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Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections

[Image: see text] Cationic lipid-guided nucleic acid delivery holds great promise in gene therapy and genome-editing applications for treating genetic diseases. However, the major challenge lies in achieving therapeutically relevant efficiencies. Prior findings, including our own, demonstrated that...

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Autores principales: Dharmalingam, Priya, Rachamalla, Hari Krishna R., Lohchania, Brijesh, Bandlamudi, Bhanuprasad, Thangavel, Saravanabhavan, Murugesan, Mohankumar K., Banerjee, Rajkumar, Chaudhuri, Arabinda, Voshavar, Chandrashekhar, Marepally, Srujan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044896/
https://www.ncbi.nlm.nih.gov/pubmed/30023566
http://dx.doi.org/10.1021/acsomega.7b00935
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author Dharmalingam, Priya
Rachamalla, Hari Krishna R.
Lohchania, Brijesh
Bandlamudi, Bhanuprasad
Thangavel, Saravanabhavan
Murugesan, Mohankumar K.
Banerjee, Rajkumar
Chaudhuri, Arabinda
Voshavar, Chandrashekhar
Marepally, Srujan
author_facet Dharmalingam, Priya
Rachamalla, Hari Krishna R.
Lohchania, Brijesh
Bandlamudi, Bhanuprasad
Thangavel, Saravanabhavan
Murugesan, Mohankumar K.
Banerjee, Rajkumar
Chaudhuri, Arabinda
Voshavar, Chandrashekhar
Marepally, Srujan
author_sort Dharmalingam, Priya
collection PubMed
description [Image: see text] Cationic lipid-guided nucleic acid delivery holds great promise in gene therapy and genome-editing applications for treating genetic diseases. However, the major challenge lies in achieving therapeutically relevant efficiencies. Prior findings, including our own, demonstrated that asymmetry in the hydrophobic core of cationic lipids imparted superior transfection efficiencies. To this end, we have developed a lipid nanocarrier system with an asymmetric hydrophobic core (PS-Lips) derived from a mixture of fatty acids of food-grade palmstearin and compared its efficiency with symmetric palmitic acid-based nanocarrier system (P-Lip). PS-Lips exhibited superior transfection efficiencies with both plasmid DNA (pDNA) and mRNA in multiple cultured cells than the control P-Lip. More importantly, PS-Lips exhibited 2-fold superior transfections with linear nucleic acid, green fluorescent protein (GFP) mRNA in hematopoietic cells, when compared with the commercial control lipofectamine RNAiMAX. PS-Lips was also found to be effective in delivering genome-editing tools (CRISPR/Cas9, sgRNA encoded pDNA with a reporter GFP construct) than P-Lip in HEK-293 cells. In the present study, we report that cationic liposomes derivatized from natural food-grade fat palmstearin with a natural hydrophobic core asymmetry are efficient in delivering both linear and circular nucleic acids. In particular, PS-Lips is efficient in delivering mRNA to hematopoietic cells. These findings can be further exploited in the genome-editing approach for treating β-globinopathies.
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spelling pubmed-60448962018-07-16 Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections Dharmalingam, Priya Rachamalla, Hari Krishna R. Lohchania, Brijesh Bandlamudi, Bhanuprasad Thangavel, Saravanabhavan Murugesan, Mohankumar K. Banerjee, Rajkumar Chaudhuri, Arabinda Voshavar, Chandrashekhar Marepally, Srujan ACS Omega [Image: see text] Cationic lipid-guided nucleic acid delivery holds great promise in gene therapy and genome-editing applications for treating genetic diseases. However, the major challenge lies in achieving therapeutically relevant efficiencies. Prior findings, including our own, demonstrated that asymmetry in the hydrophobic core of cationic lipids imparted superior transfection efficiencies. To this end, we have developed a lipid nanocarrier system with an asymmetric hydrophobic core (PS-Lips) derived from a mixture of fatty acids of food-grade palmstearin and compared its efficiency with symmetric palmitic acid-based nanocarrier system (P-Lip). PS-Lips exhibited superior transfection efficiencies with both plasmid DNA (pDNA) and mRNA in multiple cultured cells than the control P-Lip. More importantly, PS-Lips exhibited 2-fold superior transfections with linear nucleic acid, green fluorescent protein (GFP) mRNA in hematopoietic cells, when compared with the commercial control lipofectamine RNAiMAX. PS-Lips was also found to be effective in delivering genome-editing tools (CRISPR/Cas9, sgRNA encoded pDNA with a reporter GFP construct) than P-Lip in HEK-293 cells. In the present study, we report that cationic liposomes derivatized from natural food-grade fat palmstearin with a natural hydrophobic core asymmetry are efficient in delivering both linear and circular nucleic acids. In particular, PS-Lips is efficient in delivering mRNA to hematopoietic cells. These findings can be further exploited in the genome-editing approach for treating β-globinopathies. American Chemical Society 2017-11-14 /pmc/articles/PMC6044896/ /pubmed/30023566 http://dx.doi.org/10.1021/acsomega.7b00935 Text en Copyright © 2017 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Dharmalingam, Priya
Rachamalla, Hari Krishna R.
Lohchania, Brijesh
Bandlamudi, Bhanuprasad
Thangavel, Saravanabhavan
Murugesan, Mohankumar K.
Banerjee, Rajkumar
Chaudhuri, Arabinda
Voshavar, Chandrashekhar
Marepally, Srujan
Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections
title Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections
title_full Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections
title_fullStr Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections
title_full_unstemmed Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections
title_short Green Transfection: Cationic Lipid Nanocarrier System Derivatized from Vegetable Fat, Palmstearin Enhances Nucleic Acid Transfections
title_sort green transfection: cationic lipid nanocarrier system derivatized from vegetable fat, palmstearin enhances nucleic acid transfections
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6044896/
https://www.ncbi.nlm.nih.gov/pubmed/30023566
http://dx.doi.org/10.1021/acsomega.7b00935
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