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Updated: Apr 25, 2026

Enrichment of Mammalian Tissues and Xenopus Oocytes with Cholesterol
Published on: March 25, 2020
The major cholesterol metabolite cholestane-3β,5α,6β-triol functions as an endogenous neuroprotectant
Haiyan Hu1, Yuehan Zhou2, Tiandong Leng2
1School of Pharmaceutical Sciences, Sun Yat-Sen University, Guangzhou, Guangdong 510080, China.
Abstract:
Overstimulation of NMDA-type glutamate receptors is believed to be responsible for neuronal death of the CNS in various disorders, including cerebral and spinal cord ischemia. However, the intrinsic and physiological mechanisms of modulation of these receptors are essentially unknown. Here we report that cholestane-3β,5α,6β-triol (triol), a major metabolite of cholesterol, is an endogenous neuroprotectant and protects against neuronal injury both in vitro and in vivo via negative modulation of NMDA receptors. Treatment of cultured neurons with triol protects against glutamate-induced neurotoxicity, and administration of triol significantly decreases neuronal injury after spinal cord ischemia in rabbits and transient focal cerebral ischemia in rats. An inducible elevation of triol is associated with ischemic preconditioning and subsequent neuroprotection in the spinal cord of rabbits. This neuroprotection is effectively abolished by preadministration of a specific inhibitor of triol synthesis. Physiological concentrations of triol attenuate [Ca(2+)]i induced by glutamate and decrease inward NMDA-mediated currents in cultured cortical neurons and HEK-293 cells transiently transfected with NR1/NR2B NMDA receptors. Saturable binding of [(3)H]triol to cerebellar granule neurons and displacement of [(3)H]MK-801 binding to NMDA receptors by triol suggest that direct blockade of NMDA receptors may underlie the neuroprotective properties. Our findings suggest that the naturally occurring oxysterol, the major cholesterol metabolite triol, functions as an endogenous neuroprotectant in vivo, which may provide novel insights into understanding and developing potential therapeutics for disorders in the CNS.
Insights
Cholesterol metabolite cholestane-3β,5α,6β-triol (triol) acts as an endogenous neuroprotectant. It protects the central nervous system (CNS) from injury by negatively modulating N-methyl-D-aspartate (NMDA) receptors.
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Overstimulation of N-methyl-D-aspartate (NMDA) receptors contributes to central nervous system (CNS) neuronal death in conditions like ischemia.
- Mechanisms underlying NMDA receptor modulation are not fully understood.
Purpose of the Study:
- To investigate cholestane-3β,5α,6β-triol (triol) as a potential endogenous neuroprotectant.
- To elucidate the role of triol in modulating NMDA receptor activity and protecting against neuronal injury.
Main Methods:
- In vitro studies using cultured neurons and HEK-293 cells.
- In vivo studies involving induced ischemia in rabbits and rats.
- Assessment of calcium influx and NMDA-mediated currents.
- Analysis of triol binding to NMDA receptors.
Main Results:
- Triol demonstrated neuroprotection against glutamate toxicity in vitro.
- Triol administration reduced neuronal injury in animal models of spinal cord and cerebral ischemia.
- Elevated triol levels correlated with ischemic preconditioning and neuroprotection.
- Inhibition of triol synthesis abolished neuroprotection.
Conclusions:
- Cholestane-3β,5α,6β-triol is an endogenous neuroprotectant that safeguards the CNS.
- Triol exerts its protective effects through negative modulation and direct blockade of NMDA receptors.
- Triol represents a potential therapeutic target for CNS disorders involving NMDA receptor overstimulation.
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