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作 者:郭光华[1] 谢丽华[1] 陈素钻[1] 俞晶[1] 张娟[2] 罗丽莉[3]
机构地区:[1]汕头大学医学院第一附属医院消化内科,广东汕头515041 [2]汕头大学医学院第一附属医院细菌室,广东汕头515041 [3]汕头大学医学院第一附属医院产科,广东汕头515041
出 处:《中华肿瘤防治杂志》2006年第18期1375-1379,共5页Chinese Journal of Cancer Prevention and Treatment
基 金:广东省自然科学基金(021228)
摘 要:目的:观察低温冻存对人脐血DC与EC109食管癌细胞融合疫苗生物学特性及CTL活性的影响。方法:应用免疫磁珠标记法分选人脐血CD34+干细胞,细胞因子扩增培养为成熟DC,聚二乙醇(PEG)融合法制备EC109-DC融合疫苗,-80℃低温冰箱冻存,3周后复苏,计算疫苗回收率及存活率。倒置相差显微镜观察冻存后疫苗的细胞形态,流式细胞术分析疫苗及疫苗活化后T淋巴细胞的表型,MTT法检测疫苗特异的CTL活性。结果:冻存后疫苗存活率及回收率分别为(77·2±1·8)%、(61·8±1·4)%。冻存对疫苗细胞形态及表型无明显影响。冻存疫苗和未冻存疫苗活化后T淋巴细胞,CD3+T/CD4+T及CD3+T/CD8+T均较活化前明显增加,P=0·002;CD4+T/CD8+T由活化前的0·85分别增加至1·25和1·29,疫苗冻存与否对T细胞活化能力无明显差别,P=0·052。疫苗特异的CTL活性未受冻存明显影响,其杀伤率与未冻存疫苗组相比差异无统计学意义,P=0·667。结论:-80℃低温冰箱短期冻存对EC109-DC融合疫苗生物学特性及特异的CTL活性无明显影响,可望为EC109-DC疫苗的开发应用提供简单可行的保存方法。OBJECTIVE: To study the biological characteristics and specific cytotoxic activity of cord blood derived DC-based esophageal carcinoma vaccine after cryopreservation. METHODS: CD34^+ hematopoietic stem cells were isolated from cord blood by using CD34^+ progenitor cell isolation kit of magnetic cell sorting system (MACS). Then the CD34^+ cells were expanded with cytokines togetmature DCs, and then fused with EC109 cells by PEG-3600. There fused cells were frozen and stored at -80℃ for three weeks. After thawing, the cells were assayed for their viability, morphology, immunophenotypes and T-cell stimulatory capacity. Specific CTL activity was also tested by MTT. RESULTS: Cryopreservation did not cause significant changes in the phenotypes or morphology of the fused cells, and the recovery rate and trypan blue viability were (61.8±1.4)% and (77.2±1.8)% respectively. The numbers of CD3^+ T/CD4^+ T and CD3^+ T/CD8^+ T lymphocytes increased after being stimulated by DC-based esophageal carcinoma vaccine either before or after cryopreservation, and the ratio of CD4/CD8 increased from 0.85 to 1.29 and 1.25 respectively, and the function of T-cell stimulating capacity and the specific CTL activity were well preserved (compared with the fresh fused vaccine, P = 0.667). CONCLUSIONS: A simple short-term -80℃ freezing and storage method is practical. It is promising to be a new storage approach for cord blood derived DC-based esophageal carcinoma vaccine during the clinical application.
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