Abstract

Diabetes mellitus- (DM-) associated hyperglycemia promotes apoptosis of disc nucleus pulposus (NP) cells, which is a contributor to intervertebral disc degeneration (IDD). Melatonin is able to protect against cell apoptosis. However, its effects on apoptosis of NP cell in a high-glucose culture remain unclear. The purpose of the present study was to investigate the effects and molecular mechanism of melatonin on NP cell apoptosis in a high-glucose culture. NP cells were cultured in the baseline medium supplemented with a high-glucose concentration (0.2 M) for 3 days. The control cells were only cultured in the baseline medium. Additionally, the pharmaceutical inhibitor LY294002 was added along with the culture medium to investigate the possible role of the PI3K/Akt pathway. Apoptosis, autophagy, and activity of the PI3K/Akt pathway of NP cells among these groups were evaluated. Compared with the control NP cells, high glucose significantly increased cell apoptosis ratio and caspase-3/caspase-9 activity and decreased mRNA expression of Bcl-2, whereas it increased mRNA or protein expression of Bax, caspase-3, cleaved caspase-3, cleaved PARP, and autophagy-related molecules (Atg3, Atg5, Beclin-1, and LC3-II) and decreased protein expression of p-Akt compared with the control cells. Additionally, melatonin partly inhibited the effects of high glucose on those parameters of cell apoptosis, autophagy, and activation of PI3K/Akt. In conclusion, melatonin attenuates apoptosis of NP cells through inhibiting the excessive autophagy via the PI3K/Akt pathway in a high-glucose culture. This study provides new theoretical basis of the protective effects of melatonin against disc degeneration in a DM patient.

Highlights

  • Intervertebral disc degeneration- (IDD-) caused low back pain is a painful dilemma around world

  • After nucleus pulposus (NP) cells were cultured in the medium supplemented with a high-glucose concentration, the NP cell apoptosis ratio was significantly increased compared with the control NP cells

  • Results showed that both caspase-3 activity and caspase-9 activity were increased after being cultured in the medium supplemented with a highglucose concentration

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Summary

Introduction

Intervertebral disc degeneration- (IDD-) caused low back pain is a painful dilemma around world. It is a main contributor of physical disability and work absence [1]. Previous studies have reached a consensus that disc NP cell apoptosis plays an implicate role in initiating and BioMed Research International accelerating the disc degeneration process [18,19,20,21,22,23,24,25]. Several studies found that a high-glucose culture facilitates disc cell apoptosis [6, 11, 14, 26]. Attenuation of disc cell apoptosis in the high-glucose environment might be a potential approach to slow down disc degeneration progress in DM patients

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