JOURNAL OF LIGHT INDUSTRY

CN 41-1437/TS  ISSN 2096-1553

Volume 38 Issue 2
April 2023
Article Contents
DENG Limei, LIU Yujia, ZHU Jie and et al. Effect of sterol molecular difference on the structural stability of liposomes[J]. Journal of Light Industry, 2023, 38(2): 33-40. doi: 10.12187/2023.02.004
Citation: DENG Limei, LIU Yujia, ZHU Jie and et al. Effect of sterol molecular difference on the structural stability of liposomes[J]. Journal of Light Industry, 2023, 38(2): 33-40. doi: 10.12187/2023.02.004 shu

Effect of sterol molecular difference on the structural stability of liposomes

  • Received Date: 2022-02-27
  • Liposomes were prepared by ethanol injection combined with dynamic high-pressure microfluidic technology. The effects of different sterol molecular, including cholesterol, β-sitosterol and stigmasterol, on the membrane structural stability of liposome were compared. The results showed that the addition of β-sitosterol and stigmasterol increased the particle size of liposomes from (48.35±0.41) nm to (106.27±0.90) nm and (107.27±0.59) nm, respectively, and the Zeta potential remained unchanged at about -30 mV. Electron microscopy showed that the lipid containing sterol formed stable bilayer structure of phospholipid. The salt stability and pH stability had been enhanced, but temperature stability had no significant change. The addition of β-sitosterol and stigmasterol reduced the micropolarity, hydrophobicity and fluidity of liposome membrane, resulting in a tighter phospholipid bimolecular membrane structure in liposomes.
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    1. [1]

      AKHAVAN S,ASSADPOUR E,KATOUZIAN I,et al.Lipid nano scale cargos for the protection and delivery of food bioactive ingredients and nutraceuticals[J].Trends in Food Science & Technology,2018,74:132-146.

    2. [2]

      SUBRAMANI T,GANAPATHYSWAMY H.An overview of liposomal nano-encapsulation techniques and its applications in food and nutraceutical[J].Journal of Food Science and Technology,2020,57(10):3545-3555.

    3. [3]

      ISLAM SHISHIR M R,KARIM N,GOWD V,et al.Liposomal delivery of natural product:A promising approach in health research[J].Trends in Food Science & Technology,2019,85:177-200.

    4. [4]

      AKGÜN D,GÜLTEKIN-ÖZGÜVEN M,YÜCETEPE A,et al.Stirred-type yoghurt incorporated with sour cherry extract in chitosan-coated liposomes[J].Food Hydrocolloids,2020,101:105532.

    5. [5]

      KARIMI N,GHANBARZADEH B,HAJIBONABI F,et al.Turmeric extract loaded nanoliposome as a potential antioxidant and antimicrobial nanocarrier for food applications[J].Food Bioscience,2019,29:110-117.

    6. [6]

      CUI H Y,YUAN L,LI W,et al.Antioxidant property of SiO2-eugenol liposome loaded nanofibrous membranes on beef[J].Food Packaging and Shelf Life,2017,11:49-57.

    7. [7]

      DIDAR Z.Enrichment of dark chocolate with vitamin D3 (free or liposome) and assessment quality parameters[J]. Journal of Food Science and Technology,2021,58(8):3065-3072.

    8. [8]

      GULZAR S,BENJAKUL S.Characteristics and storage stability of nanoliposomes loaded with shrimp oil as affected by ultrasonication and microfluidization[J].Food Chemistry,2020,310:125916.

    9. [9]

      BELTRÁN J D,RICAURTE L,ESTRADA K B,et al.Effect of homogenization methods on the physical stability of nutrition grade nanoliposomes used for encapsulating high oleic palm oil[J].LWT-Food Science and Technology,2020,118:108801.

    10. [10]

      LI Z L,PENG S F,CHEN X,et al.Effect of dynamic high pressure microfluidization on structure and stability of pluronic F127 modified liposomes[J]. Journal of Dispersion Science and Technology,2019,40(7):982-989.

    11. [11]

      ALEXANDER M,ACERO LOPEZ A,FANG Y,et al.Incorporation of phytosterols in soy phospholipids nanoliposomes:Encapsulation efficiency and stability[J].LWT-Food Science and Technology,2012,47(2):427-436.

    12. [12]

      SARABANDI K,JAFARI S M.Effect of chitosan coating on the properties of nanoliposomes loaded with flaxseed-peptide fractions:Stability during spray-drying[J].Food Chemistry,2020,310:125951.

