Literature DB >> 23001052

Propofol at clinically relevant concentrations increases neuronal differentiation but is not toxic to hippocampal neural precursor cells in vitro.

Jeffrey W Sall1, Greg Stratmann, Jason Leong, Elliott Woodward, Philip E Bickler.   

Abstract

BACKGROUND: Propofol in the early postnatal period has been shown to cause brain cell death. One proposed mechanism for cognitive dysfunction after anesthesia is alteration of neural stem cell function and neurogenesis. We examined the effect of propofol on neural precursor or stem cells (NPCs) grown in vitro.
METHODS: Hippocampal-derived NPCs from postnatal day 2 rats were exposed to propofol or Diprivan. NPCs were then analyzed for bromodeoxyuridine incorporation to measure proliferation. Cell death was measured by lactate dehydrogenase release. Immunocytochemistry was used to evaluate the expression of neuronal and glial markers in differentiating NPCs exposed to propofol.
RESULTS: Propofol dose dependently increases the release of lactate dehydrogenase from NPCs under both proliferating and differentiating conditions at supraclinical concentrations (more than 7.1 µM). Both Diprivan and propofol had the same effect on NPCs. Propofol-mediated release of lactate dehydrogenase is not inhibited by blocking the γ-aminobutyric acid type A receptor or extracellular calcium influx and is not mediated by caspase-3/7. Direct γ-aminobutyric acid type A receptor activation did not have the same effect. In differentiating NPCs, 6 h of propofol at 2.1 µM increased the number neurons but not glial cells 4 days later. Increased neuronal differentiation was not blocked by bicuculline.
CONCLUSIONS: Only supraclinical concentrations of propofol or Diprivan kill NPCs in culture by a non-γ-aminobutyric acid type A, noncaspase-3 mechanism. Clinically relevant doses of propofol increase neuronal fate choice by a non-γ-aminobutyric acid type A mechanism.

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Year:  2012        PMID: 23001052      PMCID: PMC3483886          DOI: 10.1097/ALN.0b013e31826f8d86

Source DB:  PubMed          Journal:  Anesthesiology        ISSN: 0003-3022            Impact factor:   7.892


  24 in total

1.  General anesthetic actions in vivo strongly attenuated by a point mutation in the GABA(A) receptor beta3 subunit.

Authors:  Rachel Jurd; Margarete Arras; Sachar Lambert; Berthold Drexler; Roberta Siegwart; Florence Crestani; Michael Zaugg; Kaspar E Vogt; Birgit Ledermann; Bernd Antkowiak; Uwe Rudolph
Journal:  FASEB J       Date:  2002-12-03       Impact factor: 5.191

Review 2.  Propofol in anesthesia. Mechanism of action, structure-activity relationships, and drug delivery.

Authors:  G Trapani; C Altomare; G Liso; E Sanna; G Biggio
Journal:  Curr Med Chem       Date:  2000-02       Impact factor: 4.530

3.  Neuron number and size in prefrontal cortex of children with autism.

Authors:  Eric Courchesne; Peter R Mouton; Michael E Calhoun; Katerina Semendeferi; Clelia Ahrens-Barbeau; Melodie J Hallet; Cynthia Carter Barnes; Karen Pierce
Journal:  JAMA       Date:  2011-11-09       Impact factor: 56.272

4.  Isoflurane decreases self-renewal capacity of rat cultured neural stem cells.

Authors:  Deborah J Culley; Justin D Boyd; Arvind Palanisamy; Zhongcong Xie; Koji Kojima; Charles A Vacanti; Rudolph E Tanzi; Gregory Crosby
Journal:  Anesthesiology       Date:  2011-10       Impact factor: 7.892

5.  Propofol neurotoxicity is mediated by p75 neurotrophin receptor activation.

Authors:  Matthew L Pearn; Yue Hu; Ingrid R Niesman; Hemal H Patel; John C Drummond; David M Roth; Katerina Akassoglou; Piyush M Patel; Brian P Head
Journal:  Anesthesiology       Date:  2012-02       Impact factor: 7.892

6.  Comparison of the neuroapoptotic properties of equipotent anesthetic concentrations of desflurane, isoflurane, or sevoflurane in neonatal mice.

Authors:  George K Istaphanous; Jennifer Howard; Xinyu Nan; Elizabeth A Hughes; John C McCann; John J McAuliffe; Steve C Danzer; Andreas W Loepke
Journal:  Anesthesiology       Date:  2011-03       Impact factor: 7.892

7.  Ketamine-induced neuroapoptosis in the fetal and neonatal rhesus macaque brain.

Authors:  Ansgar M Brambrink; Alex S Evers; Michael S Avidan; Nuri B Farber; Derek J Smith; Lauren D Martin; Gregory A Dissen; Catherine E Creeley; John W Olney
Journal:  Anesthesiology       Date:  2012-02       Impact factor: 7.892

8.  Disposition of propofol between red blood cells, plasma, brain and cerebrospinal fluid in rabbits.

Authors:  P L Riu; G Riu; C Testa; M Mulas; M A Caria; S Mameli; O Mameli
Journal:  Eur J Anaesthesiol       Date:  2000-01       Impact factor: 4.330

9.  Isoflurane anesthesia induced persistent, progressive memory impairment, caused a loss of neural stem cells, and reduced neurogenesis in young, but not adult, rodents.

