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Zoledronic acid boosts γδ T-cell activity in children receiving αβ+T and CD19+cell-depleted grafts from an HLA-haplo-identical donor

细胞毒性T细胞 CD19 细胞毒性 流式细胞术 白血病 脱颗粒 T细胞 免疫系统 医学 骨髓 下调和上调 癌症研究 免疫学 分子生物学 化学 生物 内科学 体外 生物化学 受体 基因
作者
Alice Bertaina,Alessia Zorzoli,Andrea Petretto,Giulia Barbarito,Elvira Inglese,Pietro Merli,Chiara Lavarello,Letizia Pomponia Brescia,Biagio De Angelis,G. Tripodi,Lorenzo Moretta,Franco Locatelli,Irma Airoldi
出处
期刊:OncoImmunology [Landes Bioscience]
卷期号:6 (2): e1216291-e1216291 被引量:64
标识
DOI:10.1080/2162402x.2016.1216291
摘要

We demonstrated that γδ T cells of patients given HLA-haploidentical HSCT after removal of αβ+ T cells and CD19+ B cells are endowed with the capacity of killing leukemia cells after ex vivo treatment with zoledronic acid (ZOL). Thus, we tested the hypothesis that infusion of ZOL in patients receiving this type of graft may enhance γδ T-cell cytotoxic activity against leukemia cells. ZOL was infused every 28 d in 43 patients; most were treated at least twice. γδ T cells before and after ZOL treatments were studied in 33 of these 43 patients, till at least 7 mo after HSCT by high-resolution mass spectrometry, flow-cytometry, and degranulation assay. An induction of Vδ2-cell differentiation, paralleled by increased cytotoxicity of both Vδ1 and Vδ2 cells against primary leukemia blasts was associated with ZOL treatment. Cytotoxic activity was further increased in Vδ2 cells, but not in Vδ1 lymphocytes in those patients given more than one treatment. Proteomic analysis of γδ T cells purified from patients showed upregulation of proteins involved in activation processes and immune response, paralleled by downregulation of proteins involved in proliferation. Moreover, a proteomic signature was identified for each ZOL treatment. Patients given three or more ZOL infusions had a better probability of survival in comparison to those given one or two treatments (86% vs. 54%, respectively, p = 0.008). Our data indicate that ZOL infusion in pediatric recipients of αβ T- and B-cell-depleted HLA-haploidentical HSCT promotes γδ T-cell differentiation and cytotoxicity and may influence the outcome of patients.
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