小鼠纤维肉瘤移植排斥反应中单个核细胞的表型和功能分析。

D Lovens-De Graef, P Delvenne, P Leliévre, M T Martin-Simonet, R Greimers, J Boniver, N Schaaf-Lafontaine
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引用次数: 0

摘要

将丝裂霉素c处理过的T2纤维肉瘤细胞反复注射到肿瘤致敏小鼠体内,可导致继发性肿瘤移植物消退,90%以上的小鼠被治愈。在这里提供的数据中,在肿瘤排斥过程中,在引流肿瘤的淋巴结和脾脏中,体外测量的针对特定T2靶点的细胞溶解细胞介导的活性增强。组织病理学研究显示单个核细胞的快速和显著的积累,主要在排斥肿瘤组织的周围。cd8阳性、asialo gm1阳性和酸性磷酸酶阳性细胞在排斥肿瘤组织中显著增加,而cd4阳性细胞在进展性和排斥性肿瘤组织中也同样被检测到。由于巨噬细胞似乎是免疫后表现出最持久变化的群体,因此研究了肿瘤部位和淋巴组织在消退过程中tnf - α的产生。首先,免疫细胞化学证实了免疫小鼠脾脏和肿瘤中大部分贴壁细胞的细胞质中存在tnf - α。接下来,通过冷冻肿瘤切片的原位杂交检测含有tnf - α mrna的细胞,并将其鉴定为肿瘤浸润性巨噬细胞。最后,从肿瘤和免疫小鼠脾脏分离的巨噬细胞群能够在体外产生大量的tnf - α,而无需外源刺激。这些发现支持tnf - α在促进肿瘤消退过程的效应机制中的作用。
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Phenotypical and functional analyses of mononuclear cells during rejection of a transplanted murine fibrosarcoma.

Repeated injections of mitomycin C-treated T2 fibrosarcoma cells into tumor-sensitized mice cause regression of a secondary tumor graft and more than 90% of the mice are cured. In the data presented here, an enhancement of the cytolytic cell-mediated activities measured in vitro against the specific T2 targets is shown in lymph nodes draining the tumor and in the spleen during the process of tumor rejection. Histopathologic studies revealed a rapid and marked accumulation of mononuclear cells mostly at the periphery of the rejected tumor tissue. A significant increase of CD8-positive, asialo GM1-positive and acid phosphatase-positive cells was observed in the rejected tumors whereas CD4-positive cells were similarly detected in both progressing and rejected tumor tissue. As macrophages seemed to be the population presenting the most persistent variation after immunization, the production of TNF-alpha was studied within the tumor site and in the lymphoid tissues during the regression process. Firstly, the presence of TNF-alpha within the cytoplasm of most of the adherent cell fractions isolated from the spleen and the tumor of immune mice was demonstrated by immunocytochemistry. Next, TNF-alpha mRNA-containing cells were determined by in situ hybridization of frozen tumor sections and identified essentially as tumor infiltrating macrophages. Finally, the macrophage populations isolated from tumors and from the spleen of immune mice were able to produce in vitro large quantities of TNF-alpha without exogenous stimulation. These findings support the role of TNF-alpha in the effector mechanisms contributing to the tumor regression process.

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