Stefansson Steingrimur, Adams Daniel L, Ershler William B, Le Huyen, Ho David H
HeMemics Biotechnologies Inc., 12111 Parklawn Drive, Rockville, MD, 20852, USA.
Creatv MicroTech, Inc., 1 Deer Park Dr., Monmouth Junction, NJ, 08852, USA.
BMC Cancer. 2016 May 6;16:300. doi: 10.1186/s12885-016-2330-1.
Circulating tumor cells (CTCs) are typically collected into CellSave fixative tubes, which kills the cells, but preserves their morphology. Currently, the clinical utility of CTCs is mostly limited to their enumeration. More detailed investigation of CTC biology can be performed on live cells, but obtaining live CTCs is technically challenging, requiring blood collection into biocompatible solutions and rapid isolation which limits transportation options. To overcome the instability of CTCs, we formulated a sugar based cell transportation solution (SBTS) that stabilizes cell viability at ambient temperature. In this study we examined the long term viability of human cancer cell lines, primary cells and CTCs in human blood samples in the SBTS for transportation purposes.
Four cell lines, 5 primary human cells and purified human PBMCs were tested to determine the viability of cells stored in the transportation solution at ambient temperature for up to 7 days. We then demonstrated viability of MCF-7 cells spiked into normal blood with SBTS and stored for up to 7 days. A pilot study was then run on blood samples from 3 patients with metastatic malignancies stored with or without SBTS for 6 days. CTCs were then purified by Ficoll separation/microfilter isolation and identified using CTC markers. Cell viability was assessed using trypan blue or CellTracker™ live cell stain.
Our results suggest that primary/immortalized cell lines stored in SBTS remain ~90% viable for > 72 h. Further, MCF-7 cells spiked into whole blood remain viable when stored with SBTS for up to 7 days. Finally, live CTCs were isolated from cancer patient blood samples kept in SBTS at ambient temperature for 6 days. No CTCs were isolated from blood samples stored without SBTS.
In this proof of principle pilot study we show that viability of cell lines is preserved for days using SBTS. Further, this solution can be used to store patient derived blood samples for eventual isolation of viable CTCs after days of storage. Therefore, we suggest an effective and economical transportation of cancer patient blood samples containing live CTCs can be achieved.
循环肿瘤细胞(CTC)通常收集到CellSave固定管中,该管会杀死细胞,但保留其形态。目前,CTC的临床应用大多局限于其计数。对CTC生物学特性进行更详细的研究可在活细胞上进行,但获取活的CTC在技术上具有挑战性,需要将血液收集到生物相容性溶液中并进行快速分离,这限制了运输选择。为克服CTC的不稳定性,我们配制了一种基于糖的细胞运输溶液(SBTS),该溶液可在环境温度下稳定细胞活力。在本研究中,我们检测了人癌细胞系、原代细胞以及人血样本中的CTC在SBTS中用于运输目的时的长期活力。
测试了四种细胞系、5种原代人细胞和纯化的人外周血单核细胞(PBMC),以确定储存在运输溶液中的细胞在环境温度下长达7天的活力。然后,我们证明了用SBTS掺入正常血液中的MCF-7细胞的活力,并储存长达7天。随后对3例转移性恶性肿瘤患者的血样进行了一项初步研究,血样分别在有或无SBTS的情况下储存6天。然后通过Ficoll分离/微滤分离纯化CTC,并使用CTC标记物进行鉴定。使用台盼蓝或CellTracker™活细胞染色评估细胞活力。
我们的结果表明,储存在SBTS中的原代/永生化细胞系在超过72小时内仍保持约90%的活力。此外,掺入全血中的MCF-7细胞与SBTS一起储存长达7天时仍保持活力。最后,从在环境温度下于SBTS中保存6天的癌症患者血样中分离出活的CTC。未从无SBTS储存的血样中分离出CTC。
在这项原理验证性初步研究中,我们表明使用SBTS可使细胞系的活力保持数天。此外,该溶液可用于储存患者来源的血样,以便在储存数天后最终分离出活的CTC。因此,我们认为可以实现对含有活CTC的癌症患者血样进行有效且经济的运输。