首页> 外文期刊>Journal of immunotherapy >Cryopreservation of monocytes is superior to cryopreservation of immature or semi-mature dendritic cells for dendritic cell-based immunotherapy.
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Cryopreservation of monocytes is superior to cryopreservation of immature or semi-mature dendritic cells for dendritic cell-based immunotherapy.

机译:对于基于树突细胞的免疫疗法,单核细胞的冷冻保存优于未成熟或半成熟树突细胞的冷冻保存。

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Cryopreservation of immature or mature dendritic cells (DC) has been proposed as a suitable method to gain large numbers of DC for immunotherapeutic trials against cancer. However, clinical studies using cryopreserved DC have demonstrated only limited success so far. The aim of this study was to investigate whether cryopreservation of monocytes elicits more potent DC and whether these DC are comparable to freshly generated DC preparations. Monocytes, either separated immunomagnetically or by means of leukapheresis and elutriation, were differentiated into DC and cryopreserved at various developmental stages. DC preparations were analyzed regarding recovery, viability, phenotype, and functional properties. In contrast to DC frozen at their immature or semi-mature state, generation of DC from cryopreserved monocytes elicited viability values comparable with freshly generated DC. Furthermore, using frozen monocytes for DC differentiation revealed improved expression of DC surface markers and interleukin-12p70 secretion as compared with DC generated from frozen immature or frozen semi-mature DC. Impaired phenotypical appearance of the latter DC variants was further substantiated by functional analysis. T-cells cocultured with these DC showed decreased expression of interferon-gamma and granzyme B, and lowered proliferation when compared with T-cells cocultured with DC generated from frozen monocytes or DC generated from freshly isolated monocytes. Induction of regulatory T-cell populations was negligible among all investigated DC preparations. These findings may further improve DC-based immunotherapeutical protocols. Cryopreservation of unchallenged monocytes enables targeted therapy by loading DC with varying antigenic compositions in case of tumor escape during treatment.
机译:已经提出了冷冻保存未成熟或成熟的树突状细胞(DC)作为获得大量DC的合适方法,用于针对癌症的免疫治疗试验。然而,迄今为止,使用冷冻保存的DC的临床研究仅显示出有限的成功。这项研究的目的是调查冷冻保存单核细胞是否会产生更有效的DC,以及这些DC是否可与新鲜产生的DC制剂相提并论。通过免疫磁分离或通过白细胞分离和淘析分离的单核细胞分化为DC,并在各个发育阶段进行冷冻保存。分析DC制剂的回收率,生存力,表型和功能特性。与在其未成熟或半成熟状态下冷冻的DC相比,冷冻保存的单核细胞产生DC所产生的活力值可与新鲜产生的DC相媲美。此外,与冷冻未成熟或冷冻半成熟DC产生的DC相比,使用冷冻单核细胞进行DC分化显示DC表面标志物的表达和白介素12p70分泌得到改善。通过功能分析进一步证实了后者DC变体的表型外观受损。与与冷冻单核细胞产生的DC或新鲜分离的单核细胞产生的DC共培养的T细胞相比,与这些DC共培养的T细胞显示出降低的干扰素-γ和颗粒酶B的表达,并降低了增殖。在所有研究的DC制剂中,调节性T细胞群的诱导可忽略不计。这些发现可能会进一步改善基于DC的免疫治疗方案。冷冻未挑战的单核细胞能够通过在治疗过程中肿瘤逸出的情况下向DC中加载各种抗原成分来进行靶向治疗。

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