Preclinical and clinical evaluation of systemic danegaptide for the treatment of nonproliferative diabetic retinopathy
Natalie Hudson, Gergő Porkoláb, Jeffrey O’Callaghan, Nicole Hanley, Basma Baccouche, Márk Varró, Ulrik Mouritzen, Benedikte el-Bandak Lind, Peter Adamson, Matthew Campbell
Nonproliferative diabetic retinopathy (NPDR) is a serious and vision-threatening manifestation of diabetic eye disease. Most patients with diabetic eye disease have NPDR. Intravitreal vascular endothelial growth factor (VEGF)–neutralizing agents are able to suppress increased vascular leakage caused by poor glycemic control and are fundamental in controlling progression to vision loss. However, despite the efficacy of such treatments, the invasive nature and short interval between injections have not yielded widespread adoption in patients with NPDR. Here, we describe the effect of an orally available medication, danegaptide, in regulating retinal vascular permeability in preclinical animal models of disease and report safety and early efficacy data from an early-stage phase 1b clinical trial in patients with NPDR and mild center-involved macular edema. As an orally available gap junction modifier, danegaptide improved inner blood-retina barrier (iBRB) function through a direct connexin-43 mechanism and by working as a functional antagonist of VEGF in human retinal microvascular endothelial cells. Bulk RNA sequencing showed that danegaptide attenuated the VEGF-induced suppression of