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基于文丘里效应的超临界溶液快速膨胀法(Vent-RESS):用于pH触发释放亲水性和亲脂性生物活性物质的脂质体的合成

Venturi-based rapid expansion of supercritical solution (Vent-RESS): synthesis of liposomes for pH-triggered delivery of hydrophilic and lipophilic bioactives.

作者信息

Jash Apratim, Krueger Amy, Rizvi Syed S H

机构信息

Department of Food Science, Cornell University, Ithaca, NY 14850, USA.

School of Chemical and Biomolecular Engineering, Cornell University, Ithaca NY 14850, USA.

出版信息

Green Chem. 2022 Jul 7;24(13):5326-5337. doi: 10.1039/d2gc00877g. Epub 2022 Jun 9.

Abstract

Multivitamin-loaded and surface-modified liposomes tailored for simultaneous intestinal delivery of both lipophilic and hydrophilic bioactives were synthesized from sunflower phosphatidylcholine (SFPC). Liposomes (SL) were generated with the aid of a novel, organic solvent free, and environmentally benign process which utilizes venturi-based rapid expansion of supercritical solution (Vent-RESS). Vitamins E and C were used as model lipophilic and hydrophilic bioactives and demonstrated an average encapsulation efficiency of 92 and 70 %, respectively. Synthesized liposomes were coated with a pH-responsive double-wall of chitosan and β-lactoglobulin (βlg-Cs-SL) to develop a biocompatible vehicle for pH-triggered delivery of bioactive cargo(s). To compare the efficacy of this newly developed dual-coating, SL was also coated with a commercially available pH responsive polymer, Eudragit S100 (Eu-SL). No organic solvent was used during the surface coating of SLs with these two different types of enteric coatings. The performance of these two coatings was studied by conducting morphological characterization through diameter and ζ-potential measurements along with confocal laser scanning and freeze-fracture cryogenic scanning electron microscopies. The stability of coated and uncoated SFPC liposomes was determined in simulated gastrointestinal fluids. For βlg-Cs-SL and Eu-SL, after 2 h of incubation in simulated gastric condition, less than 5 % of the encapsulated vitamins C and E were released, whereas for SL, 41 and 28 % of vitamins C and E were released within 2 h of incubation period. In simulated intestinal fluid, coated liposomes released most of their remaining payload when incubated for 4 h. The newly developed dual coating was found to be as effective as its commercially available counterpart, Eudragit S100 coating; nevertheless, the biocompatible, non-toxic, and non-synthetic nature of this coating makes it an attractive alternative. Modeling the release kinetics of vitamins from coated liposome showed that the release of payload from surface coated liposomes proceeded through a multistep structural disintegration involving both Fickian and non-Fickian types of diffusion. The ability of these surface-coated liposomes to maintain structural integrity under the gastric condition followed by site-specific, pH-triggered release of encapsulated cargo in the intestine will make them highly suitable for oral administration of bioactive compounds in pharmaceutical and food applications.

摘要

采用向日葵磷脂酰胆碱(SFPC)合成了负载多种维生素且表面改性的脂质体,旨在同时实现亲脂性和亲水性生物活性物质的肠道递送。脂质体(SL)借助一种新型、无有机溶剂且环境友好的工艺制备而成,该工艺利用基于文丘里效应的超临界溶液快速膨胀法(Vent-RESS)。维生素E和维生素C被用作亲脂性和亲水性生物活性物质的模型,其平均包封率分别为92%和70%。合成的脂质体用壳聚糖和β-乳球蛋白的pH响应性双层进行包被(βlg-Cs-SL),以开发一种用于生物活性物质pH触发递送的生物相容性载体。为了比较这种新开发的双层包被的效果,SL还用市售的pH响应性聚合物Eudragit S100进行包被(Eu-SL)。在用这两种不同类型的肠溶衣对SL进行表面包被过程中未使用有机溶剂。通过直径和ζ电位测量以及共聚焦激光扫描和冷冻断裂低温扫描电子显微镜进行形态表征,研究了这两种包被的性能。在模拟胃肠液中测定了包被和未包被的SFPC脂质体的稳定性。对于βlg-Cs-SL和Eu-SL,在模拟胃液中孵育2小时后,包封的维生素C和维生素E释放量不到5%,而对于SL,在孵育2小时内维生素C和维生素E的释放量分别为41%和28%。在模拟肠液中,包被的脂质体在孵育4小时后释放了大部分剩余的负载物。发现新开发的双层包被与其市售对应物Eudragit S100包被一样有效;然而,这种包被的生物相容性、无毒和非合成性质使其成为一种有吸引力的替代品。对包被脂质体中维生素的释放动力学进行建模表明,表面包被脂质体中负载物的释放通过涉及菲克扩散和非菲克扩散类型的多步结构崩解进行。这些表面包被的脂质体在胃部条件下保持结构完整性,随后在肠道中实现特定部位、pH触发的包封货物释放的能力,将使其非常适合在制药和食品应用中口服生物活性化合物。

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