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A novel biocompatible polymer derived from D-mannitol used as a vector in the field of genetic engineering of eukaryotic cells

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논문

A novel biocompatible polymer derived from D-mannitol used as a vector in the field of genetic engineering of eukaryotic cells

학술지

Colloids and surfaces. B, Biointerfaces

저자명

Pé rez, David; Moyá , Marí a Luisa; Bautista, Marí a; Leó n, Rosa; Molina-Má rquez, Ana; Vila, Marta; Romero-Azogil, Lucí a; Benito, Elena; de Gracia Garcí a-Martí n, Marí a; Moreno-Gordillo, Paula; Rosado, Ivá n V.; Balestra, Fernando R.; Huertas, Pablo; Ló pez-Ló pez, Manuel; Ló pez-Cornejo, Pilar

초록

The design and preparation of new vectors to transport genetic material and increase the transfection efficiency continue being an important research line. Here, a novel biocompatible sugar-based polymer derived from D-mannitol has been synthesized to be used as a gene material nanocarrier in human (gene transfection) and microalga cells (transformation process). Its low toxicity allows its use in processes with both medical and industrial applications. A multidisciplinary study about the formation of polymer/p-DNA polyplexes has been carried out using techniques such as gel electrophoresis, zeta potential, dynamic light scattering, atomic force microscopy, and circular dichroism spectroscopy. The nucleic acids used were the eukaryotic expression plasmid pEGFP-C1 and the microalgal expression plasmid Phyco69, which showed different behaviors. The importance of DNA supercoiling in both transfection and transformation processes was demonstrated. Better results were obtained in microalga cells nuclear transformation than in human cells gene transfection. This was related to the plasmid's conformational changes, in particular to their superhelical structure. It is noteworthy that the same nanocarrier has been used with eukaryotic cells from both human and microalga.

발행연도

2023

발행기관

Elsevier

ISSN

0927-7765

224

페이지

pp.113219

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1 2023-12-11

논문; 2023-04-01

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