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Dao-Yin Zhu

Publications and source records attributed to Dao-Yin Zhu.

4 recordsLinked to original sources

Recombinant M. smegmatis vaccine targeted delivering IL-12/GLS into macrophages can induce specific cellular immunity against M. tuberculosis in BALB/c mice.

In the present study, we constructed a viable therapeutic vaccine of recombinant M. smegmatis mediated IL-12/GLS (granulysin) gene transfer into murine macrophages to exert the immunotherapy effects on the Mycobacterium tuberculosis infection. We tested this recombinant therapeutic vaccine in an in vivo study to determine its capability of stimulating host specific immune responses against M. tuberculosis. BALB/c mice intranasally immunized with the therapeutic vaccine developed an efficient Th1 protective immune response against M. tuberculosis which was equal to that of the BCG strain. Inoculation intranasally with this viable vaccine induced high level of serum IFN-gamma, IL-12 and IgG2a. The viable vaccine was capable of inducing purified protein derivative (PPD) antigen-specific splenocytes proliferation and IFN-gamma production from T cells in spleens of the immunized mice. In addition, intranasally inoculation with the viable vaccine can induce PPD antigen-specific sIgA production in the broncho-alveolar lavage fluid (BALF) of the immunized mice. No change of IL-4 level was found in all groups. The therapeutic mechanism of this viable vaccine against M. tuberculosis infection observed here appeared to be a result of the specific Th1 immune response activated by mycobacterium antigen from M. smegmatis and the expression of sIL-12/GLS in alveolar macrophages via the M. smegmatis-mediated gene transfer method. This research demonstrates that the therapeutic gene can be introduced into a host by viable mycobacteria works to induce the host specific immune response against M. tuberculosis infection in vivo. Since this therapeutic vaccine can strongly induce specific Th1 responses against M. tuberculosis in BALB/c mice and has no obviously harmfulness to the host simultaneously, the recombinant vaccine might be a potential candidate therapeutic vaccine against tuberculosis.

Animals↗

Effective siRNA targets screening for human telomerase reverse transcriptase.

AIM: To study the inhibitory effects of siRNAs targeting different hTERT sequences and to screen the effective siRNA sequence. METHODS: Five double-stranded siRNAs targeting coding and non-coding regions of hTERT gene were designed and synthesized by T7 transcription system in vitro. siRNA4 sequence was screened by full length gene targeting technique and the rest of the siRNA sequences were selected randomly. After being purified by ethanol precipitation, the siRNAs were transfected to the human hepatocellular carcinoma cell (HepG2) by Lipofectamine 2000. At 48-72 h after siRNAs transfection, MTT assay, RT-PCR and Western-blot were applied to evaluate the effects of siRNAs on cell growth, mRNA and protein expression level of hTERT gene, respectively. RESULTS: Compared to the control cells, the cells treated with the five double-stranded siRNAs exhibited different degrees of inhibition of cell proliferation in a dose-dependent manner. siRNA2 and siRNA4, exhibited obvious effects of inhibiting hTERT mRNA and protein expression in HepG2 cells. CONCLUSION: siRNAs targeting different hTERT sequences have significantly various inhibitory effects on hTERT gene expression. The siRNA sequence screened by full length gene targeting technique has comparable inhibitory effect with the rest siRNA sequences screened by random selection, suggesting that siRNAs and antisense oligonucleic acids may have the same effective target sites. Compared with chemical synthesis method, synthesizing double-stranded siRNA by T7 transcription system in vitro is a rapid, simple, and inexpensive method suitable for screening high-effect siRNA targeting site for specific gene.

Carcinoma, Hepatocellular↗

[A study of the protective effect of the DNA vaccine encoding tubercle antigen 85B with MPT64 in mice challenged with Mycobacterium tuberculosis].

