A novel synthetic oleanane triterpenoid, 2‐cyano‐3,12‐dioxoolean‐1,9‐dien‐28‐oic acid, regulates mechanical allodynia by rescuing neuronal cell death and glial cell activation in the spinal cord of resiniferatoxin‐treated rats

Author:

Lu Ying‐Yi123ORCID,Lin Chia‐Yang4,Tsai Hung‐Pei5,Lin Chih‐Lung56,Wu Chieh‐Hsin5678

Affiliation:

1. Department of Dermatology Kaohsiung Veterans General Hospital Kaohsiung Taiwan

2. Department of Post‐Baccalaureate Medicine, School of Medicine, College of Medicine National Sun Yat‐sen University Kaohsiung Taiwan

3. Shu‐Zen Junior College of Medicine and Management Kaohsiung Taiwan

4. Department of Nuclear Medicine Kaohsiung Medical University Hospital Kaohsiung Taiwan

5. Division of Neurosurgery, Department of Surgery Kaohsiung Medical University Hospital Kaohsiung Taiwan

6. Department of Surgery, School of Medicine, College of Medicine Kaohsiung Medical University Kaohsiung Taiwan

7. Center for Big Data Research Kaohsiung Medical University Kaohsiung Taiwan

8. Drug Development and Value Creation Research Center Kaohsiung Medical University Kaohsiung Taiwan

Abstract

AbstractBackgroundTreating postherpetic neuralgia (PHN), which is characterized with a long‐lasting lancinating mechanical allodynia or hyperalgesia, is a big challenge as it is hard to achieve complete resolution. A synthetic triterpenoid, CDDO (2‐cyano‐3,12‐dioxoolean‐1,9‐dien‐28‐oic acid) can exert pleiotropic effects including anti‐inflammation and neuroprotective activities. Nevertheless, the antinociceptive effect of CDDO and its derivatives remains unknown. Resiniferatoxin (RTX) is easily feasible, and an RTX‐treated rodent model can mimic the PHN‐like symptoms. Therefore, RTX‐treated rats were used to serve as a PHN rats’ model in the study to elucidate whether a synthetic triterpenoid, CDDO, can improve mechanical allodynia in RTX‐treated rats.MethodsThe antinociceptive effects of CDDO were assessed by behavioral tests, western blotting, and immunohistochemistry. Paw withdrawal mechanical threshold was determined using calibrated forceps.ResultsAdministration of RTX led to mechanical allodynia, neuronal cell death, and glial cell activation in the spinal cord of RTX‐treated rats. A synthetic triterpenoid, CDDO, blocked RTX‐induced mechanical allodynia, rescued neuronal cell death, and inhibited glial cell activation in the spinal cord of RTX‐treated rats.ConclusionsOur study provides a novel result that a synthetic triterpenoid, CDDO, can interfere neuronal cell death and glial cell activation in the spinal cord of RTX‐treated rats. Hence, CDDO is an alternative therapeutic choice for PHN.

Funder

Kaohsiung Veterans General Hospital

Publisher

Wiley

Subject

Behavioral Neuroscience

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