Watanabe N, Narita M, Yokoyama A, Sekiguchi A, Saito A, Tochiki N, Furukawa T, Toba K, Aizawa Y, Takahashi M
Division of Hematology and Oncology, Graduate School of Health Sciences, Niigata, Japan.
Cytotherapy. 2006;8(2):118-29. doi: 10.1080/14653240600620200.
In order to establish efficient gammadelta T-cell based tumor immunotherapy, we explored a method to enhance the cytotoxicity of gammadelta T cells against leukemia cells by stimulating gammadelta T cells with type I IFN.
Gammadelta T cells were expanded from normal PBMC by culturing with zoledronate and a low concentration of IL-2 for 2 weeks. For the activation of gammadelta T cells, gammadelta T cells were cultured with type I IFN (HLBI, IFN-alpha2b and IFN-beta) for 1-3 days. The cytotoxicity of HLBI-activated gammadelta T cells against leukemia cell lines and fresh leukemia cells was evaluated by 51Cr-release assay.
Gammadelta T cells, which were expanded and purified with magnetic beads using an anti-gammadelta TCR MAb, were demonstrated to be cytotoxic against leukemia cell lines of both lymphoid and myeloid origin and fresh myeloid leukemia cells. By culturing expanded gammadelta T cells with type I IFN, the expression of the activation marker CD69 was increased and the cytometric bead array showed an elevated production of IFN-gamma by gammadelta T cells. In addition, the cytotoxicity of gammadelta T cells against leukemia cells was definitely enhanced by culturing gammadelta T cells with HLBI.
The present study has demonstrated that type I IFN could enhance the anti-leukemic cytotoxicity of expanded gammadelta T cells, which implies that in vitro bisphosphonate (such as zoledronate)-expanded and type I IFN-activated gammadelta T cells could be applied to immunotherapy for hematologic malignancies such as leukemia and lymphoma.
为了建立基于γδT细胞的高效肿瘤免疫疗法,我们探索了一种通过用I型干扰素刺激γδT细胞来增强其对白血病细胞细胞毒性的方法。
通过与唑来膦酸和低浓度白细胞介素-2培养2周,从正常外周血单个核细胞中扩增γδT细胞。为了激活γδT细胞,将γδT细胞与I型干扰素(人白细胞β干扰素、干扰素-α2b和干扰素-β)培养1 - 3天。通过51Cr释放试验评估人白细胞β干扰素激活的γδT细胞对白血病细胞系和新鲜白血病细胞的细胞毒性。
用抗γδTCR单克隆抗体通过磁珠扩增和纯化的γδT细胞,被证明对淋巴系和髓系来源的白血病细胞系以及新鲜髓系白血病细胞具有细胞毒性。通过用I型干扰素培养扩增的γδT细胞,激活标志物CD69的表达增加,细胞因子检测微球阵列显示γδT细胞产生的干扰素-γ增加。此外,通过用人白细胞β干扰素培养γδT细胞,γδT细胞对白血病细胞的细胞毒性明显增强。
本研究表明I型干扰素可增强扩增的γδT细胞的抗白血病细胞毒性,这意味着体外双膦酸盐(如唑来膦酸)扩增和I型干扰素激活的γδT细胞可应用于白血病和淋巴瘤等血液系统恶性肿瘤的免疫治疗。