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Updated: Jan 18, 2026

Generation of Human CD40-activated B cells
Published on: October 16, 2009
Recombinant spider silk functionalized with a CD40 agonist shows improved capability to activate human B cells in
Gunnar Keller1, Mona Widhe1, Ronnie Jansson1
1Department of Protein Science, Division of Protein Technology, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, AlbaNova University Center, Stockholm, Sweden.
Abstract:
This paper presents the generation and evaluation of a novel potential drug delivery platform for biologics, based on recombinant spider silk. Targeting CD40 for activation of antigen presenting cells, in order to overcome tumor induced T cell tolerance, have shown promising results in cell and animal models. However, further trials have gained limited results due to severe side reactions. To overcome this, we have investigated a strategy for a localized CD40 activation. A CD40 agonist based on a single chain variable fragment (scFvCD40) was enzymatically coupled to silk structures, that were then used to stimulate cells in vitro. A reporter cell line responsive to CD40 agonists was used to evaluate the bioactivity of the developed scFvCD40-silk, and to optimize the method. Once the bioactivity was confirmed, human primary B cells derived from healthy donors were stimulated with the scFvCD40-silk construct. The resulting B cell response was characterized both by upregulated surface expression of the activation marker CD86 (3 fold), suggesting an improved antigen-presenting capacity, and by B cell proliferation (4 fold) generating an expanded B cell population. The detected upregulation of the costimulatory molecule CD86 on the B cells implies a potential of the functionalized silk to steer the tumor-specific T cell response from tolerance to immune activation, including the onset of appropriate effector functions. Finally, we investigated the usability of the novel silk format microspheres for CD40-mediated cell activation in vitro. Here, we were able to demonstrate that scFvCD40-coupled silk microspheres gave a pronounced activation of the CD40-expressing reporter cell line, supporting the suitability of silk microspheres for the delivery of biologics with immune modulatory purposes.

