in endothelial cells and suppressing monocyte-endothelial cell adhesion.

Key words: CD8+ Regulatory T Cells, Extracellular vesicles, Transfusion related acute lung injury, TRALI mouse model, Intercellular adhesion molecule-1, Monocyte-endothelial cell adhesion

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