21 resultados para Beckman pH meter


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The toxicity and environmental behavior of new pH-sensitive surfactants from lysine are presented. Three different chemical structures are studied: surfactants with one amino acid and one alkyl chain, surfactants with two amino acids on the polar head and one alkyl chain, and gemini surfactants. The pH sensitivity of these compounds can be tuned by modifying their chemical structures. Cytotoxicity has been evaluated using erythrocytes and fibroblast cells. The toxic effects against these cells depend on the hydrophobicity of the molecules as well as their cationic charge density. The effect of hydrophobicity and cationic charge density on toxicity is different for each type of cells. For erythrocytes, the toxicity increases as hydrophobicity and charge density increases. Nevertheless, for fibroblasts cationic charge density affects cytotoxicity in the opposite way: the higher charge density, the lower the toxicity. The effect of the pH on hemolysis has been evaluated in detail. The aquatic toxicity was established using Daphnia magna. All surfactants yielded EC50 values considerably higher than that reported for cationic surfactants based on quaternary ammonium groups. Finally, their biodegradability was evaluated using the CO2 headspace test (ISO 14593). These lysine derivatives showed high levels of biodegradation under aerobic conditions and can be classified as"readily biodegradable compounds".

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Poly(ß,L-malic acid) (PMLA) was made to interact with the cationic anticancer drug Doxorubicin (DOX) in aqueous solution to form ionic complexes with different compositions and an efficiency near to 100%. The PMLA/DOX complexes were characterized by spectroscopy, thermal analysis, and scanning electron microscopy. According to their composition, the PMLA/DOX complexes spontaneously self-assembled into spherical micro or nanoparticles with negative surface charge. Hydrolytic degradation of PMLA/DOX complexes took place by cleavage of the main chain ester bond and simultaneous release of the drug. In vitro drug release studies revealed that DOX delivery from the complexes was favored by acidic pH and high ionic strength

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Surfactants are among the most versatile and widely used excipients in pharmaceuticals. This versatility, together with their pH-responsive membrane-disruptive activity and low toxicity, could also enable their potential application in drug delivery systems. Five anionic lysine-based surfactants which differ in the nature of their counterion were studied. Their capacity to disrupt the cell membrane was examined under a range of pH values, concentrations and incubation times, using a standard hemolysis assay as a model for endosomal membranes. The surfactants showed pH-sensitive hemolytic activity and improved kinetics at the endosomal pH range. Low concentrations resulted in negligible hemolysis at physiological pH and high membrane lytic activity at pH 5.4, which is in the range characteristic of late endosomes. With increasing concentration, the surfactants showed an enhanced capacity to lyse cell membranes, and also caused significant membrane disruption at physiological pH. This observation indicates that, at high concentrations, surfactant behavior is independent of pH. The mechanism of surfactant-mediated membrane destabilization was addressed, and scanning electron microscopy studies were also performed to evaluate the effects of the compounds on erythrocyte morphology as a function of pH. The in vitro cytotoxicity of the surfactants was assessed by MTT and NRU assays with the 3T3 cell line. The influence of different types of counterion on hemolytic activity and the potential applications of these surfactants in drug delivery are discussed. The possibility of using pH-sensitive surfactants for endosome disruption could hold great promise for intracellular drug delivery systems in future therapeutic applications.

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Many strategies for treating diseases require the delivery of drugs into the cell cytoplasm following internalization within endosomal vesicles. Thus, compounds triggered by low pH to disrupt membranes and release endosomal contents into the cytosol are of particular interest. Here, we report novel cationic lysine-based surfactants (hydrochloride salts of Nε- and Nα-acyl lysine methyl ester) that differ in the position of the positive charge and the length of the alkyl chain. Amino acid-based surfactants could be promising novel biomaterials in drug delivery systems, given their biocompatible properties and low cytotoxic potential. We examined their ability to disrupt the cell membrane in a range of pH values, concentrations and incubation times, using a standard hemolysis assay as a model of endosomal membranes. Furthermore, we addressed the mechanism of surfactant-mediated membrane destabilization, including the effects of each surfactant on erythrocyte morphology as a function of pH. We found that only surfactants with the positive charge on the α-amino group of lysine showed pH-sensitive hemolytic activity and improved kinetics within the endosomal pH range, indicating that the positive charge position is critical for pH-responsive behavior. Moreover, our results showed that an increase in the alkyl chain length from 14 to 16 carbon atoms was associated with a lower ability to disrupt cell membranes. Knowledge on modulating surfactant-lipid bilayer interactions may help us to develop more efficient biocompatible amino acid-based drug delivery devices.

