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.

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