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Schaub, M. K.

Publications and source records attributed to Schaub, M. K..

2 recordsLinked to original sources

Enabling wider access to human molecular neuroscience research in pain: A simple preservation method for human dorsal root ganglion neurons in Hibernate A media

The use of human dorsal root ganglion (DRG) from organ donors opens the door for research into the molecular biology and physiology of human nociceptors; however, there are barriers to working with this tissue including logistical difficulties and limited access. We present an approach using Hibernate media to temporarily store either whole DRGs or dissociated DRG neurons prior to culturing and functional testing. Dissociation of DRGs following temporary storage (4-16hrs) in Hibernate media resulted in similar neuronal and immune cell yield as acutely dissociated DRGs. Neurons derived from DRGs stored in Hibernate media prior to dissociation exhibited similar electrophysiological properties and capsaicin responses as acutely dissociated DRG neurons. Similarly, neurons from acutely dissociated DRGs stored in Hibernate media (>24hrs) and shipped to geographically distant laboratories produced neuronal cultures displaying comparable electrophysiological properties as acutely cultured neurons. This approach overcomes insurmountable logistical burdens and increases access to freshly recovered human DRGs.

neuroscience↗

Suzetrigine (VX-548) exhibits activity-dependent effects on human dorsal root ganglion neurons

Non-selective antagonists of voltage-gated sodium channels (VGSCs) provide effective local analgesia, but systemic administration is fraught with unwanted cardiovascular and central nervous system toxicity. The development of antagonists targeting VGSCs preferentially expressed in peripheral neurons, such as NaV1.7, 1.8, and 1.9, could mitigate these risks. One such new small molecule that selectively inhibits NaV1.8, is orally bioavailable, and has recent FDA approval for the treatment of acute pain is suzetrigine (VX-548). Here we tested the effects of this agent on human dorsal root ganglion (hDRG) neurons obtained from either patients undergoing surgical thoracic vertebrectomy or from organ donors in parallel electrophysiology studies across 2 laboratories. Bath application of 10 nM suzetrigine abolished spontaneous discharges previously shown to be associated with on-going neuropathic pain within minutes. In contrast, suppression of discharges evoked by intracellular current injection required more prolonged application times. These results suggest that suzetrigine will likely show efficacy versus spontaneous pain but may have less robust effects on evoked or breakthrough pain.

neuroscience↗