Open Access
Open access
volume 15 issue 1 pages 7-27

Сationic liposomes as delivery systems for nucleic acids

Publication typeJournal Article
Publication date2020-03-21
scimago Q4
SJR0.214
CiteScore1.5
Impact factor
ISSN24106593, 26867575
Anesthesiology and Pain Medicine
Abstract

Objectives. Gene therapy is based on the introduction of genetic material into cells, tissues, or organs for the treatment of hereditary or acquired diseases. A key factor in the success of gene therapy is the development of delivery systems that can efficiently transfer genetic material to the place of their therapeutic action without causing any associated side effects. Over the past 10 years, significant effort has been directed toward creating more efficient and biocompatible vectors capable of transferring nucleic acids (NAs) into cells without inducing an immune response. Cationic liposomes are among the most versatile tools for delivering NAs into cells; however, the use of liposomes for gene therapy is limited by their low specificity. This is due to the presence of various biological barriers to the complex of liposomes with NA, including instability in biological fluids, interaction with serum proteins, plasma and nuclear membranes, and endosomal degradation. This review summarizes the results of research in recent years on the development of cationic liposomes that are effective in vitro and in vivo. Particular attention is paid to the individual structural elements of cationic liposomes that determine the transfection efficiency and cytotoxicity. The purpose of this review was to provide a theoretical justification of the most promising choice of cationic liposomes for the delivery of NAs into eukaryotic cells and study the effect of the composition of cationic lipids (CLs) on the transfection efficiency in vitro.

Results. As a result of the analysis of the related literature, it can be argued that one of the most promising delivery systems of NAs is CL based on cholesterol and spermine with the addition of a helper lipid DOPE. In addition, it was found that varying the composition of cationic liposomes, the ratio of CL to NA, or the size and zeta potential of liposomes has a significant effect on the transfection efficiency.

Conclusions. Further studies in this direction should include optimization of the conditions for obtaining cationic liposomes, taking into account the physicochemical properties and established laws. It is necessary to identify mechanisms that increase the efficiency of NA delivery in vitro by searching for optimal structures of cationic liposomes, determining the ratio of lipoplex components, and studying the delivery efficiency and properties of multicomponent liposomes.

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GOST Copy
Mikheev A. A. et al. Сationic liposomes as delivery systems for nucleic acids // Fine Chemical Technologies. 2020. Vol. 15. No. 1. pp. 7-27.
GOST all authors (up to 50) Copy
Mikheev A. A., Shmendel E., Zhestovskaya E. S., Nazarov I. V., Maslov M. Сationic liposomes as delivery systems for nucleic acids // Fine Chemical Technologies. 2020. Vol. 15. No. 1. pp. 7-27.
RIS |
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RIS Copy
TY - JOUR
DO - 10.32362/2410-6593-2020-15-1-7-27
UR - https://www.finechem-mirea.ru/jour/article/view/1582
TI - Сationic liposomes as delivery systems for nucleic acids
T2 - Fine Chemical Technologies
AU - Mikheev, A A
AU - Shmendel, Elena
AU - Zhestovskaya, E S
AU - Nazarov, Ivan V
AU - Maslov, Michael
PY - 2020
DA - 2020/03/21
PB - RTU MIREA
SP - 7-27
IS - 1
VL - 15
SN - 2410-6593
SN - 2686-7575
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2020_Mikheev,
author = {A A Mikheev and Elena Shmendel and E S Zhestovskaya and Ivan V Nazarov and Michael Maslov},
title = {Сationic liposomes as delivery systems for nucleic acids},
journal = {Fine Chemical Technologies},
year = {2020},
volume = {15},
publisher = {RTU MIREA},
month = {mar},
url = {https://www.finechem-mirea.ru/jour/article/view/1582},
number = {1},
pages = {7--27},
doi = {10.32362/2410-6593-2020-15-1-7-27}
}
MLA
Cite this
MLA Copy
Mikheev, A. A., et al. “Сationic liposomes as delivery systems for nucleic acids.” Fine Chemical Technologies, vol. 15, no. 1, Mar. 2020, pp. 7-27. https://www.finechem-mirea.ru/jour/article/view/1582.