Na+/HCO3 Co-transporters Inhibitor S0859 Attenuates Global Cerebral Ischemia-reperfusion Injury of the CA1 Neurons in the Gerbil’s Hippocampus

Author:

Wu Jianping1234ORCID,Jia Meng123ORCID,Zhang Qian123,Guo Xi567,Liu Ru567,Liu Sha4,Chen Nanyu4,Wang Yunfu8,Wang Qun13,Campbell Susan L.9

Affiliation:

1. Beijing Tiantan Hospital, Capital Medical University, Beijing, China

2. China National Clinical Research Center for Neurological Diseases, Beijing, China

3. Advanced Innovation Center for Human Brain Protection, Capital Medical University, Beijing, China

4. School of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of Technology, Wuhan, China

5. Beijing Tiantan Hospital, Capital Medical University, Beijing, China.

6. China National Clinical Research Center for Neurological Diseases, Beijing, China.

7. Advanced Innovation Center for Human Brain Protection, Capital Medical University, Beijing, China

8. Taihe Hospital, Hubei University of Medicine, Shiyan, China

9. Animal and Poultry Sciences, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA

Abstract

Background: Metabolic acidosis plays a key role in transient global cerebral ischemiareperfusion (I/R) induced delayed neuronal death (DND) of the hippocampal CA1 region of gerbils. Na+ coupled HCO3 - transporters (NBCs) mediated Na+/HCO3 - co-transportation can be activated by the pH gradient of intracellular and extracellular environments induced by acidosis. However, whether NBCs are activated and involved in I/R-induced neuronal injury is unknown. Objective: In this work, we studied neuronal apoptosis, astrocyte activation, and hippocampusdependent memory task using a well-established transient global cerebral I/R model of gerbils and investigated whether the specific NBCs inhibitor S0859 could reverse this injury. Methods: To explore the role of S0859 in I/R-induced DND, we established a transient global cerebral I/R model of Mongolian gerbils and studied neuronal apoptosis by using Nissl stain and TUNEL assay. The excitability and NBCs current were analyzed by whole-cell patch-clamp, while the cognitive function was evaluated by Barnes maze. Results: We found that I/R increased the NBCs current, inhibited the excitability of CA1 neurons, and led to apoptosis in CA1 neurons. Selective NBCs inhibitor S0859 protected CA1 neurons from I/R induced neuronal cell death, astrocyte accumulation, and spatial memory impairment. Conclusion: These findings indicate that NBCs mediate transient global cerebral I/R induced DND of CA1 neurons, and NBCs inhibitors could be a promising target to protect neuronal functions after I/R.

Publisher

Bentham Science Publishers Ltd.

Subject

Pharmacology,General Neuroscience

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