OBJECTIVE: To explore the protective effect of the DNA vaccine encoding Mycobacterium tuberculosis Ag85B with MPT64 in mice infected with Mycobacterium tuberculosis. METHODS: Fifty four C57BL/6 mice were randomized into six groups and subjected to the following treatments respectively: intramuscularly immunized with PBS, pcDNA3.1, BCG, pcDNA/Ag85B, pcDNA/MPT64 and pcDNA/Ag85B + pcDNA/MPT64 on three occasions at 3-week intervals. The BCG group received a single subcutaneous injection of 1 x 10(6) CFU BCG. The mice were challenged with 10(6) CFU H(37)Rv via lateral tail vein 35 days later after the third immunization for DNA vaccine groups and 100 days later for BCG vaccinated group. The mice in vaccinated groups and control groups were sacrificed 42 days later following challenge. The lungs and spleens were removed, and the number of CFU in organs and histopathologic changes were determined. The antibody level, IFN-gamma, IL-4 and the survival time in all of the mice were evaluated. RESULTS: The number of bacterial colonies in the lungs and spleens were lg(-1) (7.854 +/- 0.003) CFU/g and lg(-1) (7.190 +/- 0.016) CFU/g in PBS group, lg(-1) (7.700 +/- 0.016) CFU/g and lg(-1) (7.072 +/- 0.068) CFU/g in pcDNA3.1 group, lg(-1) (6.449 +/- 0.002) CFU/g and lg(-1) (5.436 +/- 0.042) CFU/g in BCG group, lg(-1) (7.370 +/- 0.002) CFU/g and lg(-1) (6.430 +/- 0.009) CFU/g in pcDNA/Ag85B group, lg(-1) (7.547 +/- 0.003) CFU/g and lg(-1) (6.784 +/- 0.002) CFU/g in pcDNA/MPT64 group, and lg(-1) (6.918 +/- 0.002) CFU/g and lg(-1) (6.079 +/- 0.004) CFU/g in pcDNA/Ag85B + pcDNA/MPT64 group respectively, which showed significant decrease at 6th week postchallenge in all the vaccinated groups (P < 0.05), especially in BCG group (P < 0.01). Antibody titer of pcDNA/Ag85B + pcDNA/MPT64 group and pcDNA/Ag85B group was higher than that of the other groups (P < 0.05). The level of IFN-gamma produced by spleen lymphocytes and spleen lymphocyte proliferation from BCG group, pcDNA/Ag85B + pcDNA/MPT64 group was higher than that of the other groups (P < 0.05). No IL-4 was detected in all groups. The pulmonary histopathological changes were observed 6 weeks later following challenge with Mycobacterium tuberculosis H(37)Rv. In PBS and pcDNA3.1 groups, the lesion was characterized by inflammatory infiltration and lung tissue necrosis, in BCG group by granulomas and numerous macrophages, lymphocytes and a few epithelioid cells. The lesion in pcDNA/Ag85B group was characterized by serofibrous inflammatory infiltration and a few macrophages, in pcDNA/Ag85B + pcDNA/MPT64 group, by granulomas, numerous macrophages and lymphocytes. The lesion in spleen was different from the lung and characterized by proliferative lymphocytes and inflammatory infiltration. The results in spleen were similar to those in the lung. The survival time of BCG vaccinated mice after challenge with Mycobacterium tuberculosis H(37)Rv was longer than that of the other groups. The survival time of pcDNA/Ag85B + pcDNA/MPT64 group was longer than that of other DNA vaccine groups. CONCLUSION: The protective effect of BCG was more significant than the other groups, while the effect of pcDNA/Ag85B + pcDNA/MPT64 was better than other DNA vaccines.

Acyltransferases↗

[Construction of the prokaryotic expression vector of MTB lhp gene and its expression].

AIM: To construct prokaryotic expression vector carrying lhp gene and express it in E.coli. METHODS: The MTB lhp gene was amplified by PCR and then cloned into plasmid pQE30. After sequencing, the gene was cloned into plasmid pET32a(+) to construct recombinant prokaryotic expression vectors pQE30-CFP10 and pET32a(+)-CFP10. RESULTS: After transformation of the E.coli and induction with 1 mmol/L of IPTG, no additional protein was expressed in pQE30-CFP10 system, but recombinant target protein with M(r) 20 000 or so was expressed in pET32a(+)-CFP10 system, and the expressed protein was maximum when induced with IPTG for 4 h. The expressed protein existed in cytoplasm in soluble form and amounted to 38% of total protein of E.coli. Western blot analysis showed that the protein had good antigenicity. The purity of the protein purified through the Ni-NTA resin reached 93%. CONCLUSION: The prokaryotic expression vector pET32a(+)-CFP10 was constructed successfully and the rCFP10 protein was obtained, which laid the foundation for application of the rCFP10.

Blotting, Western↗