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A targeted bispecific TGFBR2 antagonist antibody demonstrates cell selectivity and enhanced potency on human fibroblasts

Fletcher, R. B.; Chen, H.; Post, Y.; Yang, Y.; Dhaliwal, N.; Fan, Y.; Fisher, T.; Lee, S.; Suen, N.; Smith, M.; Downs, N.; Ye, J.; Karr, J.; Hymowitz, S. G.; Ray, M. K.; Lu, C.; Li, Y.

2026-08-19 cell biology
10.64898/2026.08.11.744117 bioRxiv
Show abstract

Beyond its critical roles in development and tissue homeostasis, TGF{beta} signaling promotes key aspects of cancer progression and is a primary driver of fibrosis. Although blocking TGF{beta} signaling has great therapeutic potential for cancer and fibrotic diseases such as idiopathic pulmonary fibrosis (IPF), preclinical and clinical studies revealed that non-specific alteration of the pathway can have severe adverse consequences; therefore, inhibiting TGF{beta} signaling in a cell-type specific manner may avoid systemic toxic effects while preserving potential therapeutic effects. The parasitic helminth Heligmosomoides polygyrus has evolved cell-type-targeted modulators of TGF{beta} signaling. With insights from the development of other targeted signaling modulators and using the worm proteins as a guide, we sought to develop a human-fibroblast-targeted TGFBR2 antagonist. Here, we report mechanistic insights into the targeted worm TGFBR2 antagonist TGM6 and fusion proteins containing the TGM6 targeting domains. We created a bispecific antibody TGFBR2 antagonist that binds PDGFRA as a targeting receptor and demonstrates cell selectivity and enhanced potency in fibroblasts. Our findings suggest a viable path for developing targeted TGF{beta} signaling antagonists as therapeutics for cancer and tissue fibrosis.

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