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首页> 外文期刊>Separation and Purification Technology >Separation and purification of curcumin using novel aqueous two-phase micellar systems composed of amphiphilic copolymer and cholinium ionic liquids
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Separation and purification of curcumin using novel aqueous two-phase micellar systems composed of amphiphilic copolymer and cholinium ionic liquids

机译:用二亲子共聚物和硫醇离子液体组成的新型水性两相胶束系统的分离和纯化姜黄素

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摘要

Novel aqueous two-phase micellar systems (ATPMS) composed of Pluronic F68, a triblock amphiphilic copolymer, and cholinium-based ionic liquids (ILs) were formulated and applied for separation/purification of curcumin (CCM). CCM stability in the presence of ATPMS components was also evaluated. CCM is stable up to 24 h in copolymer (1.0 - 10.0 wt%) and ILs (0.1 - 3.0 M) aqueous solutions. Very mild phase separation conditions (close to room temperature) were achieved by adding cholinium ILs to the Pluronic F68 + Mcllvaine buffer at pH 6.0 solution. The decrease of cloud-point temperature is dependent on the relative hydrophobicity of IL anion, [Hex](-) > [But](-) > [Pro](-) > [Ac](-) > Cl-. ATPMS composed of more hydrophobic ILs ([Ch] [Hex] > [Ch] [But] > [Ch] [Pro]) are most efficient in the partition of commercial CCM into polymeric micelles (PMs)-rich phase. The best ATPMS (0.70 M [Ch] [But] and 0.60 M [Ch] [Hex]-based ATPMS) were then used to purify CCM from a crude extract of Curcuma longa L. Both systems were very selective to separate CCM from protein-based contaminants (selectivity values >= 25; purification yields >= 12-fold). Pluronic F68-based ATPMS are promising for selective separation of hydrophobic biomolecules by using cholinium-based ILs as adjuvants to adjust phase separation temperatures and biomolecules' partition.
机译:配制由Pluronic F68,三嵌段两亲性共聚物和基于硫醇类离子液体(ILS)组成的新型含水两相胶束系统(ATPMS)并施加姜黄素(CCM)的分离/纯化。还评估了ATPMS组分存在下的CCM稳定性。 CCM在共聚物(1.0-10-10wt%)和ILS(0.1-3.0M)水溶液中稳定24小时。通过将Cholinium ILS加入pH6.0溶液,通过向Pluronic F68 + Mcllvaine缓冲液加入Pluronic F68 + Mcllvaine缓冲液来实现非常轻微的相分离条件(接近室温)。浊点温度的降低取决于IL阴离子的相对疏水性,[六六角]( - )> [但]( - )> [AC]( - )> Cl-。由更多疏水性ILS([CH] [六六角]> [CH] [但]> [Pro])组成的ATPMs在商业CCM的分隔中最有效地在聚合物胶束(PMS) - 粒子相中。然后使用最佳的ATPMS(0.70μm[但]和0.60μm[克莱克] - 基于ATPMS)来纯化CCM,从Curcuma Longa L的粗提物中纯化CCM。两个系统都非常有选择,以分离来自蛋白质的CCM基于污染物(选择性值> = 25;纯化产率> = 12倍)。基于Pluronic F68的ATPMS是希望通过使用基于Cholinium的ILS作为佐剂来选择性分离疏水生物分子,以调节相分离温度和生物分子分配。

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