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A new approach for the large-scale generation of mature dendritic cells from adherent PBMC using roller bottle technology

机译:使用滚瓶技术从粘附的PBMC大规模生成成熟树突状细胞的新方法

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Background Human monocyte-derived DC (mDC) loaded with peptides, protein, tumor cell lysates, or tumor cell RNA, are being tested as vaccines against multiple human malignancies and viral infection with great promise. One of the factors that has limited more widespread use of these vaccines is the need to generate mDC in large scale. Current methods for the large-scale cultivation of mDC in static culture vessels are labor- and time- intensive, and also require many culture vessels. Here, we describe a new method for the large-scale generation of human mDC from human PBMC from leukopheresis or buffy coat products using roller bottles, never attempted before for mDC generation. We have tested this technology using 850 cm2 roller bottles compared to conventional T-175 flat-bottom static culture flasks. Methods DC were generated from adherent human PBMC from buffy coats or leukopherisis products using GM-CSF and IL-4 in T-175 static flasks or 850 cm2 roller bottles. The cells were matured over two days, harvested and analyzed for cell yield and mature DC phenotype by flow cytometry, and then functionally analyzed for their ability to activate allogeneic T-cell or recall antigen peptide-specific T-cell responses. Results Monocytes were found to adhere inside roller bottles to the same extent as in static culture flasks. The phenotype and function of the mDC harvested after maturation from both type of culture systems were similar. The yield of mDC from input PBMC in the roller bottle system was similar as in the static flask system. However, each 850 cm2 roller bottle could be seeded with 4–5 times more input PBMC and could yield 4–5 times as many mDC per culture vessel than the static flasks as a result. Conclusion Our results indicate that the roller bottle technology can generate similar numbers of mDC from adherent PBMC as traditional static flask methods, but with having to use fewer culture vessels. Thus, this may be a more practical method to generate mDC in large-scale cutting down on the amount of laboratory manipulations, and can save both time and labor costs.
机译:背景技术载有肽,蛋白质,肿瘤细胞裂解物或肿瘤细胞RNA的人类单核细胞衍生DC(mDC)已被测试为针对多种人类恶性肿瘤和病毒感染的疫苗,前景广阔。限制这些疫苗更广泛使用的因素之一是需要大规模产生mDC。当前在静态培养皿中大规模培养mDC的方法是费时费力的,并且还需要许多培养皿。在这里,我们描述了一种新的方法,该方法用于使用滚瓶从白细胞分离或血沉棕黄层产品中的人PBMC大规模生成人mDC,这是以前从未尝试过的mDC生成方法。与传统的T-175平底静态培养瓶相比,我们已经使用850 cm2滚瓶测试了该技术。方法使用GM-CSF和IL-4在T-175静态烧瓶或850 cm2滚瓶中,从血沉棕黄层或白细胞产品的粘附人PBMC产生DC。细胞经过两天成熟,收获并通过流式细胞仪分析细胞产量和成熟DC表型,然后在功能上分析其激活同种异体T细胞或召回抗原肽特异性T细胞反应的能力。结果发现单核细胞附着在滚瓶中的程度与在静态培养瓶中的程度相同。从两种类型的培养系统成熟后收获的mDC的表型和功能相似。滚瓶系统中来自输入PBMC的mDC产量与静态烧瓶系统中的相似。但是,每个850 cm2滚瓶的播种PBMC可以多输入4-5倍,因此每个培养皿的mDC产量是静态烧瓶的4-5倍。结论我们的结果表明,滚瓶技术可以从粘附的PBMC产生与传统的静态烧瓶法相似数量的mDC,但必须使用较少的培养容器。因此,这可能是一种更大规模生成mDC的实用方法,可以减少实验室操作量,并且可以节省时间和人工成本。

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