Phenotypic screen identifies the natural product silymarin as a novel anti-inflammatory analgesic

被引:8
作者
DuBreuil, Daniel M. [1 ,2 ]
Lai, Xiaofan [1 ,3 ]
Zhu, Kevin [1 ]
Chahyadinata, Gracesenia [1 ]
Perner, Caroline [4 ,5 ]
Chiang, Brenda M. [1 ]
Battenberg, Ashley [1 ]
Sokol, Caroline L. [4 ,6 ]
Wainger, Brian J. [1 ,6 ,7 ,8 ]
机构
[1] Harvard Med Sch, Massachusetts Gen Hosp, Dept Neurol, Boston, MA USA
[2] Sanofi, Genom Med Unit, Waltham, MA USA
[3] Sun Yat sen Univ, Affiliated Hosp 1, Dept Anesthesiol, Guangzhou, Peoples R China
[4] Massachusetts Gen Hosp, Ctr Immunol & Inflammatory Dis, Boston, MA USA
[5] Univ Med Greifswald, Dept Neurol, Greifswald, Germany
[6] Broad Inst Harvard Univ & MIT, Cambridge, MA USA
[7] Massachusets Gen Hosp, Dept Anesthesiol Crit Care & Pain Med, Boston, MA USA
[8] Massachusetts Gen Hosp, 114 16th St, Charlestown, MA 02114 USA
关键词
Nociceptors; phenotypic screen; calcium imaging; inflammatory pain; peripheral sensitization; RAT DORSAL-ROOT; SENSORY NEURONS; DOWN-REGULATION; PAIN; RECEPTOR; NOCICEPTION; ACTIVATION; EXPRESSION; RELEASE; STORES;
D O I
10.1177/17448069221148351
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Sensory neuron hyperexcitability is a critical driver of pathological pain and can result from axon damage, inflammation, or neuronal stress. G-protein coupled receptor signaling can induce pain amplification by modulating the activation of Trp-family ionotropic receptors and voltage-gated ion channels. Here, we sought to use calcium imaging to identify novel inhibitors of the intracellular pathways that mediate sensory neuron sensitization and lead to hyperexcitability. We identified a novel stimulus cocktail, consisting of the SSTR2 agonist L-054,264 and the S1PR3 agonist CYM5541, that elicits calcium responses in mouse primary sensory neurons in vitro as well as pain and thermal hypersensitivity in mice in vivo. We screened a library of 906 bioactive compounds and identified 24 hits that reduced calcium flux elicited by L-054,264/CYM5541. Among these hits, silymarin, a natural product derived from milk thistle, strongly reduced activation by the stimulation cocktail, as well as by a distinct inflammatory cocktail containing bradykinin and prostaglandin E2. Silymarin had no effect on sensory neuron excitability at baseline, but reduced calcium flux via Orai channels and downstream mediators of phospholipase C signaling. In vivo, silymarin pretreatment blocked development of adjuvant-mediated thermal hypersensitivity, indicating potential use as an anti-inflammatory analgesic.
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页数:13
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