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Drug: Lidoderm
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Total 2 results found since Jan 2013.
Autophagy activated by tuberin/mTOR/p70S6K suppression is a protective mechanism against local anaesthetics neurotoxicity.
Abstract
The local anaesthetics (LAs) are widely used for peripheral nerve blocks, epidural anaesthesia, spinal anaesthesia and pain management. However, exposure to LAs for long duration or at high dosage can provoke potential neuronal damages. Autophagy is an intracellular bulk degradation process for proteins and organelles. However, both the effects of LAs on autophagy in neuronal cells and the effects of autophagy on LAs neurotoxicity are not clear. To answer these questions, both lipid LAs (procaine and tetracaine) and amide LAs (bupivacaine, lidocaine and ropivacaine) were administrated to human neuroblasto...
Source: J Cell Mol Med - November 14, 2016 Category: Molecular Biology Authors: Xiong J, Kong Q, Dai L, Ma H, Cao X, Liu L, Ding Z Tags: J Cell Mol Med Source Type: research
Autophagy activated by tuberin/mTOR/p70S6K suppression is a protective mechanism against local anaesthetics neurotoxicity
Abstract
The local anaesthetics (LAs) are widely used for peripheral nerve blocks, epidural anaesthesia, spinal anaesthesia and pain management. However, exposure to LAs for long duration or at high dosage can provoke potential neuronal damages. Autophagy is an intracellular bulk degradation process for proteins and organelles. However, both the effects of LAs on autophagy in neuronal cells and the effects of autophagy on LAs neurotoxicity are not clear. To answer these questions, both lipid LAs (procaine and tetracaine) and amide LAs (bupivacaine, lidocaine and ropivacaine) were administrated to human neuroblastoma SH‐S...
Source: Journal of Cellular and Molecular Medicine - October 31, 2016 Category: Molecular Biology Authors: Jingwei Xiong, Qiuyue Kong, Leyang Dai, He Ma, Xiaofei Cao, Li Liu, Zhengnian Ding Tags: Original Article Source Type: research