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Wenxiang Jia

Publications and source records attributed to Wenxiang Jia.

3 recordsLinked to original sources

[Construction and expression of traceable DNA vaccine for prevention of caries].

OBJECTIVE: Streptococcus mutans has been proved as a causative bacteria of human dental caries. The surface protein antigen is one of the important pathogenic factors. The A region of the surface protein antigen pac gene (pacA) can enrich T-cells and B-cells epitope. In this study, a DNA vaccine carrying pacA and gfp gene (a reporter gene) for caries prevention was constructed. The DNA vaccine was liable to be traced in vitro and in vivo. METHODS: The fragment of pacA (1.3 kb) was amplified by PCR with the plasmid pPC41 as template, and inserted into a pEGFP-C1 vector. The recombinant plasmid produced was named as pEGFPC1-pacA. After the COS1 cell line was transfected by the recombinant plasmid, the expression of gfp was detected by observing the green fluorescence and measuring the fluorescence intensity, and the expression of pacA was detected by RT-PCR. RESULTS: Restricted analyzing, sequencing and PCR technique were employed to identify the recombinant plasmid. The phase and orientation of the pacA gene inserted into the vector pEGFPC1 were correct and no changes of their open reading frames were discovered. The transfected COS1 carrying green fluorescent protein (GFP) was observed; the GFP expression level of transfected cells was higher than that of controlled cell. The transcript of pacA gene was confirmed by RT-PCR. CONCLUSION: Construction of the recombinant plasmid was successful. The gfp gene and pacA gene in the plasmid was transcribed and expressed simultaneously in the transfected cells. Moreover, detection of GFP is simple, safe and effective for living cells.

Dental Caries↗

[Optimizing cultural conditions of measles vaccine working seed lot with orthogonal experiments].

OBJECTIVE: To improve the quality of measles vaccine and find out good combination of cultural factors of measles vaccine virus seeds. METHODS: Orthogonal experiments were made to confirm optimized cultural factors. 5 lots of optimized measles vaccine working seed lot were prepared. RESULTS: The titers of the optimized vaccine seed improved significantly (> or = 0.69 +/- 0.35 LgCCID50/1.0 ml, P < 0.05), compared with 5 lots of traditional working seed lot. With these seeds we trial-prepared 5 lots of lyophilized vaccines respectively, the titer and stability met the Chinese Requirements of Biological Products. CONCLUSION: The orthogonal experiment is a kind of good method for optimizing cultural conditions of measles vaccine working seed lot. The yield and quality of measles vaccine can be improved in the optimized working seed lot with high titer and good stability.

Culture Media↗

Study on biodegradable microspheres containing recombinant interferon-alpha-2a.

In this work, a new microsphere delivery system comprising calcium alginate microcores surrounded by a biodegradable poly-DL-lactide-poly(ethylene glycol) (PELA) coat was designed to improve the loading efficiency and stability of peptide drugs. Recombinant interferon (IFN)-alpha-2a, used as a model peptide drug, was efficiently entrapped within the alginate microcores using a high-speed stirrer and then microencapsulated into PELA copolymer using a water-in-oil-in-water solvent extraction method. Microspheres were characterized in terms of morphology, size and distribution, encapsulation efficiency, IFN biological activity retention and in-vitro peptide release. The IFN potency test showed that IFN entrapped in the core-coated microspheres could retain its biological activity during the encapsulation and release procedure. The release profiles were determined by the measurement of peptide presenting in the release medium at various intervals. The IFN potency, calculated by the Wish cells/vesicular stomatitis virus system, was used to determine IFN biological activity. The results showed that the core-coated microspheres could stabilize IFN in the PELA matrix. We compared the new deliverysystem with conventional microsphere delivery systems based on biodegradable poly-DL-lactide and poly-DL-lactide-poly(ethylene glycol). The core-coated microspheres had the highest amount of entrapment, encapsulation efficiency and biological activity retention. The extent of burst release (14%) from the core-coated microspheres in the initial protein release was much lower than the 31% burst release from the conventional microspheres. In conclusion, this work presents a new approach for water-soluble macromolecular drugs delivery (e.g. protein, peptide drugs, vaccines).

Biotechnology↗