• Refine Query
  • Source
  • Publication year
  • to
  • Language
  • 28
  • 15
  • 12
  • 7
  • 2
  • 1
  • 1
  • Tagged with
  • 87
  • 87
  • 87
  • 20
  • 18
  • 15
  • 14
  • 14
  • 14
  • 13
  • 13
  • 11
  • 11
  • 11
  • 10
  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
61

Fragment-based approaches to targeting EthR from mycobacterium tuberculosis

McConnell, Brendan Neil January 2019 (has links)
Tuberculosis affects millions of people worldwide every year. The current treatment for TB is divided into a regimen of both first- and second-line drugs, where first-line treatments are more tolerated and require shorter treatment lengths. With rising levels of resistance, alternative treatment regimes are urgently needed to fight this disease. Ethionamide, a second-line drug is administered as a prodrug which is activated in vivo by the enzyme EthA, which is in turn regulated by EthR. The disruption of the action of EthR could lead to novel therapeutics which could enhance the efficacy of ethionamide, and raise it to a first-line treatment. The work reported in this thesis examines the elaboration of three chemical scaffolds using fragment-based approaches to develop novel inhibitors capable of disrupting the EthR-DNA interaction. The first scaffold, 5-(furan-2-yl)isoxazole was investigated by fragment-merging approaches and produced compounds with the best of these having a KD of 7.4 uM. The second scaffold, an aryl sulfone was elaborated using fragment-merging strategies. This led to several modifications of the fragment, leading to several variants with KDs around 20 uM. With both of these series the affinity could not be improved below 10 uM and due to the synthetic complexity a further scaffold was prioritised. The third scaffold was explored was a 4-(4-(trifluoromethyl)phenyl)piperazine using fragmentgrowing from the NH of the piperazine to probe deeper into the EthR binding pocket. In addition to this, SAR around the 4-(trifluoromethyl)phenyl group was assessed to explore the interactions with EthR. These modifications led to compounds with nanomolar IC50s. A range of compounds were then screened by REMAssay to determine the boosting effect on ethionamide, and this identified compounds with up to 30 times boosting in the ethionamide MIC. The final chapter examines a concept where compounds were designed to exploit the dimeric nature of EthR by linking two chemical warheads with a flexible linker. These compounds are examined using mass spectrometry to investigate the stoichiometry of the interaction to provide insight into the binding of these extended compounds and exploring an alternative strategy to inhibit EthR. The work in this thesis demonstrated the successful use of fragment-based approaches for development of novel EthR inhibitors which showed significant ethionamide boosting effects.
62

Monolithic separation media synthesized in capillaries and their applications for molecularly imprinted networks

Courtois, Julien January 2006 (has links)
<p>The thesis describes the synthesis of chromatographic media using several different approaches, their characterizations and applications in liquid chromatography. The steps to achieve a separation column for a specific analyte are presented. The main focus of the study was the design of novel molecularly imprinted polymers.</p><p>Attachment of monolithic polymeric substrates to the walls of fused silica capillaries was studied in Paper I. With a broad literature survey, a set of common methods were tested by four techniques and ranked by their ability to improve anchoring of polymers. The best procedure was thus used for all further studies.</p><p>Synthesis of monoliths in capillary columns was studied in Paper II. With the goal of separating proteins without denaturation, various monoliths were polymerized in situ using a set of common monomers and cross-linkers mixed with poly(ethylene glycol) as porogen. The resulting network was expected to present “protein-friendly pores”. Chemometrics were used to find and describe a set of co-porogens added to the polymerization cocktails in order to get good porosity and flow-through properties.</p><p>Assessment of the macroporous structure of a monolith was described in Paper III. An alternative method to mercury intrusion porosimetry was proposed. The capillaries were embedded in a stained resin and observed under transmission electron microscope. Images were then computed to determine the pore sizes.</p><p>Synthesis of molecularly imprinted polymers grafted to a core mono-lith in a capillary was described in Paper IV. The resulting material, imprinted with local anaesthetics, was tested for its chromatographic performance. Similar imprinted polymers were characterized by microcalorimetry in Paper V. Finally, imprinted monoliths were also synthesized in a glass tube and further introduced in a NMR rotor to describe the interactions between stationary phase and template in Paper VI.</p>
63

