Naill Michael C, Kolewe Martin E, Roberts Susan C
University of Massachusetts-Amherst, Department of Chemical Engineering, 686 North Pleasant Street, 159 Goessmann Laboratory, Amherst, MA 01003.
Biochem Eng J. 2012 Apr 15;63:50-56. doi: 10.1016/j.bej.2012.01.006. Epub 2012 Jan 29.
The transport of paclitaxel in Taxus canadensis suspension cultures was studied with a fluorescence analogue of paclitaxel (Flutax-2(®)) in combination with flow cytometry detection. Experiments were carried out using both isolated protoplasts and aggregated suspension cell cultures. Flutax-2(®) was shown to be greater than 90% stable in Taxus suspension cultures over the required incubation time (24 hours). Unlabeled paclitaxel was shown to inhibit the cellular uptake of Flutax-2(®), although structurally similar taxanes such as cephalomannine, baccatin III, and 10-deacetylbaccatin III did not inhibit Flutax-2(®) uptake. Saturation kinetics of Flutax-2(®) uptake was demonstrated. These results indicate the presence of a specific transport system for paclitaxel. Suspension cells elicited with methyl jasmonate accumulated 60% more Flutax-2(®) than unelicited cells, possibly due to an increased cellular storage capacity following methyl jasmonate elicitation. The presence of a specific mechanism for paclitaxel transport is an important first result that will provide the basis of more detailed studies as well as the development of targeted strategies for increased paclitaxel secretion to the extracellular medium.
利用紫杉醇的荧光类似物(Flutax-2(®))结合流式细胞术检测,研究了加拿大红豆杉悬浮培养物中紫杉醇的转运。使用分离的原生质体和聚集的悬浮细胞培养物进行了实验。结果表明,在所需的孵育时间(24小时)内,Flutax-2(®)在红豆杉悬浮培养物中的稳定性大于90%。未标记的紫杉醇可抑制Flutax-2(®)的细胞摄取,而结构相似的紫杉烷如三尖杉宁碱、浆果赤霉素III和10-去乙酰浆果赤霉素III则不抑制Flutax-2(®)的摄取。实验证明了Flutax-2(®)摄取的饱和动力学。这些结果表明存在一种特定的紫杉醇转运系统。用茉莉酸甲酯诱导的悬浮细胞比未诱导的细胞积累的Flutax-2(®)多60%,这可能是由于茉莉酸甲酯诱导后细胞储存能力增加所致。紫杉醇转运特定机制的存在是一个重要的初步结果,将为更详细的研究以及开发增加紫杉醇向细胞外培养基分泌的靶向策略提供基础。