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1.
Biotechnol J ; 18(8): e2200542, 2023 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-37148557

RESUMEN

A modification of the conventional batch organosolv process is proposed in a way where the solid biomass remains inside a basket, physically separated from the liquid phase, with the vapor promoting the fractionation of the biomass and the extracted compounds and fragments being washed down to the liquid phase. The modified organosolv process applied to sugarcane bagasse (SB-M) delivers a rich cellulosic solid phase that after enzymatic hydrolysis leads to a hydrolyzed with approximately 100 g L-1 of glucose. At the same enzymatic hydrolysis conditions, the conventional organosolv process (SB-C) delivers a hydrolyzed with 80 g L-1 of glucose, while the autohydrolysis process (SB-A) leads to 55 g L-1 of glucose. These different results are related to the cellulose content: SB-M (70%), SB-C (57%), e SB-A (44%), as well the reduced lignin content in the SB-M. The novelty of this study is the confirmation that it is possible to degrade lignin from sugarcane bagasse and simultaneously remove its fragments from the cellulose fibers in a batch reactor containing an internal basket. This study describes a simple and rapid protocol for the isolation of the main components of lignocellulosic biomass (cellulose, hemicellulose, and lignin), which may lead to the study of new catalysts for the chemical transformation of these components separately or simultaneously to the step of pretreatment.


Asunto(s)
Celulosa , Saccharum , Celulosa/metabolismo , Lignina/metabolismo , Saccharum/química , Saccharum/metabolismo , Glucosa/metabolismo , Hidrólisis
2.
Curr Pharm Des ; 21(37): 5336-58, 2015.
Artículo en Inglés | MEDLINE | ID: mdl-26377657

RESUMEN

Magnetic materials based on iron oxides are extensively designed for several biomedical applications. Heterogeneous polymerization processes are powerful tools for the production of tailored micro-sized and nanosized magneto-polymeric particles. Although several polymerization processes have been adopted along the years, suspension, emulsion and miniemulsion systems deserve special attention due to its ability to produce spherical polymer particles containing magnetic nanoparticles homogeneously dispersed into the polymer thermoplastic matrices. The main objective of this paper is to review the main methods of synthesis of iron-based magnetic nanoparticles and to illustrate how typical polymerization processes in different dispersion medium can be successfully used to produce engineered magnetic core-shell structures. It is exemplified the use of suspension, emulsion and miniemulsion polymerization processes in order to support experimental methodologies required for the production of magnetic polymer particles intended for biomedical applications such as intravascular embolization treatments, drug delivery systems and hyperthermia treatment.


Asunto(s)
Hierro/química , Nanopartículas de Magnetita/química , Nanoestructuras/química , Polimerizacion , Polímeros/química , Animales , Sistemas de Liberación de Medicamentos/métodos , Humanos , Hierro/administración & dosificación , Nanopartículas de Magnetita/administración & dosificación , Nanoestructuras/administración & dosificación , Neoplasias/diagnóstico , Neoplasias/tratamiento farmacológico , Tamaño de la Partícula , Polímeros/administración & dosificación
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