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Featured researches published by Jin Ningyi.


Molecular Cancer | 2010

Potent anti-tumor effects of a dual specific oncolytic adenovirus expressing apoptin in vitro and in vivo

Li Xiao; Liu Yan; Wen Zhongmei; Li Chang; Lu Huijun; Tian MingYao; Jin KuoShi; Sun Lili; Gao Pegn; Yang Encheng; Xu Xiaohong; Kan Shifu; Wang Zhuoyue; Wang Yuhang; Jin Ningyi

BackgroundOncolytic virotherapy is an attractive drug platform of cancer gene therapy, but efficacy and specificity are important prerequisites for success of such strategies. Previous studies determined that Apoptin is a p53 independent, bcl-2 insensitive apoptotic protein with the ability to specifically induce apoptosis in tumor cells. Here, we generated a conditional replication-competent adenovirus (CRCA), designated Ad-hTERT-E1a-Apoptin, and investigated the effectiveness of the CRCA a gene therapy agent for further clinical trials.ResultsThe observation that infection with Ad-hTERT-E1a-Apoptin significantly inhibited growth of the melanoma cells, protecting normal human epidermal melanocytes from growth inhibition confirmed cancer cell selective adenoviral replication, growth inhibition, and apoptosis induction of this therapeutic approach. The in vivo assays performed by using C57BL/6 mice containing established primary or metastatic tumors expanded the in vitro studies. When treated with Ad-hTERT-E1a-Apoptin, the subcutaneous primary tumor volume reduction was not only observed in intratumoral injection group but in systemic delivery mice. In the lung metastasis model, Ad-hTERT-E1a-Apoptin effectively suppressed pulmonary metastatic lesions. Furthermore, treatment of primary and metastatic models with Ad-hTERT-E1a-Apoptin increased mice survival.ConclusionsThese data further reinforce the previously research showing that an adenovirus expressing Apoptin is more effective and advocate the potential applications of Ad-hTERT-E1a-Apoptin in the treatment of neoplastic diseases in future clinical trials.


Microbiology and Immunology | 2008

Enhancing effects of the chemical adjuvant levamisole on the DNA vaccine pVIR‐P12A‐IL18‐3C

Lu Huijun; Huo Xiaowei; Zhang Ying; Zheng Min; Ma Mingxiao; Zhang Hongyong; Jin Minglan; Shen Guoshun; Jia Leili; Ji Yue; Li Xu; Jin KuoShi; Jin Ningyi

DNA‐based vaccination is an attractive alternative for overcoming the disadvantages of inactivated virus vaccines; however, DNA vaccines alone often generate only weak immune responses. In this study, the efficacy of LMS as a chemical adjuvant on a DNA vaccine (pVIR‐P12A‐IL18‐3C) encoding the P1‐2A and 3C genes of the FMDV and swine IL‐18, which provides protection against FMDV challenge, was tested. All test pigs were administered booster vaccinations 28 days after the initial inoculation, and were challenged with 1000 ID50 FMDV O/NY00 20 days after the booster vaccination. Positive and negative control groups were inoculated with inactivated virus vaccine and PBS respectively. The DNA vaccine plus LMS induced greater humoral and cell‐mediated responses than the DNA vaccine alone, as evidenced by higher concentrations of neutralizing and specific anti‐FMDV antibodies, and by higher concentrations of T‐lymphocyte proliferation and IFN‐γ production, respectively. FMDV challenge revealed that the DNA vaccine plus LMS provided higher protection than the DNA vaccine alone. This study demonstrates that LMS may be useful as an adjuvant for improving the protective efficiency of DNA vaccination against FMDV in pigs.


Chinese Science Bulletin | 2006

Immune responses of a designed HIV-1 DNA vaccine on rhesus monkeys

Zhang Lishu; Jin Ningyi; Song Yingjin; Sun Yan-song; Wang Hong; Zhan Dawei; Ma Hewen; Shang Yupu; Jin Hongtao; Hong Baoqing; Li Chang

An effective HIV-1 vaccine will be the ultimate solution for the prevention of HIV/AIDS, though HAART plays important roles in treating the disease. In this study, a large-scale recombinant DNA plasmid containing a designed HIV-1 multi-epitope-p24 chimeric gene was prepared and purified. Rhesus monkeys were then inoculated muscularly with the plasmid for four times in week 0, 4, 8 and 18. Whole blood was collected two weeks after the third and fourth inoculation, followed by serum and peripheral blood mononuclear cell (PBMC) separation. The CTL activity and proliferation of PBMCs stimulated by macaque MHC-I-restricted HIV-1 CTL epitope peptide were analyzed by MTT and LDH release assay, respectively. Th1 cytokines in supernatant of cultured PBMC stimulated by HIV-1 CTL epitope peptide and anti-HIV-1 antibody in serum were assayed by ELISA. The results showed that increased CTL target-killing activity, higher secretion of Th1 cytokines (IFN-γ and IL-2) and promoted proliferative reaction of monkey PBMCs stimulated by HIV-1 CTL epitope peptide were detected in the immunization group inoculated by the recombinant DNA vaccine for three times, which were further enhanced by the fourth inoculation. At the same time, HIV-1 specific antibody in serum of immunized monkeys was higher than that in controls. We concluded that the designed HIV-1 DNA vaccine may induce HIV-1 specific cellular and humoral immunity on monkeys.


