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天然深共晶溶剂对生物活性天然产物的影响:水凝胶模型与五味子代谢物相互作用的研究。

The influence of natural deep eutectic solvents on bioactive natural products: studying interactions between a hydrogel model and Schisandra chinensis metabolites.

机构信息

Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois at Chicago, Chicago, IL 60612, USA.

Department of Biopharmaceutical Sciences, College of Pharmacy, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

Fitoterapia. 2018 Jun;127:212-219. doi: 10.1016/j.fitote.2018.02.024. Epub 2018 Feb 21.

Abstract

Natural Deep Eutectic Solvent (NADES) species can exhibit unexpected solubilizing power for lipophilic molecules despite their simple composition: hydrophilic organic molecules and water. In the present study, the unique properties of NADES species were applied in combination with a model polymer system: a hydrophilic chitosan/alginate hydrogel. Briefly, NADES species (e.g., mannose-dimethylurea-water, 2:5:5, mole/mole) formed matrices to 1) dissolve lipophilic molecules (e.g., curcumin), 2) load lipophilic molecule(s) into the hydrogel, and 3) spontaneously vacate from the system. NADES species ubiquitously occur in natural sources, and a crude extract is a mixture of the NADES species and bioactive metabolites. Based on these ideas, we hypothesized that the crude extract may also allow the loading of natural bioactive molecules from a natural NADES species into (bio)hydrogel systems. To evaluate this hypothesis in vitro, Schisandra chinensis fruit extract was chosen as a representative mixture of lipophilic botanical molecules and hydrophilic NADES species. The results showed that the NADES matrix of S. chinensis was capable of loading at least three bioactive lignans (i.e., gomisin A, gomisin J, and angeloylgomisin H) into the polymer system. The lipophilic metabolites can subsequently be released from the hydrogel. The outcomes suggest that a unique drug delivery mechanism may exist in nature, thereby potentially improving the bioavailability of lipophilic metabolites through physicochemical interactions with the NADES.

摘要

天然深共晶溶剂 (NADES) 尽管组成简单,即亲水性有机分子和水,但仍能表现出对亲脂性分子出乎意料的溶解能力。在本研究中,将 NADES 物种的独特性质与模型聚合物系统(亲水性壳聚糖/海藻酸盐水凝胶)结合使用。简而言之,NADES 物种(例如,甘露糖-二甲基脲-水,2:5:5,摩尔/摩尔)形成基质以 1)溶解亲脂性分子(例如姜黄素),2)将亲脂性分子负载到水凝胶中,和 3)自发从系统中排空。NADES 物种普遍存在于天然来源中,粗提物是 NADES 物种和生物活性代谢物的混合物。基于这些想法,我们假设粗提物也可能允许将天然生物活性分子从天然 NADES 物种加载到(生物)水凝胶系统中。为了在体外评估该假设,选择五味子果实提取物作为亲脂性植物分子和亲水性 NADES 物种的代表性混合物。结果表明,五味子的 NADES 基质能够将至少三种生物活性木脂素(即,五味子甲素、五味子 J 和当归酰戈米辛 H)加载到聚合物系统中。亲脂性代谢物随后可以从水凝胶中释放出来。结果表明,自然界中可能存在独特的药物传递机制,从而通过与 NADES 的物理化学相互作用,潜在地提高亲脂性代谢物的生物利用度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2977/5984185/70f0a694a444/nihms958274f1.jpg

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