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Published on: May 27, 2011
Successful in vitro antigen-dependent activation of 24-hour-old peripheral blood lymphocytes
J A Owen1, K Muirhead, C Jensen
1Department of Molecular Immunology, SmithKline Beecham Pharmaceuticals, King of Prussia, PA 10406, USA.
Insights
This study presents an efficient in vitro culture system for stimulating human peripheral blood lymphocytes (PBLs) to produce antigen-specific antibodies. The method successfully activates B cells for antibody production while leaving T cells largely quiescent.
Area of Science:
- Immunology
- Cell Biology
Background:
- Generating antigen-specific antibodies from human lymphocytes is crucial for therapeutic applications.
- Existing methods for in vitro antibody production can be complex and time-consuming.
Purpose of the Study:
- To develop a simple, rapid, and reproducible in vitro culture system for human peripheral blood lymphocytes (PBLs) to produce antigen-specific antibodies.
- To characterize the cellular responses of PBLs during this in vitro stimulation.
Main Methods:
- Human PBLs were purified and activated using Staphylococcus Cowan A, indomethacin, and tetanus toxoid antigen.
- Allogeneic mixed lymphocyte culture supernatant was added after 24 hours.
- Cell surface phenotypes were analyzed by flow cytometry.
Main Results:
- The majority of peripheral blood B cells underwent blast transformation and expressed interleukin-2 (IL-2) receptors.
- Tetanus toxoid-specific antibody production was successfully generated.
- T cells did not show significant activation, IL-2 receptor expression, or proliferation.
Conclusions:
- The developed system effectively induces B cell activation and antigen-specific antibody production in vitro.
- This method provides a valuable source of B cells for generating human hybridomas or for antibody engineering.
- The system's ability to selectively activate B cells offers novel insights into lymphoid cell manipulation.
Abstract:
We describe a simple, rapid and reproducible in vitro culture system in which human peripheral blood lymphocytes (PBLs), donated 24 h prior to initiation of culture can be stimulated to produce antigen-specific antibodies. Peripheral blood lymphocytes purified by Ficoll-Hypaque centrifugation were passed over a G10 Sephadex column and then activated in vitro in the presence of 0.003% staphylococcus Cowan A, 2.8 x 10(-6) M indomethacin and appropriate concentrations of tetanus toxoid antigen. After the first 24 h in culture, a five-fold concentrated supernatant from an allogeneic mixed lymphocyte culture was added. The cell surface phenotypes of the PBLs were analyzed by flow cytometry at the initiation and termination of culture, in order to provide a comprehensive characterization of the cellular composition of a successful in vitro stimulation system. Our results clearly show that the majority of peripheral blood B cells can be induced to an activated stage (blast transformation) and interleukin 2 (IL-2) receptor expression, following very simple manipulations of the lymphoid population. Tetanus toxoid-specific antibody production can be readily generated in this cell population. In contrast, T cells were not activated to express IL-2 receptors and reach blast transformation, and did not show appreciable proliferation. Our system provides a population of B cells producing antibodies of desired specificity which could be utilized for the generation of human hybridomas or could serve as a donor population for antibody engineering via the combinatorial library approach. Careful light scattering and cell surface phenotypic analyses of the cells entering, proliferating and differentiating in these cultures enabled several novel observations to be made.
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