Related Experiment Video
Updated: May 29, 2026

Three Strategies to Induce Neurotrophic Keratitis and Nerve Regeneration in Murine Cornea
Published on: December 8, 2023
Non-invasive electrical stimulation restores corneal nerve density and sensory function in diabetic neuropathy via
Menglu Yang1,2, Anton Lennikov3,4, Lu Huang3
1Schepens Eye Research Institute, Massachusetts Eye and Ear, Department of Ophthalmology, Harvard Medical School, Boston, MA, USA. mengluyangpku@gmail.com.
Abstract:
Diabetic neuropathy (DN) is the most common complication of diabetes mellitus (DM) and often involves the cornea, where progressive loss of nerve fibers contributes to impaired corneal sensitivity and wound healing defects. Current treatments are limited, underscoring the need for a regenerative therapy. Here we show that a non-invasive neural modulation therapy, transcutaneous electrical stimulation (ES), significantly restore the nerve density and sensory function in both streptozotocin-induced DM mice and in vitro isolated trigeminal ganglia (TG) neurons. Transcriptomics analysis of TGs from in vivo ES points to ion transport and Ca2+ signaling alteration. Consistently, membrane potential recording in TGs shows a rapid hyperpolarization upon ES accompanied by increased [Ca2+]i level. Inhibition of potassium intermediate/small conductance calcium-activated channel (KCNN) abolishes the hyperpolarization and neural regeneration effect, whereas activation of KCNN channel significantly enhances nerve regeneration in the STZ model compared with sham treatment. Overall, ES restores corneal nerve density and function via KCNN activation in a diabetic mouse model, offering a novel, non-invasive, and clinically translatable therapeutic strategy for diabetic neuropathy.
Related Concept Videos
Diabetic Neuropathy
Diabetic Nephropathy
Diabetic Retinopathy
Diabetic Ketoacidosis ll: Pathophysiology
Local Anesthetics: Differential Sensitivity of Nerve Fibers
