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Fanhua Kong

Publications and source records attributed to Fanhua Kong.

3 recordsLinked to original sources

[Construction, bioactivity identification and structural characteristics analysis of a novel recombinant immunosuppression protein B7-2-L-PE40KDEL].

OBJECTIVE: To construct a novel recombinant B7-2-L- PE40KDEL fusion protein used to selectively kill T cells expressing high levels of CD28 so as to induce immune tolerance and prevent graft versus host disease (GVHD) and host versus graft disease (HVGD). METHODS: The cDNA encoding human B7-2 was ligated with cDNA encoding PE40KDEL by using sequence overlapping extension (SOE) techniques. The gene of interest was subcloned into a high output expression vector pRSETA and transformed into E. coli cells. Its molecular structural characteristics, such as flexibility, antigenicity, hydrophilicity, and epitope were analyzed. The purification protocol of expressed protein was established and its cytotoxicity to selectively kill T cells expressing high levels of CD28 was measured by MTT method. RESULTS: B7-2-L-PE40KDEL fusion protein was expressed at high levels in E. coli cells and the purified product attained over 95% of purity. The structural characteristics of B7-2-L-PE40KDEL were not significantly changed in comparison with B7-2 and PE40KDEL. In cytotoxicity assay, B7-2-L-PE40KDEL fusion protein specifically killed Jurkat cells which express high level CD28 receptor and was non-cytotoxic to CD28 receptor-negative cell line Raji. CONCLUSION: B7-2-L-PE40KDEL novel fusion protein can selectively kill the T cells which express CD28 receptor and may become a kind of new effective drug for inducing T cell immune tolerance and preventing GVHD and HVGD.

Antigens, CD↗

[The Comparison between the Killing Effects of Two Anti-T Immunotoxins on Target Cells]

The key to killing target cells by immunotoxin depends on the specific recognition of antibody to target cell and the cytotoxic effect of toxin. The comparative study of the killing effects of two anti-T immunotoxins, CD5:Ricin and CD5:rRA, on target cells was performed. The elimination rate of immunotoxins was analysed by flow cytometry and MLR. The effect of immunotoxins on the proliferation of hematopoiesis was evaluted by CFU-GM. The results showed that (1) CD5(+) T cells were eliminated and CD25(+) CD3(+) activated T cells were concentration-dependently inhibited by the two immunotoxins in the range of 10(-9) - 10(-11) mol/L; (2) both immunotoxins significantly inhibited the mixed lymphocyte reaction, and the inhibiting effect of CD5:rRA to T cell proliferation was markedly lower than that of CD5:Ricin in the range of 10(-10) - 10(-11) mol/L; (3) the combination of CD5:rRA with 10 mmol/L NH(4)Cl increased the T cell elimination rate; and (4) the two immunotoxins and the combination of NH(4)Cl and CD5:rRA did not suppressed proliferation of granulocyte-macrophage progenitors in the range of concentrations with killing effect. It was concluded that T cell and activated T cell could be eliminated effectively by immunotoxins, the proliferation of granulocyte-macrophage progenitor was not inhibited significantly.

Journal Article↗

[Progress in Study on MHC Structure and Function]

The MHC molecules were first discovered as major histocompatibility antigens. When their essential biological function as antigen-binding molecules and informers for T cells was unveiled, an explanation of why MHC also acts as major histocompatibility antigens was provided. When the antigen-binding cleft of MHC molecules was firstly clarified more than 10 years ago, the study of MHC structure and function has stepped into a prosperous new era, and many achievements have in this area have been achieved. This paper summarized the exciting progress in study on MHC structure and function in recent years.

Journal Article↗