Science China-life Sciences | 2007

Construction and characterization of a recombinant fowlpox virus containing HIV-1 multi-epitope-p24 chimeric gene in mice

Zhang Lishu; Jin Ningyi; Song Yingjin; Wang Hong; Ma HeWen; Li Zijian; Jiang Wenzheng

The epidemic of HIV/AIDS is sweeping across the world. It is of great importance to figure out new ways to curb this disease. Epitope-based vaccine is one of these solutions. In this study, a chimeric gene was obtained by combination of a designed HIV-1 multi-epitope gene (MEG) and HIV-1 p24 gene. A recombinant plasmid pUTA2-MEGp24 was then constructed by inserting MEGp24 gene into the downstream of the promoter (ATI-P7.5×20) of fowlpox virus (FPV) transfer vector pUTA2. The recombinant plasmid and wild-type FPV 282E4 strain were then co-transfected into CEF cells and homologous recombination occurred. A recombinant virus expressing HIV-1 protein MEGp24 was screened by genome PCR and Western blot assay. Large scale preparation and purification of the recombinant fowlpox virus (rFPV) were then carried out. BALB/c mice were immunized intramuscularly with the rFPV for three times on day 0, 14 and 42. Mice were executed and sampled one week after the third inoculation. Anti-HIV-1 antibody in serum and Th1 cytokines in the supernatant of cultured spleen cells were assayed by ELISA. The count of T lymphocyte subsets and the CTL activity of spleen lymphocytes were analyzed by flow cytometry and lactate dehydrogenase (LDH) release assay, respectively. The results showed that HIV-1 specific antibody in serum and increased T lymphocyte subsets (CD4+ T, CD8+ T) were detected in the immunization group. CTL target-killing activity and higher secretion of Th1 cytokines (IFN-γ and IL-2) of spleen lymphocytes stimulated by H-2d-restricted CTL peptide were observed in immunized mice. We concluded that the rFPV may induce HIV-1 specific immunity especially cellular immunity in mice.


Vaccine | 2006

Construction and immunogenicity of recombinant fowlpox vaccines coexpressing HA of AIV H5N1 and chicken IL18

Ma Mingxiao; Jin Ningyi; Wang Zhen-guo; Wang Ruilin; Fei Dongliang; Zheng Min; Yin Gefen; Li Chang; Jia Leili; Jin KuoShi; Zhang Yingjiu


Antiviral Research | 2007

Immunogenicity of plasmids encoding P12A and 3C of FMDV and swine IL-18.

Ma Mingxiao; Jin Ningyi; Liu Hui Juan; Zheng Min; Shen Guoshun; Zhu Guangze; Lu Huijun; Huo Xiaowei; Jin Minglan; Li Xu; Ma Haili; Ji Yue; Yin Gefen; Jin KuoShi


Chinese Science Bulletin | 2006

Construction and anti-tumor effects of recombinant fowlpox virus expressing Newcastle disease virus hemagglutinin-neuramidinase gene

Li Xiao; Jin Ningyi; Lian Hai; Guan Goufang; Sun Lili; Li Xuemei; Zheng Hongling


Chinese Journal of Veterinary Drug | 2011

Development Review on Healthy Function and Potential Mechanisms of Lactic Acid Bacteria

Jin Ningyi


Virologica Sinica | 2004

Co-inoculating DNA Vaccine of HIV-1 gag-gp120 and IL-2

Jiang Wenzheng; Jin Ningyi; Li Zijian; Zhang Lishu; Zhang Hongyong


Archive | 2004

Genome sequence of O-foot and mouth disease virus NYOO lines

Zheng Min; Jin Ningyi; Zhang Hongyong

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Jin KuoShi

Academy of Military Medical Sciences

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Li Chang

Academy of Military Medical Sciences

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Li Xiao

Academy of Military Medical Sciences

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Zhang Hongyong

Academy of Military Medical Sciences

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Zhang Lishu

Academy of Military Medical Sciences

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Zheng Min

Academy of Military Medical Sciences

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Jiang Wenzheng

East China Normal University

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Lu Huijun

Academy of Military Medical Sciences

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