Literature DB >> 30959238

Cyclodextrin-membrane interaction in drug delivery and membrane structure maintenance.

Zahraa Hammoud1, Nathalie Khreich2, Lizette Auezova2, Sophie Fourmentin3, Abdelhamid Elaissari4, Hélène Greige-Gerges5.   

Abstract

Cyclodextrins (CDs) are cyclic oligosaccharides able to improve drug water solubility and stability by forming CD/drug inclusion complexes. To further increase drug entrapment and delay its release, the CD/drug inclusion complex can be embedded in the aqueous phase of a liposome, a lipid vesicle composed of phospholipid bilayer surrounding an aqueous compartment. The resulting carrier is known as drug-in-cyclodextrin-in-liposome (DCL) system. CDs and DCLs are recognized as effective drug delivery systems; therefore, understanding the interaction of CDs with liposomal and biological membranes is of great importance. CDs are able to extract phospholipids, cholesterol, and proteins from membranes; the effect depends on the membrane structure and composition as well as on the CD type and concentration. Under definite conditions, CDs can affect the membrane fluidity, permeability, and stability of liposomes and cells, leading to the leakage of some of their internal constituents. On the other side, CDs demonstrated their beneficial effects on the membrane structure, including preservation of the membrane integrity during freeze-drying. In this paper, we review the literature concerning the interaction of CDs with biomimetic and biological membranes. Moreover, the impact of CDs on the membrane properties, mainly fluidity, stability, and permeability, is highlighted.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cholesterol; Cyclodextrin; Liposome; Membrane; Phospholipid

Mesh:

Substances:

Year:  2019        PMID: 30959238     DOI: 10.1016/j.ijpharm.2019.03.063

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  12 in total

1.  Aerosolization Performance, Antitussive Effect and Local Toxicity of Naringenin-Hydroxypropyl-β-Cyclodextrin Inhalation Solution for Pulmonary Delivery.

Authors:  Minyi Guan; Xuan Zeng; Rui Shi; Yuying Zheng; Weiyang Fan; Weiwei Su
Journal:  AAPS PharmSciTech       Date:  2021-01-03       Impact factor: 3.246

2.  Comparing deep eutectic solvents and cyclodextrin complexes as curcumin vehicles for blue-light antimicrobial photodynamic therapy approaches.

Authors:  Eduardo Silva; Ivo M Aroso; Joana M Silva; Rui L Reis
Journal:  Photochem Photobiol Sci       Date:  2022-04-02       Impact factor: 4.328

3.  PLGA Nanoparticle Platform for Trans-Ocular Barrier to Enhance Drug Delivery: A Comparative Study Based on the Application of Oligosaccharides in the Outer Membrane of Carriers.

Authors:  Ge Jiang; Huanhuan Jia; Jindi Qiu; Junfeng Ban; Zhenjie Mo; Yifeng Wen; Yan Zhang; Yuqin Wen; Qingchun Xie; Zhufen Lu; Yanzhong Chen; Hao Wu; Qingchun Ni; Fohua Chen; Jiashu Lu; Zhijiong Wang; Haoting Li; Junming Chen
Journal:  Int J Nanomedicine       Date:  2020-11-24

4.  Hydroxy-Propil-β-Cyclodextrin Inclusion Complexes of two Biphenylnicotinamide Derivatives: Formulation and Anti-Proliferative Activity Evaluation in Pancreatic Cancer Cell Models.

Authors:  Rosa Maria Iacobazzi; Annalisa Cutrignelli; Angela Stefanachi; Letizia Porcelli; Angela Assunta Lopedota; Roberta Di Fonte; Antonio Lopalco; Simona Serratì; Valentino Laquintana; Nicola Silvestris; Massimo Franco; Saverio Cellamare; Francesco Leonetti; Amalia Azzariti; Nunzio Denora
Journal:  Int J Mol Sci       Date:  2020-09-07       Impact factor: 5.923

5.  Investigation of the Cellular Effects of Beta- Cyclodextrin Derivatives on Caco-2 Intestinal Epithelial Cells.

Authors:  Ágnes Rusznyák; Milo Malanga; Éva Fenyvesi; Lajos Szente; Judit Váradi; Ildikó Bácskay; Miklós Vecsernyés; Gábor Vasvári; Ádám Haimhoffer; Pálma Fehér; Zoltán Ujhelyi; Béla Nagy; Zsolt Fejes; Ferenc Fenyvesi
Journal:  Pharmaceutics       Date:  2021-01-25       Impact factor: 6.321

6.  Encapsulation of α-Pinene in Delivery Systems Based on Liposomes and Cyclodextrins.

Authors:  Zahraa Hammoud; Maya Kayouka; Adriana Trifan; Elwira Sieniawska; Jouda Mediouni Ben Jemâa; Abdelhamid Elaissari; Hélène Greige-Gerges
Journal:  Molecules       Date:  2021-11-12       Impact factor: 4.411

7.  Delivery of Alpha-Mangostin Using Cyclodextrins through a Biological Membrane: Molecular Dynamics Simulation.

Authors:  Wiparat Hotarat; Bodee Nutho; Peter Wolschann; Thanyada Rungrotmongkol; Supot Hannongbua
Journal:  Molecules       Date:  2020-05-29       Impact factor: 4.411

8.  The Budesonide-Hydroxypropyl-β-Cyclodextrin Complex Attenuates ROS Generation, IL-8 Release and Cell Death Induced by Oxidant and Inflammatory Stress. Study on A549 and A-THP-1 Cells.

Authors:  Jules César Bayiha; Brigitte Evrard; Didier Cataldo; Pascal De Tullio; Marie-Paule Mingeot-Leclercq
Journal:  Molecules       Date:  2020-10-22       Impact factor: 4.411

9.  Enrofloxacin/florfenicol loaded cyclodextrin metal-organic-framework for drug delivery and controlled release.

Authors:  Yucai Wei; Chaoxi Chen; Shuo Zhai; Min Tan; Juebo Zhao; Xiaowen Zhu; Lu Wang; Qun Liu; Tao Dai
Journal:  Drug Deliv       Date:  2021-12       Impact factor: 6.419

Review 10.  Cyclodextrin-based Pickering emulsions: functional properties and drug delivery applications.

Authors:  Mario Jug; Bo Kyeong Yoon; Joshua A Jackman
Journal:  J Incl Phenom Macrocycl Chem       Date:  2021-08-03       Impact factor: 1.633

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