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Sigma-1 receptor positive allosteric modulator promotes neuronal survival and improves cognitive deficits in AD mice via sigma-1 receptor/ERK pathway

  
@article{APS11491,
	author = {Xiao-yu Wang and Wen-shu Zhou and Uma Gaur and Xue-chu Zhen and Wen-hua Zheng},
	title = {Sigma-1 receptor positive allosteric modulator promotes neuronal survival and improves cognitive deficits in AD mice via sigma-1 receptor/ERK pathway},
	journal = {Acta Pharmacologica Sinica},
	volume = {47},
	number = {4},
	year = {2026},
	keywords = {},
	abstract = {The sigma-1 receptor is an important new therapeutic drug target for Alzheimer’s disease (AD). Here, we reported that SOMCL-668, a novel selective and potent sigma-1 receptor allosteric modulator, is neuroprotective in AD both in vitro and in vivo. SOMCL-668 promoted PC12 cells against Aβ-induced intracellular reactive oxygen species (ROS) accumulation, mitochondrial membrane potential hyperpolarization and neuronal apoptosis. Similar results were obtained in SH-SY5Y and primary cortical culture neurons. The mechanistic study showed that SOMCL-668 stimulated the phosphorylation of ERK and CREB, while pharmacological inhibition or knockout of ERK via CRISPR-Cas9 attenuated its protective effects. Further studies with the sigma-1 receptor agonists/antagonists and knockout of sigma-1 receptor via CRISPR-Cas9 indicated that the sigma-1 receptor is essential for the effect of SOMCL-668. In 3xTg-AD mice, SOMCL-668 improved the learning and memory deficits, inhibited neuronal apoptosis and oxidative stress, reduced Aβ deposition and tau protein phosphorylation via ERK/CREB pathway. Moreover, pretreatment with sigma-1 receptor antagonist BD1047 blocked the effect of SOMCL-668. These results demonstrated that SOMCL-668 provides neuroprotection in AD and its effect is mediated by the sigma-1 receptor/ERK/CREB pathway. Our findings support that SOMCL-668 can be utilized as a potential drug for the prevention and treatment of Alzheimer’s disease.},
	issn = {1745-7254},	url = {http://www.chinaphar.com/article/view/11491}
}