    13. [13]

      LI Z L,PENG S F,CHEN X,et al.Pluronics modified liposomes for curcumin encapsulation: Sustained release, stability and bioaccessibility[J].Food Research International,2018,108:246-253.

    14. [14]

      CADDEO C,PUCCI L,GABRIELE M,et al.Stability, biocompatibility and antioxidant activity of PEG-modified liposomes containing resveratrol[J].International Journal of Pharmaceutics,2018,538(1/2):40-47.

    15. [15]

      WANG Q,PAN M H,CHIOU Y S,et al.Mechanistic understanding of the effects of ovalbumin-nanoliposome interactions on ovalbumin emulsifying properties[J].LWT-Food Science and Technology,2022,157:113067.

    16. [16]

      LIU W L,HOU Y Y,JIN Y Y,et al.Research progress on liposomes:Application in food, digestion behavior and absorption mechanism[J].Trends in Food Science & Technology,2020,104:177-189.

    17. [17]

      SUI W H,LI H S,YANG Y L,et al.Bladder drug mirabegron exacerbates atherosclerosis through activation of brown fat-mediated lipolysis[J]. Proceedings of the National Academy of Sciences,2019,116(22):10937-10942.

    18. [18]

      BABU S,JAYARAMAN S.An update on β-sitosterol: A potential herbal nutraceutical for diabetic management[J].Biomedicine & Pharmacotherapy,2020,131:110702.

    19. [19]

      TAI K D,RAPPOLT M,MAO L K,et al.Stability and release performance of curcumin-loaded liposomes with varying content of hydrogenated phospholipids[J].Food Chemistry,2020,326:126973.

    20. [20]

      TAI K D,RAPPOLT M,HE X Y,et al.Effect of β-sitosterol on the curcumin-loaded liposomes:Vesicle characteristics,physicochemical stability,in vitro release and bioavailability[J].Food Chemistry,2019,293:92-102.

    21. [21]

      TAI K D,LIU F G,HE X Y,et al.The effect of sterol derivatives on properties of soybean and egg yolk lecithin liposomes: Stability,structure and membrane characteristics[J].Food Research International,2018,109:24-34.

    22. [22]

      杨贝贝,曹栋,耿亚男,等.植物甾醇与胆固醇对脂质体膜性质的影响[J].食品工业科技,2013,34(7):77-81.

    23. [23]

      黎雨浩,李照莹,周伟,等.火龙果茎植物甾醇对姜黄素纳米脂质体稳定性以及释放性能的影响[J].食品科学,2020,41(16):68-76.

    24. [24]

      MORINI M A,SIERRA M B,PEDRONI V I,et al.Influence of temperature,anions and size distribution on the zeta potential of DMPC,DPPC and DMPE lipid vesicles[J].Colloids and Surfaces B(Biointerfaces),2015,131:54-58.

    25. [25]

      HURJUI I,NEAMTU A,DOROHOI D O.The interaction of fluorescent DPH probes with unsaturated phospholipid membranes: A molecular dynamics study[J].Journal of Molecular Structure,2013,1044:134-139.

    26. [26]

      SILVA C,ARANDA F J,ORTIZ A,et al.Molecular aspects of the interaction between plants sterols and DPPC bilayers:An experimental and theoretical approach[J].Journal of Colloid and Interface Science,2011,358(1):192-201.

    27. [27]

      FAN R,GAN L,LIU M,et al.An interaction of helicid with liposome biomembrane[J].Applied Surface Science,2011,257(6):2102-2106.

    28. [28]

      MAZOR S,VANOUNOU S,FISHOV I.Pyrene as a membrane depth gauge:Wavelength selective fluorescence approach to monitor pyrene localizations in the membrane[J].Chemistry and Physics of Lipids,2012,165(1):125-131.

    29. [29]

      PAN L,LI H,HOU L F,et al.Gastrointestinal digestive fate of whey protein isolate coated liposomes loading astaxanthin:Lipolysis,release,and bioaccessibility[J].Food Bioscience,2022,45:101464.

    30. [30]

      MOURITSEN O G.Lipids,curvature, and nano-medicine[J].European Journal of Lipid Science and Technology,2011,113(10):1174-1187.

    31. [31]

      SMITH M C,CRIST R M,CLOGSTON J D,et al.Zeta potential:A case study of cationic, anionic, and neutral liposomes[J].Analytical and Bioanalytical Chemistry,2017,409(24):5779-5787.

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