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Bupivacaine causes cytotoxicity in mouse C2C12 myoblast cells: involvement of ERK and Akt signaling pathways
作者单位:[1]Department of Obstetrics and Gynecology, St Joseph's Hospital and Medical Center, Phoenix, AZ, USA [2]Department of Obstetrics and Gynecology, Rush University Medical Center, Chicago, IL, USA [3]Barrow Neurological Institute, St Joseph's Hospital and Medical Center, Phoenix, AZ, USA
摘    要:

关 键 词:信号通路  细胞毒性  成肌细胞  Akt  ERK  小鼠
收稿时间:2009-11-18

Bupivacaine causes cytotoxicity in mouse C2C12 myoblast cells: involvement of ERK and Akt signaling pathways
Joseph M MAURICE Yan GAN Fan-xin MA Yong-chang CHANG Michael HIBNER Yao HUANG. Bupivacaine causes cytotoxicity in mouse C2C12 myoblast cells: involvement of ERK and Akt signaling pathways[J]. Acta pharmacologica Sinica, 2010, 31(4): 493-500. DOI: 10.1038/aps.2010.20
Authors:Joseph M MAURICE Yan GAN Fan-xin MA Yong-chang CHANG Michael HIBNER Yao HUANG
Affiliation:1.Department of Obstetrics and Gynecology, St Joseph''s Hospital and Medical Center, Phoenix, AZ, USA;;2.Department of Obstetrics and Gynecology, Rush University Medical Center, Chicago, IL, USA;;3.Barrow Neurological Institute, St Joseph''s Hospital and Medical Center, Phoenix, AZ, USA
Abstract:

Aim:

The adverse effects of local anesthetics (LAs) on wound healing at surgical sites have been suggested, and may be related to their cytotoxicity. This study was aimed to compare the cellular toxicity of bupivacaine and lidocaine (two well-known LAs), and to explore the molecular mechanism(s).

Methods:

Toxicity of bupivacaine and lidocaine was assessed in cultured mouse C2C12 myoblasts by cell viability and apoptosis assays. Effects of LAs on extracellular signal-regulated kinase (ERK) and protein kinase B (Akt) activation, which are essential for cell proliferation and survival, were evaluated by immunoblotting.

Results:

Both LAs, especially bupivacaine, prevented cell growth and caused cell death in a dose-dependent manner. The half maximal inhibitory concentrations (IC50) for bupivacaine and lidocaine were 0.49±0.04 and 3.37±0.53 mmol/L, respectively. When applied at the same dilutions of commercially available preparations, the apoptotic effect induced by bupivacaine was more severe than that of lidocaine in C2C12 cells. Furthermore, bupivacaine significantly diminished the ERK activation, which may underlie its anti-proliferative actions. Both LAs suppressed Akt activation, which correlated with their effects on apoptosis.

Conclusion:

Our study demonstrated that, when used at the same dilutions from clinically relevant concentrations, bupivacaine is more cytotoxic than lidocaine in vitro. Anti-proliferation and cell death with concomitant apoptosis mediated by bupivacaine may offer an explanation for its adverse effects in vivo (eg slowing wound healing at the surgical sites). A less toxic, long-acting anesthetic may be needed.
Keywords:local anesthetic   cytotoxicity   cell proliferation   apoptosis   extracellular signal-regulated kinase   Akt
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