Acacia sieberiana (syn. Vachellia
sieberiana), widely used in African traditional medicine
for pain, was investigated
using an ethnopharmacology-guided workflow integrating LC-MS/MS-based
metabolomics and molecular networking to prioritize bioactive secondary
metabolites. Fractionation of the ethanolic stem bark extract enabled
targeted isolation and identification of piperine (1)
and moupinamide (3) by HRMS and NMR. Moupinamide and
its positional isomer (tamgermanetin) were synthesized via HATU-mediated
coupling to support preliminary structure–activity studies.
In a capsaicin-induced mouse model, the extract significantly attenuated
acute nociceptive behavior without affecting the secondary mechanical
hypersensitivity. Functional screening using human iPSC-derived nociceptors
in a multielectrode array (MEA) platform showed that moupinamide potently
reduced neuronal firing, with reduced efficacy under high-heat conditions,
suggesting a non-TRPV1-mediated mechanism. GPCR profiling of moupinamide
revealed minimal receptor engagement, and further pharmacological
studies demonstrated retained activity under potassium channel blockade
and suppression of Nav1.7-induced hyperexcitability, consistent with
voltage-gated sodium channel modulation. These findings highlight A. sieberiana-derived alkaloid amides as promising nonopioid
analgesic leads and underscore the utility of metabolomics-guided
discovery strategies.