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Ja fa varies decades que els conservadors-restauradors de paper van comenc;ar a tenir en compteel pH de les obres que tractaven, ja que es va veure que I'acidesa incidia molt directament en comde rapid I'objecte es debilitava mecimicament. De fet, trobem tant aviat com el 1936, una patenten registrada per OJ. Schierholtz per desacidificar el paper d'empaperar parets (Porck, 1996).La tela d'un quadre, essent un teixit fet a base de fibres vegetals compastes majoritariament perceHulosa, com les fibres del paper, és lógicament també facilment degradable si I'ambient ñes acid(te un baix pH).Sorprenentment, pero, I'acidesa de la tela deis quadres, tot i que en ocasions puntuals ha estatanalitzada (Bajocchi, 2009; Young, 1999), encara no és un parametre que es miri de forma rutinariai per tant, fins recentment, no se sabia quins eren els valors de pH més típics que pot tenir unquadre.Aquest estudi és una primera recopilació sistematica d'aquest t ipus d' in formació per a partir d'aquícrear un banc de dades que vagi recollint aquest t ipus d'informació sobre el majar nombre possiblede quadres.Si I'acidesa present en la tela ens indica com de rapid es degradara aquesta en el futur, la mesura delgrau de polimerització de la tela (DP), ens indica si la tela té una al ta o baixa resistencia mecanica enel moment actual. Així doncs, aquests dos parametres ens aporten informació molt úti l sobre I'estatde conserva ció del suportoAquesta recerca pretén respondre a les preguntes de quins són els valors de pH i DP que típicamentpodem trabar en la tela deis quadres, així com analitzar la relació entre aquests dos parametres i també la relació entre la data de producció deis quadres i els valors de pH i DP.

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Ja fa varies decades que els conservadors-restauradors de paper van comenc;ar a tenir en compteel pH de les obres que tractaven, ja que es va veure que I'acidesa incidia molt directament en comde rapid I'objecte es debilitava mecimicament. De fet, trobem tant aviat com el 1936, una patenten registrada per OJ. Schierholtz per desacidificar el paper d'empaperar parets (Porck, 1996).La tela d'un quadre, essent un teixit fet a base de fibres vegetals compastes majoritariament perceHulosa, com les fibres del paper, és lógicament també facilment degradable si I'ambient ñes acid(te un baix pH).Sorprenentment, pero, I'acidesa de la tela deis quadres, tot i que en ocasions puntuals ha estatanalitzada (Bajocchi, 2009; Young, 1999), encara no és un parametre que es miri de forma rutinariai per tant, fins recentment, no se sabia quins eren els valors de pH més típics que pot tenir unquadre.Aquest estudi és una primera recopilació sistematica d'aquest t ipus d' in formació per a partir d'aquícrear un banc de dades que vagi recollint aquest t ipus d'informació sobre el majar nombre possiblede quadres.Si I'acidesa present en la tela ens indica com de rapid es degradara aquesta en el futur, la mesura delgrau de polimerització de la tela (DP), ens indica si la tela té una al ta o baixa resistencia mecanica enel moment actual. Així doncs, aquests dos parametres ens aporten informació molt úti l sobre I'estatde conserva ció del suportoAquesta recerca pretén respondre a les preguntes de quins són els valors de pH i DP que típicamentpodem trabar en la tela deis quadres, així com analitzar la relació entre aquests dos parametres i també la relació entre la data de producció deis quadres i els valors de pH i DP.