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评估通过聚酯毛细管通道聚合物纤维相上甘油辅助的疏水性相互作用色谱法在其纯化过程中囊泡的负载特性。

Evaluation of exosome loading characteristics in their purification via a glycerol-assisted hydrophobic interaction chromatography method on a polyester, capillary-channeled polymer fiber phase.

机构信息

Department of Chemistry, Biosystems Research Complex, Clemson University, Clemson, South Carolina, USA.

Department of Bioengineering, Life Sciences Facility, Clemson University, Clemson, South Carolina, USA.

出版信息

Biotechnol Prog. 2020 Sep;36(5):e2998. doi: 10.1002/btpr.2998. Epub 2020 May 2.

Abstract

Exosomes are membrane-secreted vesicles, with sizes ranging from 30 to 150 nm, which play key roles in intercellular communication. There is intense interest in developing methods to isolate and quantify exosomes toward clinical diagnostics, fundamental studies of intercellular processes, and use of exosomes as delivery vehicles for therapeutic agents. Current methods for exosomes isolation and quantification are time consuming and have operational high costs; few combine isolation and quantification into a singular operation unit. This report describes the use of hydrophobic interaction chromatography on a polyester capillary-channeled polymer fiber column, employing a step gradient for exosome elution, including use of glycerol as a solvent modifier. The entire procedure is completed in 8 min, while maintaining the structural integrity and biological activity of the isolated exosomes. Electron microscopy was used to verify the size and structural fidelity of single exosomes. Absorbance response curves for a commercial exosome sample were used for exosome quantification in the chromatographic separations. In order to determine the dynamic loading capacity for exosomes, different volumes of Dictyostelium discoideum cell culture milieu supernatant were loaded at different column lengths (5-30 cm) and loading flow rates (0.2-0.5 ml/min). A loading capacity of 5.4 × 10 exosomes derived from D. discoideum milieu was obtained on a 0.8 × 300 mm column; yielding recoveries of over 80%. It is believed that this isolation and purification strategy holds many advantages toward the use of exosomes across a wide breadth of medical and biotechnology applications.

摘要

外泌体是一种膜分泌的小泡,大小在 30 至 150nm 之间,在细胞间通讯中发挥着关键作用。目前人们非常热衷于开发分离和定量外泌体的方法,以用于临床诊断、细胞间过程的基础研究以及将外泌体用作治疗剂的递药载体。目前外泌体的分离和定量方法既费时又费操作成本高;很少有方法将分离和定量结合到一个单一的操作单元中。本报告介绍了在聚酯毛细管通道聚合物纤维柱上利用疏水性相互作用色谱法,采用洗脱的阶跃梯度,包括使用甘油作为溶剂改性剂来分离和定量外泌体。整个过程在 8 分钟内完成,同时保持分离出的外泌体的结构完整性和生物活性。电子显微镜用于验证单个外泌体的大小和结构保真度。使用商业外泌体样品的吸光度响应曲线用于色谱分离中外泌体的定量。为了确定外泌体的动态负载容量,在不同的柱长(5-30cm)和加载流速(0.2-0.5ml/min)下,将不同体积的粘菌细胞培养上清液加载到柱子上。在 0.8×300mm 的柱子上,从粘菌培养基中获得了 5.4×10 个外泌体的负载容量;回收率超过 80%。据信,这种分离和纯化策略在广泛的医学和生物技术应用中外泌体的使用方面具有许多优势。

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