Ion binding to polymers and lipid membranes in aqueous solutions : Ionenbindung an Polymeren und Lipidmembranen in wässrigen Lösungen / Ion binding to polymers and lipid membranes in aqueous solutions : Ionenbindung an Polymeren und Lipidmembranen in wässrigen Lösungen

Sinn, Cornelia G. January 2004 (has links)
Ziel dieser Arbeit ist die Untersuchung der Ionenbindung an Polymeren und Lipidmembranen in wässrigen Lösungen. Im ersten Teil dieser Arbeit wurde der Einfluss verschiedener anorganischer Salze und Polyelektrolyte auf die Struktur des Wassers mit Hilfe Isothermer Mikrotitrationskalorimetrie (ITC) erforscht. Die Verdünnungswärme der Salze wurde als Maß für die Fähigkeit der Ionen, die geordnete Struktur des Wassers zu stabilisieren oder zu zerstören, verwendet. Die Verdünnungswärmen konnten auf Hofmeister Effekte zurückgeführt werden. Im Anschluss daran wurde die Bindung von Ca2+ an Natrium- Poly(acrylsäure) (NaPAA) untersucht. Mit Hilfe von ITC und einer Ca2+- selektiven Elektrode wurde die Reaktionsenthalpie und Bindungsisotherme gemessen. Es wurde gezeigt, dass die Binding von Ca2+ - Ionen an NaPAA stark endotherm und daher entropiegetrieben ist. Anschließend wurde die Bindung von Ca2+ an die eindimensionale Polymerkette mit der an ein Lipidvesikel mit denselben funktioniellen Gruppen verglichen. Es wurde beobachtet, dass die Ionenbindung &ndash;wie auch im Fall des Polymers- endotherm ist. Ein Vergleich der Ca2+- Bindung an die Lipidmembran mit der an das Polymer konnte zeigen, dass das Ion schwächer an die Membran bindet. Im Zusammenhang mit diesen Experimenten wurde auch beobachtet, dass Ca2+ nicht nur an geladene, sondern auch an zwitterionische Lipidvesikel bindet. Schließlich wurde die Wechselwirkung zweier Salze, KCl and NaCl, mit einem neutralen Polymergel, PNIPAAM, und dem geladenen Polymer PAA untersucht. Mit Hilfe von Kalorimetrie und einer kaliumselektiven Elektrode wurde beobachtet, dass die Ionen mit beiden Polymeren wechselwirken, unabhängig davon, ob diese Ladungen tragen, oder nicht. / The goal of this work was to study the binding of ions to polymers and lipid bilayer membranes in aqueous solutions. In the first part of this work, the influence of various inorganic salts and polyelectrolytes on the structure of water was studied using Isothermal Titration Calorimetry (ITC). The heat of dilution of the salts was used as a scale of water structure making and breaking of the ions. The heats of dilution could be attributed to the Hofmeister Series. Following this, the binding of Ca2+ to poly(sodium acrylate) (NaPAA) was studied. ITC and a Ca2+ Ion Selective Electrode were used to measure the reaction enthalpy and binding isotherm. Binding of Ca2+ ions to PAA, was found to be highly endothermic and therefore solely driven by entropy. We then compared the binding of ions to the one-dimensional PAA polymer chain to the binding to lipid vesicles with the same functional groups. As for the polymer, Ca2+ binding was found to be endothermic. Binding of calcium to the lipid bilayer was found to be weaker than to the polymer. In the context of these experiments, it was shown that Ca2+ not only binds to charged but also to zwitterionic lipid vesicles. Finally, we studied the interaction of two salts, KCl and NaCl, to a neutral polymer gel, PNIPAAM, and to the ionic polymer PAA. Combining calorimetry and a potassium selective electrode we observed that the ions interact with both polymers, whether containing charges or not.
64

Macromolecular Interactions in West Nile Virus RNA-TIAR Protein Complexes and of Membrane Associated Kv Channel Peptides

Zhang, Jin 01 July 2013 (has links)
Macromolecular interactions play very important roles in regulation of all levels of biological processes. Aberrant macromolecular interactions often result in diseases. By applying a combination of spectroscopy, calorimetry, computation and other techniques, the protein-protein interactions in the system of the Shaw2 Kv channel and the protein-RNA interactions in West Nile virus RNA-cellular protein TIAR complex were explored. In the former system, the results shed light on the local structures of the key channel components and their potential interaction mediated by butanol, a general anesthetic. In the later studies, the binding modes of TIAR RRM2 to oligoU RNAs and West Nile virus RNAs were investigated. These findings provided insights into the basis of the specific cellular protein–viral RNA interaction and preliminary data for the development of strategies on how to interfere with virus replication
65

