6 resultados para Molecular Spectroscopy
em Repositório Científico do Instituto Politécnico de Lisboa - Portugal
Resumo:
Reporter genes are routinely used in every laboratory for molecular and cellular biology for studying heterologous gene expression and general cellular biological mechanisms, such as transfection processes. Although well characterized and broadly implemented, reporter genes present serious limitations, either by involving time-consuming procedures or by presenting possible side effects on the expression of the heterologous gene or even in the general cellular metabolism. Fourier transform mid-infrared (FT-MIR) spectroscopy was evaluated to simultaneously analyze in a rapid (minutes) and high-throughput mode (using 96-wells microplates), the transfection efficiency, and the effect of the transfection process on the host cell biochemical composition and metabolism. Semi-adherent HEK and adherent AGS cell lines, transfected with the plasmid pVAX-GFP using Lipofectamine, were used as model systems. Good partial least squares (PLS) models were built to estimate the transfection efficiency, either considering each cell line independently (R 2 ≥ 0.92; RMSECV ≤ 2 %) or simultaneously considering both cell lines (R 2 = 0.90; RMSECV = 2 %). Additionally, the effect of the transfection process on the HEK cell biochemical and metabolic features could be evaluated directly from the FT-IR spectra. Due to the high sensitivity of the technique, it was also possible to discriminate the effect of the transfection process from the transfection reagent on KEK cells, e.g., by the analysis of spectral biomarkers and biochemical and metabolic features. The present results are far beyond what any reporter gene assay or other specific probe can offer for these purposes.
Resumo:
Cellulose and its derivatives, such as hydroxypropylcellulose (HPC) have been studied for a long time but they are still not well understood particularly in liquid crystalline solutions. These systems can be at the origin of networks with properties similar to liquid crystalline (LC) elastomers. The films produced from LC solutions can be manipulated by the action of moisture allowing for instance the development of a soft motor (Geng et al., 2013) driven by humidity. Cellulose nanocrystals (CNC), which combine cellulose properties with the specific characteristics of nanoscale materials, have been mainly studied for their potential as a reinforcing agent. Suspensions of CNC can also self-order originating a liquid-crystalline chiral nematic phases. Considering the liquid crystalline features that both LC-HPC and CNC can acquire, we prepared LC-HPC/CNC solutions with different CNC contents (1,2 and 5 wt.%). The effect of the CNC into the LC-HPC matrix was determined by coupling rheology and NMR spectroscopy - Rheo-NMR a technique tailored to analyse orientational order in sheared systems. (C) 2015 Elsevier Ltd. All rights reserved.
Resumo:
Helicobacter pylori infection represents a serious health problem, given its association with serious gastric diseases as gastric ulcers, cancer and MALT lymphoma. Currently no vaccine exists and antibiotic-based eradication therapy is already failing in more than 20% of cases. To increase the knowledge on the infection process diverse gastric cell lines, e.g. the adenocarcinona gastric (AGS) cell line, are routinely used has in vitro models of gastric epithelia. In the present work the molecular fingerprint of infected and non-infected AGS cell lines, by diverse H. pylori strains, was acquired using vibrational infrared spectroscopy. These molecular fingerprints enabled to discriminate infected from non-infected AGS cells, and infection due to different strains, by performing Principal Component Analysis. It was also possible to estimate, from the AGS cells molecular fingerprint, the effect of the infection on diverse biochemical and metabolic cellular status. In resume infra-red spectroscopy enabled the acquisition of infected AGS cells molecular fingerprint with minimal sample preparation, in a rapid, high-throughput, economic process yielding highly sensitive and informative data, most useful for promoting critical knowledge on the H. pylori infection process. © 2015 IEEE.
