Dissertation > Excellent graduate degree dissertation topics show

Study on DNA Vaccine of Human Papillomavirus 16 (HPV16) E7 and Transdermal Delivery with Microneedle Array

Author: PanJinChun
Tutor: LiHouDa
School: Yangzhou University
Course: Zoology
Keywords: Human Papillomavirus 16(HPV16) HPV16 E7 gene DNA vaccine microneedle array humoral immunity and cellular immunity
CLC: R392
Type: Master's thesis
Year: 2005
Downloads: 273
Quote: 0
Read: Download Dissertation

Abstract


Human papillomavirus (HPV) belongs to papovaviridae, and it is a kind of small DNA virus that usually produce benign lesions on cutaneous and mucosal surfaces. HPV infection is widespread in the population and associated with a broad spectrum of human diseases ranging from benign condyloma, common skin warts, laryngeal papillomas to anogenital cancers and cervical cancer. There is no doubt that infection with certain types of HPV is the main cause of cervical cancer. Initially, HPV DNA was detected in 93% of the cervical cancer specimens using a PCR assay, and HPV 16 was more than 50% of all. Therefore, HPV, especially HPV16 is the main factor to induce cervical cancer.Recently, the use of micron-scale needles in increasing skin permeability has been proposed and shown to dramatically increase transdermal delivery, especially for macromolecules. Microneedle array can only penetrate skin cutin(15-25μm),which is barrier for drug pervasion, and get through hundreds of channels. But the needlepoints can not run into cutis, which contain abundant nerve and capillary vessel. Therefore, drugs can diffuse rapidly via channels into capillary vessels and then into body cycle. Acting as the first barrier of resisting environment pathogen, the immunity function of skin system is quite strong, therefore, transdermal immunization can arouse efficient and strong immunoreaction. This newfashioned immune approach can increase drug effect, and reduce side-effect. Furthermore, the price of the equipment is cheap and can easily operate.In this article, in order to find an effective method to cure HPV, we prepared HPV16 E7 DNA vaccine and delivered with microneedle array. We establishedHPV16E7-pcDNA3.1 (-) recombinant vector, which acted as gene vaccine. The DNA vaccine can easily get across the microchannels generated by microneedle arrays in vitro. Moreover, the course was permanent and the whole infiltration quantity was comparatively big, reaching 0.74 mg/cm2 in the 30~th h. We immunized BALB/c mouse with a dose of 200Mg with microneedle array every two weeks. Two weeks after the third immunization, we separated serum and lymphocytes separately to detect the functions of humoral immunity with indirect immunofluorescence test, and detect the functions of cellular immunity with lymphocyte transformation test. As a result, the functions of humoral immunity and cellular immunity were obviously increased.This article was looking for an effective method to cure HPV by preparing the DNA vaccine of HPV16 E7, combined administer with microneedle array to make DNA vaccine more effective absorption and expression. We hope it’s a beneficial attempt to open out DNA vaccine of HPV 16 and generalize this newfashioned immune approach - administer with microneedle array.

Related Dissertations

  1. DNA Prime/Protein Boost of Japanse Edcephalitis Virus NS1 Protein to Improve Immune Response in Mice,R392
  2. The Preliminary Study of the pcDNA3.1(+)-SjP14 Nanometer Microballoon-DNA Vaccines,R392.1
  3. Study on Pharmacokinetics and Spatial and Temporal Expression in Mice of DNA Vaccine against Schistosoma Japonicum,S855.91
  4. DNA Vaccines Co-expressing Containing Hsp70 and E/M Protein of Porcine Reproductive and Respiratory Syndrome Virus (PRRSV) Display Enhanced Immunogenicity,S855.3
  5. The Adjuvant Effect of Astragalus Polysaccharides on Immune Response Against HBV DNA Vaccine in Mice,R392
  6. Microfabrication of the High Aspect Ratio Microstructure,TN305.93
  7. Percutaneous Enhancement of Microneedle Arrays for Different Physico-chemical Property Drugs,R94
  8. Construction of Bicistronic DNA Vaccines Containing Hepatitis B Virus Core Antigen and Flt3 Ligand Genes and Expression in Vitro,R392
  9. Molecular Cloning and Immune Effects of DNA Vaccination of the E2 Gene From Classical Swine Fever Virus,S852.5
  10. Construction and Evaluation of Channel Catfish Virus (CCV) ORF6 Gene Suicide DNA Vaccine,R392.1
  11. Construction of Bivalent Nucleic Acid Vaccines Against IBV and IBDV and Immune Adjuvant Effect of Chicken IL-8 on the Vaccines in Chicken,R392
  12. Effects of Ag85A DNA Vaccine on the Proliferation Ability of Lymphocyte and Expression Level of FasL mRNA on Mice with Bladder Cancer,R737.14
  13. Cloning of Cattle IL-18, Construction and Expression of Multi-epitope Recombinant of O Type of Foot-and-Mouth Disease Virus (FMDV) and Detection of Immunitical Activity,Q78
  14. Construction of Rabies Virus Glycoprotein DNA Vaccine and Immune Response in Mice Induced by the Vaccine,R392
  15. Immunocompetence of Nucleic Acid Vaccines of Neisseria Gonorrhoeae Surface Protein A Fused with B Subunit of Escherichia Coli Heat-labile Enterotoxin,R392
  16. Immunoprotective Effects of DNA Vaccine of p55 Gene Fragment Against Pneumocystis Carinii,R392.1
  17. Immune Responses to HBV Surface Protein Using DNA Prime and Prome and Protein Boost Stuategy in Balb/c Mice,R392
  18. Construction of Human Sperm Membrane Antigen PH-20 DNA Vaccine Vector and Its Expression in Vivo and in Vitro,R392
  19. Construction of Coexpression Vector Containing Capripoxvirus P32 Gene and Goat CD58 Gene and Immune Activity Analysis of the Expression Production,S858.26
  20. Study the Preparation Technology and the Preliminary Immune Effect Evaluation of Bovine Tuberculosis Trivalent DNA Vaccine,S858.23

CLC: > Medicine, health > Basic Medical > Medical Immunology
© 2012 www.DissertationTopic.Net  Mobile