Monolithic separation media synthesized in capillaries and their applications for molecularly imprinted networks

Courtois, Julien January 2006 (has links)
The thesis describes the synthesis of chromatographic media using several different approaches, their characterizations and applications in liquid chromatography. The steps to achieve a separation column for a specific analyte are presented. The main focus of the study was the design of novel molecularly imprinted polymers. Attachment of monolithic polymeric substrates to the walls of fused silica capillaries was studied in Paper I. With a broad literature survey, a set of common methods were tested by four techniques and ranked by their ability to improve anchoring of polymers. The best procedure was thus used for all further studies. Synthesis of monoliths in capillary columns was studied in Paper II. With the goal of separating proteins without denaturation, various monoliths were polymerized in situ using a set of common monomers and cross-linkers mixed with poly(ethylene glycol) as porogen. The resulting network was expected to present “protein-friendly pores”. Chemometrics were used to find and describe a set of co-porogens added to the polymerization cocktails in order to get good porosity and flow-through properties. Assessment of the macroporous structure of a monolith was described in Paper III. An alternative method to mercury intrusion porosimetry was proposed. The capillaries were embedded in a stained resin and observed under transmission electron microscope. Images were then computed to determine the pore sizes. Synthesis of molecularly imprinted polymers grafted to a core mono-lith in a capillary was described in Paper IV. The resulting material, imprinted with local anaesthetics, was tested for its chromatographic performance. Similar imprinted polymers were characterized by microcalorimetry in Paper V. Finally, imprinted monoliths were also synthesized in a glass tube and further introduced in a NMR rotor to describe the interactions between stationary phase and template in Paper VI.
66

Caractérisation structurale et fonctionnelle des interactions impliquant TFIIH et la machinerie de réparation de l’ADN