Resumo:
Introdução – A lipofilia é uma das propriedades físico-químicas que mais influencia a capacidade de uma molécula se movimentar através de compartimentos biológicos. O coeficiente de partição octanol/água (log P) permite, assim, obter uma estimativa da absorção dos fármacos no organismo. A existência de métodos indirectos para um cálculo rápido do log P pode revelar-se de grande importância na análise de listas de compostos com potencial acção farmacológica, reduzindo-as àqueles que se prevêem ter um melhor comportamento biológico. Objectivos – O propósito deste estudo é dar a conhecer um método cromatográfico de RP-HPLC desenvolvido para a determinação indirecta da lipofilia molecular e avaliar a performance de vários programas de cálculo computacional desse mesmo parâmetro. Metodologias – Seleccionaram-se 25 compostos químicos, avaliou-se o log P de cada um deles por RP-HPLC e confrontaram-se os resultados obtidos com os de sete programas computacionais. Resultados – O método RP-HPLC testado demonstrou ser vantajoso em comparação com o convencional shake flask. O programa de cálculo indirecto que proporcionou resultados mais próximos dos experimentais foi o ALOGPS© 2.1. Conclusões – A escolha ideal para a determinação da lipofilia de compostos cujo log P estimado esteja entre 0 e 6 é, sobretudo no que diz respeito à rapidez e simplicidade do processo, o método experimental indirecto RP-HPLC. Quanto aos métodos computacionais concluiu-se que nenhum dos programas, incluindo o ALOGPS© 2.1, demonstrou ser eficaz na avaliação de isómeros pelo que, para estes compostos, será sempre necessário recorrer ao método shake flask ou RP-HPLC.
Resumo:
Neste trabalho são descritas as sínteses de novos copolímeros do tipo p-fenileno-etinileno (PPE’s) contendo unidades de calix[4]areno com potencial aplicação em electrónica molecular. A preparação destes copolímeros envolveu a síntese e caracterização de duas unidades monoméricas distintas. O 1,4-bis-25-(oximetil) - 26,26,28-tripropoxi-2,5-di-iodo-benzeno-p-terc-butilcalix[4]areno e diferentes 1,4-di-etinil-2,5-bis(alcoxi)benzenos. Os materiais sintesidados foram analisados e caracterizados por espectroscopia de infravermelho por transformada de Fourier (FTIR), ressonância magnética nuclear de protão e de carbono (1H e 13C RMN), análise elementar (AE) e cromatografia de permeação em gel (GPC). Com o objectivo de estudar as suas propriedades espectroscópicas recorreu-se a técnicas de absorção de estado fundamental e luminescência de estado estacionário. O estudo das propriedades quirópticas do CALIX-p-PPE-C5q demonstrou que a homoquiralidade presente nas cadeias laterais de um dos componentes do copolímero é transferida para a cadeia principal do polímero conjugado, originando um polímero quiral. A realização de estudos electroquímicos por voltametria cíclica permitiu identificar nos diferentes polímeros processos oxidativos a potenciais semelhantes; o processo redutivo apenas foi observado no CALIX-p-PPE-C6. Os polímeros sintetizados foram posteriormente testados em duas aplicações de electrónica molecular. Num dos casos, a sua capacidade de funcionar com sensores químicos na detecção de explosivos nitroaromáticos foi avaliada usando técnicas de fotoluminescência enquanto a sua utilização como filmes emissivos em diodos emissores de luz foi avaliada por estudos de electroluminescência.
Resumo:
Opposite enantiomers exhibit different NMR properties in the presence of an external common chiral element, and a chiral molecule exhibits different NMR properties in the presence of external enantiomeric chiral elements. Automatic prediction of such differences, and comparison with experimental values, leads to the assignment of the absolute configuration. Here two cases are reported, one using a dataset of 80 chiral secondary alcohols esterified with (R)-MTPA and the corresponding 1H NMR chemical shifts and the other with 94 13C NMR chemical shifts of chiral secondary alcohols in two enantiomeric chiral solvents. For the first application, counterpropagation neural networks were trained to predict the sign of the difference between chemical shifts of opposite stereoisomers. The neural networks were trained to process the chirality code of the alcohol as the input, and to give the NMR property as the output. In the second application, similar neural networks were employed, but the property to predict was the difference of chemical shifts in the two enantiomeric solvents. For independent test sets of 20 objects, 100% correct predictions were obtained in both applications concerning the sign of the chemical shifts differences. Additionally, with the second dataset, the difference of chemical shifts in the two enantiomeric solvents was quantitatively predicted, yielding r2 0.936 for the test set between the predicted and experimental values.