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1.
Chinese Journal of Biotechnology ; (12): 863-874, 2017.
Article in Chinese | WPRIM | ID: wpr-242222

ABSTRACT

The study was to express prME protein of Japanese encephalitis virus (JEV) in Pichia pastoris and then to evaluate the immunological properties of the recombinant protein in mice, so as to explore a new way for subunit vaccine development of JEV. The JEV prME gene was amplified by RT-PCR with genome RNA of JEV vaccine strain SA14-14-2 and subcloned into pPICZa-A vector, designated as pPICZα-prME. pPICZα-SprME was constructed same as pPICZα-prME besides with the additional 19 Aa signal peptides coding gene of the JEV cap protein C terminal. The linearized expression vector was integrated into the genome of Pichia pastoris X33 under the control of the alcohol oxidase (AOX1) promoter and induced with methanol during fermentation expression. The expression of JEV prME protein was identified by SDS-PAGE and Western blotting, and then it was purified by S-400 High Resolution HiPrep 16/60 Sephacry. The expressed products of Pichia pastoris were visualized by electron microscopy. In the immunization test, four groups of four-week old female mice were immunized subcutaneously with different doses purified JEV prME protein with complete Freund's adjuvant at a volumetric ratio of 1:1 and a control group was injected with sterile PBS. 10 μg/dose purified JEV prME protein mixing different doses nucleic acid adjuvant (Naa) was vaccinated in mice as the same mode. SDS-PAGE and Western blotting indicate that JEV prME was not cleaved between prM and E during secreted expression in Pichia pastoris. The purified recombinant prME was eluted in the first eluting peak which indicated that its molecular weight about 1×10⁶ Da to 20×10⁶ Da and may form a multimeric. Both the culture supernatant and the purified protein, examined by electron microscopy, we found to contain JEV virus like particles (VLPs) with diameters of 30-50 nm. The anti-JEV VLPs antibody titration reached peak at 3 wpi and still maintained in mice at 7 wpi inoculated with 10 μg and 15 μg prME. The strong antibody response was observed when the mice immunized with prME mixing nucleic acid adjuvant, which elicited high neutralizing antibody titer among 1:80 to 1:160. In conclusion, although JEV prME protein expressed in Pichia pastoris was not cleaved, which formed VLPs and showed efficient immunological properties in mice experiments.

2.
Ciênc. rural ; 40(1): 238-245, jan.-fev. 2010.
Article in Portuguese | LILACS | ID: lil-537365

ABSTRACT

Dentre todas as células-tronco estudadas até o presente momento, as mesenquimais (MSC) destacam-se por sua elevada plasticidade, podendo originar tecidos mesodermais e não mesodermais. Além disso, possuem características imunomoduladoras e imunossupressoras que ampliam as possibilidades de utilização terapêutica. As MSC secretam uma grande variedade de citocinas pró e anti-inflamatórias e fatores de crescimento e, por meio dessas moléculas bioativas, proporcionam a modulação da resposta inflamatória, o restabelecimento do suprimento vascular e a reparação adequada do tecido, contribuindo para a homeostasia tissular e imunológica sob condições fisiológicas. Também podem induzir as demais células presentes no nicho tecidual a secretarem outros fatores solúveis que estimulam a diferenciação dessas células indiferenciadas, favorecendo o processo de reparação. A terapia celular com MSC é uma alternativa terapêutica promissora, porém a compreensão da biologia dessas células ainda é uma ciência em formação. Este artigo tem por objetivo realizar uma breve revisão sobre as células mesenquimais indiferenciadas.


Of all the stem cells studied so far, the mesenchymal stem cells (MSC) stand out for their high plasticity and capacity of generating mesodermal and non-mesodermal tissues. In addition, immunomodulatory and immunosuppressive features that expand possibilities for therapeutic use are present in these cells. A variety of pro and anti-inflammatory cytokines and growth factors are secrete for MSC and provide a modulation of inflammatory response, re-establishment of vascular supply and adequate repair of the tissue, contributing to tissue homeostasis under physiologic conditions. Therefore, they can induce secretion of soluble factors that stimulate their differentiation by other cells present at the niche's tissue, promoting the repair process. Cell therapy using MSC is a promises therapeutic alternative, but understanding the biology of these cells is still under construction. The aim of the article is to conduct a short review of these undifferentiated mesenchymal cells.

3.
China Biotechnology ; (12)2006.
Article in Chinese | WPRIM | ID: wpr-686349

ABSTRACT

Little is known about the non-structural protein 6(NSP6)of rotavirus.This report describes expression of the NSP6 of a group A human rotavirus strain TB-Chen in bacteria,and its immunological properties and cellular distribution.The results showed that the recombinant NSP6(rNSP6)was expressed in high efficiency without any other proteins fused(possesses about 34.2% of total bacterial proteins).rNSP6 elicited mono-specific antibodies in immunized guinea pigs and the antibodies could react with the rNSP6 itself and the viral NSP6 proteins synthesized in SA11-or Wa-infected MA104 cells in Western blot and immunofluorescence assay.The NSP6 distributed evenly in the cytoplasm mainly around the nucleus of virus-infected cells,no viroplasm-like gathering observed;The top amount of NSP6 synthesized in SA11-infected cells or Wa-infected cells could be detected at 12h after infection.This is the first report about the high expression of entire NSP6(without any other proteins fused)in prokaryotic expression system and detection of NSP6 synthesis in virus infected cells by immunofluorescence assay.The results are important to understand the structure,biological properties and further application of the NSP6.

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