Lafrance-Vanasse, Julien 09 1900 (has links)
La réparation de l’ADN par excision des nucléotides (NER) est un mécanisme capable de retirer une large variété de lésions causant une distorsion de la double hélice, comme celles causées par les rayons ultraviolets (UV). Comme toutes les voies de réparation de l’ADN, la NER contribue à la prévention de la carcinogénèse en prévenant la mutation de l’ADN. Lors de ce processus, il y a d’abord reconnaissance de la lésion par la protéine XPC/Rad4 (humain/levure) qui recrute ensuite TFIIH. Ce complexe déroule l’ADN par son activité hélicase et recrute l’endonucléase XPG/Rad2 ainsi que d’autres protéines nécessaires à l’excision de l’ADN. Lors de son arrivée au site de lésion, XPG/Rad2 déplace XPC/Rad4. TFIIH agit également lors de la transcription de l’ADN, entre autres par son activité hélicase. Outre cette similarité de la présence de TFIIH lors de la transcription et la réparation, il est possible de se demander en quoi les deux voies sont similaires. Nous nous sommes donc intéressés aux interactions impliquant TFIIH et la machinerie de réparation de l’ADN. Nous avons donc entrepris une caractérisation structurale et fonctionnelle de ces interactions. Nous avons découvert que Rad2 et Rad4 possèdent un motif d’interaction en nous basant sur d’autres interactions de la sous-unité Tfb1 de TFIIH. Par calorimétrie à titrage isotherme, nous avons observé que les segments de ces deux protéines contenant ce motif interagissent avec une grande affinité au domaine PH de Tfb1. Le site de liaison de ces segments sur Tfb1PH est très semblable au site de liaison du domaine de transactivation de p53 et au domaine carboxy-terminal de TFIIEα avec Tfb1PH, tel que démontré par résonance magnétique nucléaire (RMN). De plus, tous ces segments peuvent faire compétition les uns aux autres pour la liaison à Tfb1PH. Nous avons aussi démontré in vivo chez la levure qu’une délétion de Tfb1PH crée une sensibilité aux radiations UV. De plus, la délétion de multiples segments de Rad2 et Rad4, dont les segments d’interaction à Tfb1PH, est nécessaire pour voir une sensibilité aux rayons UV. Ainsi, de multiples interactions sont impliquées dans la liaison de Rad2 et Rad4 à TFIIH. Finalement, les structures des complexes Rad2-Tfb1PH et Rad4-Tfb1PH ont été résolues par RMN. Ces structures sont identiques entre elles et impliquent des résidus hydrophobes interagissant avec des cavités peu profondes de Tfb1PH. Ces structures sont très semblables à la structure de TFIIEα-p62PH. Ces découvertes fournissent ainsi un lien important entre la transcription et la réparation de l’ADN. De plus, elles permettent d’émettre un modèle du mécanisme de déplacement de XPC/Rad4 par XPG/Rad2 au site de dommage à l’ADN. Ces connaissances aident à mieux comprendre les mécanismes de maintient de la stabilité génomique et peuvent ainsi mener à développer de nouvelles thérapies contre le cancer. / The nucleotide excision repair pathway (NER) is a mechanism capable of removing a wide variety of helix-distorting lesions, such as those caused by ultraviolet irradiation (UV). As all DNA repair pathways, NER contributes to the prevention of carcinogenesis by preventing DNA mutation. During this process, the lesion is first recognized by the protein XPC/Rad4 (human/yeast), which then recruits TFIIH. This complex unwinds the DNA with its helicase activity and then recruits the endonuclease XPG/Rad2 and other proteins necessary for DNA excision. Upon arrival at the lesion site, XPG/Rad2 displaces XPC/Rad4. TFIIH also acts in DNA transcription, using its helicase activity. In addition to the similarity of the presence of TFIIH in transcription and DNA repair, it is possible to ask ourselves how the two pathways are similar. We were interested in the interactions involving TFIIH and the DNA repair machinery. We have therefore undertaken a structural and functional characterization of these interactions. We have found that Rad2 and Rad4 have a motif of interaction based on other interactions of the Tfb1 subunit of TFIIH. Using isothermal titration calorimetry, we found that segments of these two proteins containing this motif interact with high affinity to the PH domain of Tfb1. The binding site of these segments is very similar to Tfb1PH binding site of transactivation domain of p53 and the carboxyl-terminal domain of TFIIEα with Tfb1PH, as demonstrated by nuclear magnetic resonance (NMR). In addition, these segments can compete with each other for binding to Tfb1PH. We also demonstrated in vivo that deletion of Tfb1PH in yeast creates a sensitivity to UV irradiation. In addition, the deletion of multiple segments of Rad2 and Rad4, including segments of interaction Tfb1PH, is required to observe a sensitivity to UV. Thus, multiple interactions are involved in the binding of TFIIH to Rad2 and Rad4. Finally, the structures of the Rad2-Tfb1PH and Rad4-Tfb1PH complexes were solved by NMR. These structures are identical to each other and involve hydrophobic residues interacting with shallow grooves on Tfb1PH. These structures are very similar to the structure of TFIIEα-p62PH. These findings provide an important mechanistic link between transcription and DNA repair. In addition, they provide a model of the mechanism of the displacement of XPC/Rad4 by XPG/Rad2 at the damaged site. This knowledge helps to better understand the mechanisms of genomic stability and can lead to novel cancer therapies.
67

Déterminants moléculaires d’un inhibiteur sélectif de la MMP-12 par approches pluridisciplinaires combinant la cristallographie et la microcalorimétrie / Molecular determinants of MMP-12 selective inhibitor, with multidisciplinary approaches combining crystallography and microcalorimetry