Authors:  Changlian Zhu; Jianfeng Gao; Niklas Karlsson; Qian Li; Yu Zhang; Zhiheng Huang; Hongfu Li; H Georg Kuhn; Klas Blomgren
Journal:  J Cereb Blood Flow Metab       Date:  2010-01-13       Impact factor: 6.200

10.  Anesthetics rapidly promote synaptogenesis during a critical period of brain development.

Authors:  Mathias De Roo; Paul Klauser; Adrian Briner; Irina Nikonenko; Pablo Mendez; Alexandre Dayer; Jozsef Z Kiss; Dominique Muller; Laszlo Vutskits
Journal:  PLoS One       Date:  2009-09-16       Impact factor: 3.240

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  21 in total

1.  Propofol Affects Neurodegeneration and Neurogenesis by Regulation of Autophagy via Effects on Intracellular Calcium Homeostasis.

Authors:  Hui Qiao; Yun Li; Zhendong Xu; Wenxian Li; Zhijian Fu; Yuezhi Wang; Alexander King; Huafeng Wei
Journal:  Anesthesiology       Date:  2017-09       Impact factor: 7.892

2.  Propofol Alters Long Non-Coding RNA Profiles in the Neonatal Mouse Hippocampus: Implication of Novel Mechanisms in Anesthetic-Induced Developmental Neurotoxicity.

Authors:  Sarah Logan; Congshan Jiang; Yasheng Yan; Yasuyoshi Inagaki; Thiago Arzua; Xiaowen Bai
Journal:  Cell Physiol Biochem       Date:  2018-09-27

3.  Insufficient Astrocyte-Derived Brain-Derived Neurotrophic Factor Contributes to Propofol-Induced Neuron Death Through Akt/Glycogen Synthase Kinase 3β/Mitochondrial Fission Pathway.

Authors:  Yanan Liu; Yasheng Yan; Yasuyoshi Inagaki; Sarah Logan; Zeljko J Bosnjak; Xiaowen Bai
Journal:  Anesth Analg       Date:  2017-07       Impact factor: 5.108

Review 4.  Recent Insights Into Molecular Mechanisms of Propofol-Induced Developmental Neurotoxicity: Implications for the Protective Strategies.

Authors:  Zeljko J Bosnjak; Sarah Logan; Yanan Liu; Xiaowen Bai
Journal:  Anesth Analg       Date:  2016-11       Impact factor: 5.108

5.  Sites Contributing to TRPA1 Activation by the Anesthetic Propofol Identified by Photoaffinity Labeling.

Authors:  Kellie A Woll; Kenneth A Skinner; Eleonora Gianti; Natarajan V Bhanu; Benjamin A Garcia; Vincenzo Carnevale; Roderic G Eckenhoff; Rachelle Gaudet
Journal:  Biophys J       Date:  2017-09-19       Impact factor: 4.033

6.  TNF-α Mediates the Intrinsic and Extrinsic Pathway in Propofol-Induced Neuronal Apoptosis Via PI3K/Akt Signaling Pathway in Rat Prefrontal Cortical Neurons.

Authors:  Xiaoyuan Deng; Bo Chen; Bin Wang; Junfang Zhang; Hongliang Liu
Journal:  Neurotox Res       Date:  2017-05-24       Impact factor: 3.911

7.  Propofol Administration During Early Postnatal Life Suppresses Hippocampal Neurogenesis.

Authors:  Jing Huang; Sheng Jing; Xi Chen; Xiaohang Bao; Zhiyong Du; Hong Li; Tiande Yang; Xiaotang Fan
Journal:  Mol Neurobiol       Date:  2015-01-11       Impact factor: 5.590

Review 8.  Neurogenesis and developmental anesthetic neurotoxicity.

Authors:  Eunchai Kang; Daniel A Berg; Orion Furmanski; William M Jackson; Yun Kyoung Ryu; Christy D Gray; C David Mintz
Journal:  Neurotoxicol Teratol       Date:  2016-10-14       Impact factor: 3.763

9.  Effect of Local Anesthetics on Human Mesenchymal Stromal Cell Secretion.

Authors:  Andrea Gray; Ileana Marrero-Berrios; Mehdi Ghodbane; Timothy Maguire; Jonathan Weinberg; Devasena Manchikalapati; Joseph SchianodiCola; Rene S Schloss; Joel Yarmush
Journal:  Nano Life       Date:  2015-06-01

Review 10.  Impact of anaesthetics and surgery on neurodevelopment: an update.

Authors:  R D Sanders; J Hassell; A J Davidson; N J Robertson; D Ma
Journal:  Br J Anaesth       Date:  2013-03-29       Impact factor: 9.166

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