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Title

DESIGN, SYNTHESIS, PHYSICOCHEMICAL AND IMMUNOLOGICAL CHARACTERIZATION OF DENDRIMER-HBSAG CONJUGATE

Pages

  24-28

Abstract

 Introduction: Manufacturing new Hepatitis B virus VACCINEs, specifically by the use of nanoparticles, is of high global interest. In this paper, a new structure of nano-sized hepatitis B virus’ surface antigen (HBSAG) was generated by conjugation with DENDRIMERS. Methods: The physicochemical properties of the CONJUGATE were characterized by zeta potential and size distribution analyses and FT-IR spectrometry. Results: The results confirmed the conjugation between HBSAG and the DENDRIMERS. Immunological assays indicated that the immunogenicity of the CONJUGATEd HBSAG is more than HBSAG alone.Conclusion: In the current study, a cost-effective, biodegradable and biocompatible polymer was used to enhance the immunogenicity of HBSAG. Also, further investigations are required to explore the mechanisms of action of this nanocomplex VACCINE candidate.

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    APA: Copy

    KHOSRAVY, MOHAMMAD SADEQ, SHAFIEE ARDESTANI, MEHDI, AHANGARI COHAN, REZA, DOROUD, DELARAM, AMINI, SAFIEH, MOMEN, SEYED BAHMAN, ATYABI, SEYED MOHAMMAD, HEYDARI, HOSSIEN, & VAHABPOUR, ROHOLLAH. (2014). DESIGN, SYNTHESIS, PHYSICOCHEMICAL AND IMMUNOLOGICAL CHARACTERIZATION OF DENDRIMER-HBSAG CONJUGATE. VACCINE RESEARCH, 1(2), 24-28. SID. https://sid.ir/paper/344372/en

    Vancouver: Copy

    KHOSRAVY MOHAMMAD SADEQ, SHAFIEE ARDESTANI MEHDI, AHANGARI COHAN REZA, DOROUD DELARAM, AMINI SAFIEH, MOMEN SEYED BAHMAN, ATYABI SEYED MOHAMMAD, HEYDARI HOSSIEN, VAHABPOUR ROHOLLAH. DESIGN, SYNTHESIS, PHYSICOCHEMICAL AND IMMUNOLOGICAL CHARACTERIZATION OF DENDRIMER-HBSAG CONJUGATE. VACCINE RESEARCH[Internet]. 2014;1(2):24-28. Available from: https://sid.ir/paper/344372/en

    IEEE: Copy

    MOHAMMAD SADEQ KHOSRAVY, MEHDI SHAFIEE ARDESTANI, REZA AHANGARI COHAN, DELARAM DOROUD, SAFIEH AMINI, SEYED BAHMAN MOMEN, SEYED MOHAMMAD ATYABI, HOSSIEN HEYDARI, and ROHOLLAH VAHABPOUR, “DESIGN, SYNTHESIS, PHYSICOCHEMICAL AND IMMUNOLOGICAL CHARACTERIZATION OF DENDRIMER-HBSAG CONJUGATE,” VACCINE RESEARCH, vol. 1, no. 2, pp. 24–28, 2014, [Online]. Available: https://sid.ir/paper/344372/en

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