Effect of unsaturated alkyl chains on transfection activity of poly(amidoamine) dendron-bearing lipids

In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as...

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Published inJournal of controlled release Vol. 160; no. 3; pp. 552 - 560
Main Authors Yuba, Eiji, Nakajima, Yosuke, Tsukamoto, Kota, Iwashita, Shinki, Kojima, Chie, Harada, Atsushi, Kono, Kenji
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier B.V 28.06.2012
Elsevier
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Online AccessGet full text
ISSN0168-3659
1873-4995
1873-4995
DOI10.1016/j.jconrel.2012.04.002

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Abstract In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C18, which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C18-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C18-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C18. The DL-G1-2C18-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C18. In addition, the DL-G1-2C18-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C18 did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C18-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C18-U2 might be promising as a potent gene vector. Dendron-based lipid having unsaturated bonds (DL-G1-U2) form the smaller complexes with pDNA and induce higher transgene expression than its counterpart lipid not having unsaturated bond (DL-G1). [Display omitted]
AbstractList In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C₁₈, which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C₁₈-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C₁₈-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C₁₈. The DL-G1-2C₁₈-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C₁₈. In addition, the DL-G1-2C₁₈-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C₁₈ did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C₁₈-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C₁₈-U2 might be promising as a potent gene vector.
In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C(18), which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C(18)-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C(18)-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C(18). The DL-G1-2C(18)-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C(18). In addition, the DL-G1-2C(18)-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C(18) did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C(18)-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C(18)-U2 might be promising as a potent gene vector.In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C(18), which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C(18)-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C(18)-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C(18). The DL-G1-2C(18)-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C(18). In addition, the DL-G1-2C(18)-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C(18) did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C(18)-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C(18)-U2 might be promising as a potent gene vector.
In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C18, which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C18-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C18-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C18. The DL-G1-2C18-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C18. In addition, the DL-G1-2C18-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C18 did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C18-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C18-U2 might be promising as a potent gene vector. Dendron-based lipid having unsaturated bonds (DL-G1-U2) form the smaller complexes with pDNA and induce higher transgene expression than its counterpart lipid not having unsaturated bond (DL-G1). [Display omitted]
In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity was affected by their structures, such as dendron generation and alkyl chain length. In this study, for improvement of their performance as gene vectors, we examined the effect of unsaturated chains of the dendron-bearing lipids using DL-G1-2C(18), which consists of PAMAM G1 dendron moiety and two octadecyl chains, and achieved the most efficient transfection activity among the dendron-bearing lipids having saturated alkyl chains, and DL-G1-2C(18)-U2, which consists of the same dendron-moiety and two octadecenyl chains. DL-G1-2C(18)-U2 showed a higher ability to form lipoplexes with plasmid DNA than DL-G1-2C(18). The DL-G1-2C(18)-U2 lipoplexes exhibited much smaller particle sizes than the DL-G1-2C(18). In addition, the DL-G1-2C(18)-U2 lipoplexes exhibited more efficient transfection of HeLa cells than DL-G1-2C(18) did. Results demonstrate the importance of unsaturated chains for the production of the dendron-bearing lipids having excellent gene transfection performance. Without the help of additional fusogenic lipids such as dioleoylphosphatidylethanolamine, DL-G1-2C(18)-U2 lipoplexes achieved the highly efficient transfection of the cells without marked cellular toxicity, in the presence of serum. Therefore, DL-G1-2C(18)-U2 might be promising as a potent gene vector.
Author Yuba, Eiji
Iwashita, Shinki
Kojima, Chie
Harada, Atsushi
Kono, Kenji
Nakajima, Yosuke
Tsukamoto, Kota
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  surname: Kono
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Issue 3
Keywords Unsaturated bond
Gene delivery
Poly(amidoamine) dendrimer
Transfection
Dendron-based lipid
Dendrimer
Pharmaceutical technology
Branched polymer
Lipids
Genetic transfer
Amidoamine polymer
Alkyl
Gene therapy
Dendritic structure
Language English
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Snippet In an earlier study, we developed a new type of gene vector using poly(amidoamine) (PAMAM) dendron-bearing lipids and reported that their transfection activity...
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SubjectTerms Biological and medical sciences
blood serum
Dendrimers - administration & dosage
Dendrimers - chemistry
Dendron-based lipid
DNA - administration & dosage
DNA - genetics
Gene delivery
General pharmacology
genes
Green Fluorescent Proteins - genetics
HeLa Cells
Humans
lipids
Liposomes
Luciferases - genetics
Medical sciences
Pharmaceutical technology. Pharmaceutical industry
Pharmacology. Drug treatments
Phosphatidylethanolamines - administration & dosage
Phosphatidylethanolamines - chemistry
Plasmids
Poly(amidoamine) dendrimer
Rhodamines - administration & dosage
Rhodamines - chemistry
toxicity
Transfection
Transfection - methods
Unsaturated bond
Title Effect of unsaturated alkyl chains on transfection activity of poly(amidoamine) dendron-bearing lipids
URI https://dx.doi.org/10.1016/j.jconrel.2012.04.002
https://www.ncbi.nlm.nih.gov/pubmed/22516096
https://www.proquest.com/docview/1020048539
https://www.proquest.com/docview/1686711779
Volume 160
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