Czarny, Bertrand 23 November 2012 (has links)
Le RXP470.1 est l’un des premiers inhibiteurs puissants de la MMP-12, une métalloprotéase à zinc impliquée dans de nombreuses pathologies comme l’athéroclérose et la bronchopneumopathie obstructive chronique (BPCO). Pour comprendre les bases moléculaires contrôlant l’interaction de cet inhibiteur avec sa cible, des approches pluridisciplinaires associant des relations structure-activité, avec des études de cristallographie de complexes enzymes inhibiteurs et d’études de microcalorimétrie, décrivant les contributions enthalpiques et entropiques impliquées dans la formation des complexes, ont été réalisées dans ce travail de thèse. Les affinités de trois analogues du RXP470.1 ont été tout d’abord déterminées. Puis quatre structures cristallographiques de complexes enzyme/inhibiteur décrivant le mode d’interaction duRXP470.1 et de ces trois analogues ont été obtenues avec des résolutions de 1.15 Å, 1.50 Å, 1.50Å et 1.30 Å, respectivement. Parallèlement les études de microcalorimétrie ont été menées pour étudier les facteurs énergétiques contrôlant l’interaction du RXP470.1 avec la MMP-12. Les résultats indiquent que la présence d’une chaîne latérale très longue et hydrophobe en position P1’de l’inhibiteur s’insérant dans la cavité S1’ de la MMP-12 est essentielle à la très bonne affinité de cet inhibiteur pour la MMP-12. Cette interaction met essentiellement en jeu un effet entropique très important de - 4 kcal/mol. L’interaction du RXP470.1 est aussi essentiellement dirigée par une forte augmentation d’entropie (-TDS= -10 kal/mol) et une composante enthalpique beaucoup plus faible (DH= -2.5 kcal/mol), et ce malgré l’observation dans le cristal de nombreuses interactions entre l’inhibiteur et le site actif de la MMP-12. L’étude de microcalorimétrie met aussi en lumière la prise d’un proton au cours de la formation du complexe enzyme inhibiteur impliquant deux résidus chargés négativement en solution, le résidu catalytique Glu219 et le groupe phosphoryle chélatant du zinc dans l’inhibiteur. Cette étude révèle aussi que si le groupe phosphoryle est considéré comme un chélatant faible de l’atome de zinc, il impose néanmoins des contraintes directionnelles très importantes qui ont un impact sur le positionnement des autres parties de l’inhibiteur dans le site actif de l’enzyme. Ce dernier effet pourrait expliquer pourquoi un certain nombre d’interactions entre l’inhibiteur et l’enzyme ne sont pas optimisées et pourquoi la variation d’enthalpie pour former le complexe reste relativement faible. Cette étude ouvre maintenant la voie à d’autres études en plaçant au centre des futurs travaux le rôle du groupe chélatant dans la conception des inhibiteurs de MMP, ainsi de nouveaux inhibiteurs puissants et sélectifs d’autres MMP devraient voir le jour grâce à ce travail et aux résultats obtenus. / RXP470.1 is one of the first highly potent and selective inhibitor of MMP-12, a zinc protease involved in several human diseases such as atherosclerosis and chronic obstructive pulmonary disease (COPD). To understand the molecular determinants controlling the interaction of RXP470.1 with MMP-12 active site, a multidisciplinary approach combining structure-activity data, crystallography and microcalorimetry have been performed on RXP470.1 and its three analogues. The affinities of the three RXP470.1 analogues have been determined. Then, fourcrystal structures of MMP-12 in interaction with these inhibitors have beendetermined at high resolution, 1.15 Å, 1.50 Å, 1.50 Å et 1.30 Å, respectively. These data have indicated that the presence of a long hydrophobic side chain in the P1’ position of the RXP470.1, which enters deeply inside the S1’ cavity of MMP-12, is playing a key role in the inhibitor affinity. The contribution of this side chain is mostly entropic (-TDS - 4 kcal/mol). The interaction of RXP470.1 with MMP-12 is also mostly driven by a sizeable entropy increase (-TDS= -10 kal/mol) and a more modest enthalpy contribution (DH= -2.5 kcal/mol), despite the observation in the crystal structure of several contacts between inhibitor and MMP-12 active site. Furthermore, this study reveals that the binding of RXP470.1 to MMP-12 is linked to a proton uptake involving two negatively charged residues, the catalytic Glu219 and the phosphoryl group of the inhibitor. Furthermore, despite that the phosphoryl group is considered as a weak zincbinding group, this study highlights that the interactions of this group with the active site zinc atom involved strong directionality between these two groups. This effect has strong impact on the positioning of the other parts of the inhibitor in the MMP-12 active site. This last effect could be responsible for the modest enthalpy increase associated with the binding of RXP470.1 to MMP-12, by preventing the optimization of several interactions between the inhibitor and the enzyme. The results indicate that the role of the zinc-binding group should be better consider in the future. Finally this study opens a new vision in this field and should allow the design of new selective inhibitors of other MMPs.
68

Experimental and theoretical investigations of intermetallic in transition metal coordination and organometallic complexes / Etudes expérimentales et théoriques des interactions intermétalliques en transition métal coordination et complexes organométalliques

