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Blocking monocyte transmigration in in vitro system by a human antibody scFv anti-CD99. Efficient large scale
Diego Moricoli1, William Anthony Muller2, Damiano Cosimo Carbonella1
1Diatheva s.r.l. via T. Campanella 1, 61032 Fano, Italy.
Insights
This study presents an efficient method for large-scale production of anti-CD99 single-chain variable fragments (scFvs) in E. coli. These scFvs effectively inhibit leukocyte transendothelial migration (TEM) without adverse effects, offering a safer therapeutic potential.
Area of Science:
- Immunology
- Biotechnology
- Molecular Biology
Background:
- Leukocyte migration in inflammation involves adhesion molecules like CD99.
- Monoclonal antibodies (mAbs) targeting CD99 for transendothelial migration (TEM) inhibition have therapeutic potential.
- Whole IgG mAbs can cause adverse effects due to Fc receptor activation and cytokine release.
Purpose of the Study:
- To develop an efficient, large-scale production method for anti-CD99 single-chain variable fragments (scFvs).
- To ensure the safety and efficacy of scFvs as therapeutic agents by avoiding toxic reagents and complex refolding steps.
- To enable clinical application of scFv anti-CD99 (C7A) by optimizing its production and purification.
Main Methods:
- Expression of scFv anti-CD99 (C7A) in E. coli as periplasmic insoluble protein.
- Purification using differential salt elution to separate monomeric scFv from aggregates, avoiding gel filtration and laborious refolding.
- Characterization of purified scFv C7A for inhibitory activity.
Main Results:
- An efficient and scalable protocol for producing scFv anti-CD99 (C7A) was established.
- The purification method successfully yielded monomeric scFv without requiring gel filtration or extensive refolding.
- Purified scFv C7A demonstrated inhibitory activity comparable to conventional antagonistic mAbs, confirming its efficacy in blocking CD99 signaling.
Conclusions:
- The developed protocol allows for safe, large-scale production of functional scFv antibody fragments.
- This method overcomes limitations associated with traditional antibody fragment production, such as toxic reagents and complex refolding.
- The purified scFv C7A is a promising therapeutic agent for inflammatory conditions by safely inhibiting CD99-mediated TEM.
Abstract:
Migration of leukocytes into site of inflammation involves several steps mediated by various families of adhesion molecules. CD99 play a significant role in transendothelial migration (TEM) of leukocytes. Inhibition of TEM by specific monoclonal antibody (mAb) can provide a potent therapeutic approach to treating inflammatory conditions. However, the therapeutic utilization of whole IgG can lead to an inappropriate activation of Fc receptor-expressing cells, inducing serious adverse side effects due to cytokine release. In this regard, specific recombinant antibody in single chain variable fragments (scFvs) originated by phage library may offer a solution by affecting TEM function in a safe clinical context. However, this consideration requires large scale production of functional scFv antibodies and the absence of toxic reagents utilized for solubilization and refolding step of inclusion bodies that may discourage industrial application of these antibody fragments. In order to apply the scFv anti-CD99 named C7A in a clinical setting, we herein describe an efficient and large scale production of the antibody fragments expressed in E. coli as periplasmic insoluble protein avoiding gel filtration chromatography approach, and laborious refolding step pre- and post-purification. Using differential salt elution which is a simple, reproducible and effective procedure we are able to separate scFv in monomer format from aggregates. The purified scFv antibody C7A exhibits inhibitory activity comparable to an antagonistic conventional mAb, thus providing an excellent agent for blocking CD99 signaling. This protocol can be useful for the successful purification of other monomeric scFvs which are expressed as periplasmic inclusion bodies in bacterial systems.
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