4.7 Article

Glycyrrhetinic acid proliposomes mediated by mannosylated ligand: Preparation, physicochemical characterization, environmental stability and bioactivity evaluation

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ELSEVIER
DOI: 10.1016/j.colsurfb.2022.112781

关键词

Glycyrrhetinic acid proliposomes; Mannosylated ligand; Lyophilization; Stability assay; Bioactivity evaluation

资金

  1. Science and Technology Project of Jiangmen City [2020JC01002, 2020JC01030, 2021030102600004808]
  2. Project of Doctoral Research Initiation in Wuyi University [5041700109]
  3. Project of Research Start-up Fees for High-Level Talent in Wuyi University [2017RC06]
  4. Project of Youth Research Fund in Wuyi University [2019td02]
  5. Project of Innovative and Entrepre-neurship for College Students in Wuyi University [20211349295, 202111349305, 2019CX13]

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Glycyrrhetinic acid proliposomes mediated mannosylated ligand (MDC-GA-PL) were successfully prepared and characterized in terms of physicochemical properties, environmental stability and bioactivity. The results showed that the proliposomes exhibited good dispersibility and stability, and had a desirable effect on liver target.
Glycyrrhetinic acid is a bioactive compound extracted from licorice that exhibits inhibition effect on various cancers. However, its hydrophobicity results in low bioavailability that limits application. We aim to overcome this barrier, the present research was performed to prepare glycyrrhetinic acid proliposomes mediated man-nosylated ligand (mannose-diester lauric diacid-cholesterol, MDC) and to evaluate its physicochemical charac-terizations, environmental stability and bioactivity. In preliminary optimization studies of glycyrrhetinic acid proliposomes mediated MDC (MDC-GA-PL), four optimum operating parameters, cryoprotectant of glucose and mannitol, the mixed cryoprotectant ratio (glucose/mannitol) of 1:1, a cryoprotectant/egg phosphatidylcholine mass ratio of 10/1, and ???60 ??C pre-freezing temperature, were obtained after investigation. Under the optimum lyophilization conditions, MDC-GA-PL was freeze-dried and reconstituted proliposomes were characterized. These proliposomes showed that MDC-GA-PL were well-dispersible spherical particles with an average particle size of 120.80 nm, a polydispersity index about 0.095, a zeta potential of-33.15 mV, encapsulation efficiency of 85.9% and drug loading of 6.38%. In vitro drug release study showed that glycyrrhetinic acid release of MDC-GA-PL conforms to the Higuchi release model. In addition, these proliposomes were stable during six months at 4 ??C. Moreover, acute toxicity assay revealed no substantial safety concern for MDC-GA-PL. Finally, in vitro bioactivity of proliposomes was evaluated. Cytotoxicity effect and apoptosis efficiency of MDC-GA-PL by HepG2 cells was significantly higher than that of glycyrrhetinic acid proliposomes without MDC, demonstrating that MDC has a desirable effect on liver target. Overall, we have reason to believe that MDC-GA-PL would be a promising target delivery to improve therapeutic against hepatic diseases.

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