Petrović, Predrag 10 September 2014 (has links)
Ce travail de thèse démontre l’importance d’intégrer des outils théoriques à des observations expérimentales dans le but d’étudier le rôle des interactions non-covalentes et plus précisément de la dispersion dans la chimie des métaux de transition. Plusieurs thèmes ont ainsi été abordés comme les interactions d’empilement entre chélates de métaux de transition à l’état solide; l’influence de la chiralité sur l’oligomérisation en solution de complexes plans carrés de Rh(I) isonitrile; la stabilité et inactivité inhabituelles de complexes de type cis-platine en solution concentrée. Les résultats obtenus par titration calorimétrique isotherme ont permis d’évaluer la capacité de méthodes théoriques à reproduire avec précision les résultats expérimentaux. Les calculs ont démontré qu’un traitement théorique approprié des effets de la dispersion et de la solvatation, donne des valeurs cohérentes avec les résultats expérimentaux. Cependant, des améliorations supplémentaires sont nécessaires. / This thesis has shown the importance of integration of theoretical calculations and experimental investigations in studying the role of non-covalent interactions and particularly dispersion interactions in transition metal chemistry. Several subjects were addressed, such as stacking interactions of chelates in transition metal complexes in solid state, influence of chirality on the oligomerization of Rh(I) isonitrile complexes in solution and the stability of the cis-platin type complexes in concentrated solutions. Isothermal titration calorimetry proved to be very useful in the studies by providing accurate experimental data on the thermochemistry of addressed processes. This data was used to gauge the ability of the theoretical methods to accurately reproduce the experimental results. Calculations have shown that the proper treatment of dispersion effects and solvation by theoretical models gives values in relatively good agreement with experiments, but further improvements are needed.
69

Studium interakcí tenzidové složky přípravku Septonex s vybranými proteiny / Study of interactions of the surfactant component of Septonex with selected proteins

Bohunská, Miroslava January 2021 (has links)
The study of protein and surfactant interactions is of great significance in a number of applications, such as the cosmetic, food or pharmaceutical industries and many others. However, they require further study due to their compositional complexity and the limitations of current analytical approaches. In this thesis, the cationic surfactant septonex in combination with two differently charged proteins lysozyme and bovine serum albumin under different physiological conditions (temperature, surfactant concentration, environment and others) was selected to study the interactions. Characterization of protein-surfactant interactions is a very important but challenging task, therefore it is essential to use appropriate approaches to explore the nature of these interactions. In order to unify the information to provide rational models, calorimetric methods (DSC, ITC) and dynamic light scattering were used. Isothermal titration calorimetry monitors the evidence for the formation of the system of the mentioned substances and information on aggregation behavior, differential scanning calorimetry characterizes the thermal stability of proteins and dynamic light scattering made it possible to monitor changes in particle size. Both proteins have been proven to interact with positive septonex, even if the lysozyme molecule is also positively charged. However, significant differences were found between the two proteins. From the obtained results it is evident that the identical charge of the protein with the surfactant has an effect on the intensity of the measurement, although all measured interactions showed an endothermic character.
70

Studium interakcí biopolymer - tenzid pomocí mikrokalorimetrie a metod rozptylu světla / Microcalorimetric and Light Scattering Methods in the Study of Interactions in Biopolymer - Surfactant System

Šojdrová, Kamila January 2018 (has links)
Biopolymer surfactant systems have been studied by using different physico chemical methods. As the biopolymer, it was chosen high (1400–1600 kDa), medium (250–450 kDa) and low (8–15 kDa) molecular weight sodium hyaluronate. Two cationic surfactants – cetyltrimethylammonium bromide (CTAB) and carbethopendecinium bromide (Septonex) were selected to provide polyelectrolyte complexes with oppositely charged hyaluronan. The critical aggregation concentration of the surfactant in the system was monitored by dynamic light scattering (Zetasizer Nano ZS). SEC-MALS method was used for the description of the conformation of sodium hyaluronate of different molecular weights and polyelectrolytes complexes hyaluronan surfactant after reaching the aggregation point. Isothermal titration calorimetry (ITC) was used to determine the critical aggregation concentration of the surfactant by monitoring the thermal changes accompanying the aggregation of the system. It was found out that the increasing molecular weight of hyaluronan in these systems decreases the critical aggregation concentrations and conversely.

Page generated in 0.1318 seconds