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1.
Macromol Biosci ; 24(4): e2300366, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38226723

RESUMO

Nucleic acid-based therapies are seeing a spiralling surge. Stimuli-responsive polymers, especially pH-responsive ones, are gaining widespread attention because of their ability to efficiently deliver nucleic acids. These polymers can be synthesized and modified according to target requirements, such as delivery sites and the nature of nucleic acids. In this regard, the endosomal escape mechanism of polymer-nucleic acid complexes (polyplexes) remains a topic of considerable interest owing to various plausible escape mechanisms. This review describes current progress in the endosomal escape mechanism of polyplexes and state-of-the-art chemical designs for pH-responsive polymers. The importance is also discussed of the acid dissociation constant (i.e., pKa) in designing the new generation of pH-responsive polymers, along with assays to monitor and quantify the endosomal escape behavior. Further, the use of machine learning is addressed in pKa prediction and polymer design to find novel chemical structures for pH responsiveness. This review will facilitate the design of new pH-responsive polymers for advanced and efficient nucleic acid delivery.


Assuntos
Ácidos Nucleicos , Polieletrólitos , Endossomos , Polímeros/química
2.
Chem Asian J ; 12(24): 3150-3155, 2017 Dec 14.
Artigo em Inglês | MEDLINE | ID: mdl-28990285

RESUMO

There is significant interest in the development of a sustainable and integrated process for the extraction of essential oils and separation of biopolymers by using novel and efficient solvent systems. Herein, cassia essential oil enriched in coumarin is extracted from Cinnamomum cassia bark by using a protic ionic liquid (IL), ethylammonium nitrate (EAN), through dissolution and the creation of a biphasic system with the help of diethyl ether. The process has been perfected, in terms of higher biomass dissolution ability and essential oil yield through the addition of aprotic ILs (based on the 1-butyl-3-methylimidazolium (C4 mim) cation and chloride or acetate anions) to EAN. After extraction of oil, cellulose-rich material and free lignin were regenerated from biomass-IL solutions by using a 1:1 mixture of acetone-water. The purity of the extracted essential oil and biopolymers were ascertained by means of FTIR spectroscopy, NMR spectroscopy, and GC-MS techniques. Because lignin contains UV-blocking chromophores, the oil-free residual lignocellulosic material has been directly utilized to construct UV-light-resistant composite materials in conjunction with the biopolymer chitosan. Composite material thus obtained was processed to form biodegradable films, which were characterized for mechanical and optical properties. The films showed excellent UV-light resistance and mechanical properties, thereby making it a material suitable for packaging and light-sensitive applications.


Assuntos
Plásticos Biodegradáveis/química , Cinnamomum aromaticum/química , Química Verde , Líquidos Iônicos/química , Óleos de Plantas/isolamento & purificação , Plásticos Biodegradáveis/isolamento & purificação , Celulose/química , Celulose/isolamento & purificação , Quitosana/química , Quitosana/isolamento & purificação , Imidazóis/química , Luz , Lignina/química , Lignina/isolamento & purificação , Óleos de Plantas/química , Compostos de Amônio Quaternário/química
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