Dissertation > Excellent graduate degree dissertation topics show

Synthesis and Aggregation Characteristics of Amphiphilic Copolymer N-maleoyl Chitosan-Pluronic in Aqueous Solution

Author: HanLi
Tutor: FengXia
School: Tianjin University
Course: Physical and chemical
Keywords: Pluronic F127 Chitosan N-maleoy Chitosan micelle aggregation
CLC: O631.3
Type: Master's thesis
Year: 2010
Downloads: 108
Quote: 0
Read: Download Dissertation

Abstract


Amphiphilic copolymer N-maleoyl Chitosan-Pluronic (CMAP) was synthesized from thermo-sensitive Pluronic F127 and pH-sensitive Chitosan. The copolymer may increase the solubility of hydrophobic drugs and control their release in vivo due to the formation of self-assembled micelles, so it may be a type of novel superior drug carrier for sustained delivery of hydrophobic drugs. The following works have been done in the thesis:1. CMAP was synthesized through the reaction of Chitosan, maleic anhydride with Pluronic F127.1-(3-dimethylaminopropyl)-3-ethyl carbodiimide (EDC·HCl) and N-hydroxysuccinimide (NHS) were proved to be the most appropriate reaction catalyzers. The product of CMAP was finally confirmed by IR analysis and 1H-NMR analysis.2. Dynamic light scattering (DLS), fluorescence measurement and viscosity method were used to investigate the characteristic of CMAP in the system. The result showed that the Molecular weight (Mr) of the CMAP was 79706 Da, and the Critical Micelle Concentration (CMC) of CMAP was 1.38×10-6 mol/l. The average size of CMAP micelles characterized by DLS was found to be 150 nm.3. The effects of temperature、pH value、solution concentration and different additives (such as NaCl, SDS, SDBS, CTAB and PEG-2000) on the aggregation properties and stability of polymer micelles were studied. The results showed that the mean size of micelle (from 150 nm to 320 nm) and solution viscosity incresed when NaCl was added in solution; the light scattering intensity of CMAP solution was increased along with the increase of the concentration of NaCl,then, the light scattering intensity of CMAP solution came down when the concentration of NaCl was high, which meant that NaCl at low concentration promoted micelles aggregation, while high NaCl concentration held back micelles aggregation. Adding a small amount of SDS to the CMAP solution could decrease the solution viscosity and light scattering intensity, then the viscosity and light scattering intensity of CMAP solution increased remarkably with the increase of the concentration of SDS; the average size of micelles increased from 150 nm to 320 nm. The SDBS showed the same impact on the polymer solution as the SDS did. The CTAB, a kind of cationic surfactant, decreased the light scattering intensity of solution, and prevented the polymer micelles from aggregating due to static repultion. The effect of of nonionic surfactant PEG-2000 on the solution was indistinctive. The above mentioned results demonstrated that the anionic surfactants could enlarge the micelles while the cationic surfactants showed abhorrent influence on micelles. It promoted micelles aggregating along with increased concentration of CMAP. The viscosity of CMAP solution reduced as the temperature increased. The pH value of solution remarkable influenced polymer micellar stability. The light scattering intensity of CMAP solution decreased obviously when the solution was in alkali condition, which meant that micelles were not stable. When the CMAP solution was acidic solution, the light scattering intensity of the solution increased obviously, and the micelles in the kind of solution tended to aggregate.

Related Dissertations

  1. Data Aggregation Scheduling Algorithms in Wireless Sensor Networks,TP212.9
  2. Studies on Chitosan and Its Derivatives Adsorption for Paralytic Shellfish Poisoning in Ostrea Rivularis Could,TS254.4
  3. CYP2C19 Gene Polymorphism in Patients with Ischemic Cerebrovascular,R743
  4. Thermal Stability of Complexes of Chitosan Quaternary Ammonium Salt and Metal Ion,O634
  5. Polyethylenimine Conjugated Stearic Acid-g-chitosan Oligosaccharide Micelles for Antitumor Gene Therapy,R450
  6. Preparation and Characterization of the OCS/PLLA Composite Film for Biomedical Materials,R318.08
  7. Study on the Accumulation and Remove of Cadmium and Lead in Oysters,X174
  8. Study on the Synthesis and Adsorption Behaviour of Chitosan Derivative,TS254.9
  9. Improvement of Preparation Technology for Chitin and Chitosan from By-product of Litopenaeus Vannamei,TS254.9
  10. Biological Control of Meloidogyne Spp. in Cucumber (Cucumis Sativus L.) and Development of the Ecological and Environment-friendly Fertilizer with Pesticides,S436.421
  11. Preparation and Properties of Chitosan-based Thermosensitive Composite Hydrogel,R943
  12. Acid solution on the structure and properties of chitosan / hydroxyapatite composite,R318.08
  13. Study on Chitosan-Based Composiate Nano-Coating Dope and Its Effect of Fresh-Keeping for Coated Egg,TS253.2
  14. The Physico-chemical Property and Functional Investigation of the C-terminal E Peptide of Mechano Growth Factor,Q51
  15. Studies on the Aggregation and Microstructure of Imidazolium Ionic Liquids in Solutions,O645.1
  16. Studies on the Dissolution of Chitosan in Ionic Liquids,O636.1
  17. Application Adipose-devired Stem Cells and Silk Fibroin and Chitosan Scaffold Materials Building Common Cells-stents Complex Experiments,R329
  18. Bovine serum albumin and protamine from NOCC / alginate hydrogels release : the isoelectric point of two different biological molecules controlled trial,R943
  19. Restructuring lampreys RGD peptides antithrombotic Pharmacodynamics,R285.5
  20. Alginate - chitosan membrane in guided bone regeneration in applied research,R318.08
  21. Chitosan Supported Metal Complexes and Their Catalytic Oxidation Resistance,O634

CLC: > Mathematical sciences and chemical > Chemistry > Polymer chemistry ( polymer ) > Polymer physics and physical chemistry of polymers > The chemical nature of polymers
© 2012 www.DissertationTopic.Net  Mobile