Department of Molecular Biotechnology, Helmholtz Centre for Infection Research (HZI), Braunschweig, Germany.
Transfusion. 2010 Apr;50(4):843-55. doi: 10.1111/j.1537-2995.2009.02520.x. Epub 2009 Dec 10.
Dendritic cells (DCs) are applied worldwide in several clinical studies of immune therapy of malignancies, autoimmune diseases, and transplantations. Most legislative bodies are demanding high standards for cultivation and transduction of cells. Closed-cell cultivating systems like cell culture bags would simplify and greatly improve the ability to reach these cultivation standards. We investigated if a new polyolefin cell culture bag enables maturation and adenoviral modification of human DCs in a closed system and compare the results with standard polystyrene flasks.
Mononuclear cells were isolated from HLA-A*0201-positive blood donors by leukapheresis. A commercially available separation system (CliniMACS, Miltenyi Biotec) was used to isolate monocytes by positive selection using CD14-specific immunomagnetic beads. The essentially homogenous starting cell population was cultivated in the presence of granulocyte-macrophage-colony-stimulating factor and interleukin-4 in a closed-bag system in parallel to the standard flask cultivation system. Genetic modification was performed on Day 4. After induction of maturation on Day 5, mature DCs could be harvested and cryopreserved on Day 7. During the cultivation period comparative quality control was performed using flow cytometry, gene expression profiling, and functional assays.
Both flasks and bags generated mature genetically modified DCs in similar yields. Surface membrane markers, expression profiles, and functional testing results were comparable. The use of a closed-bag system facilitated clinical applicability of genetically modified DCs.
The polyolefin bag-based culture system yields DCs qualitatively and quantitatively comparable to the standard flask preparation. All steps including cryopreservation can be performed in a closed system facilitating standardized, safe, and reproducible preparation of therapeutic cells.
树突状细胞(DCs)在全球范围内被应用于多种恶性肿瘤、自身免疫性疾病和移植的免疫治疗的临床研究中。大多数立法机构都要求对细胞培养和转导采用高标准。像细胞培养袋这样的封闭细胞培养系统将简化并极大地提高达到这些培养标准的能力。我们研究了一种新的聚烯烃细胞培养袋是否能够在封闭系统中使人类 DCs 成熟和腺病毒修饰,并将结果与标准聚苯乙烯培养瓶进行比较。
通过白细胞分离术从 HLA-A*0201 阳性献血者中分离单核细胞。使用商业上可获得的分离系统(Miltenyi Biotec 的 CliniMACS)通过使用 CD14 特异性免疫磁珠进行阳性选择来分离单核细胞。基本上同质的起始细胞群在封闭袋系统中与标准瓶培养系统平行培养,在粒细胞-巨噬细胞集落刺激因子和白细胞介素-4 的存在下。遗传修饰在第 4 天进行。第 5 天诱导成熟后,可在第 7 天收获成熟的 DC 并进行冷冻保存。在培养期间,使用流式细胞术、基因表达谱分析和功能测定进行比较质量控制。
培养瓶和培养袋都以相似的产量生成成熟的基因修饰 DC。表面膜标记物、表达谱和功能测试结果具有可比性。封闭袋系统的使用促进了基因修饰 DC 的临床应用。
基于聚烯烃袋的培养系统在质量和数量上都可与标准瓶制备相媲美。所有步骤,包括冷冻保存,都可以在封闭系统中进行,从而促进治疗细胞的标准化、安全和可重复制备。