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Optogenetic Activation of Afferent Pathways in Brain Slices and Modulation of Responses by Volatile Anesthetics
Published on: July 23, 2020
Anesthetic propofol attenuates the isoflurane-induced caspase-3 activation and Aβ oligomerization
Yiying Zhang1, Yu Zhen, Yuanlin Dong
1Geriatric Anesthesia Research Unit, Department of Anesthesia, Critical Care and Pain Medicine, Massachusetts General Hospital and Harvard Medical School, Charlestown, Massachusetts, United States of America.
Abstract:
Accumulation and deposition of β-amyloid protein (Aβ) are the hallmark features of Alzheimer's disease. The inhalation anesthetic isoflurane has been shown to induce caspase activation and increase Aβ accumulation. In addition, recent studies suggest that isoflurane may directly promote the formation of cytotoxic soluble Aβ oligomers, which are thought to be the key pathological species in AD. In contrast, propofol, the most commonly used intravenous anesthetic, has been reported to have neuroprotective effects. We therefore set out to compare the effects of isoflurane and propofol alone and in combination on caspase-3 activation and Aβ oligomerization in vitro and in vivo. Naïve and stably-transfected H4 human neuroglioma cells that express human amyloid precursor protein, the precursor for Aβ; neonatal mice; and conditioned cell culture media containing secreted human Aβ40 or Aβ42 were treated with isoflurane and/or propofol. Here we show for the first time that propofol can attenuate isoflurane-induced caspase-3 activation in cultured cells and in the brain tissues of neonatal mice. Furthermore, propofol-mediated caspase inhibition occurred when there were elevated levels of Aβ. Finally, isoflurane alone induces Aβ42, but not Aβ40, oligomerization, and propofol can inhibit the isoflurane-mediated oligomerization of Aβ42. These data suggest that propofol may mitigate the caspase-3 activation by attenuating the isoflurane-induced Aβ42 oligomerization. Our findings provide novel insights into the possible mechanisms of isoflurane-induced neurotoxicity that may aid in the development of strategies to minimize potential adverse effects associated with the administration of anesthetics to patients.
Insights
Propofol, an anesthetic, reduces isoflurane-induced caspase activation and beta-amyloid (Aβ) oligomerization, suggesting neuroprotective potential against Alzheimer's disease pathology.
Area of Science:
- Neuroscience
- Anesthesiology
- Biochemistry
Background:
- Alzheimer's disease (AD) is characterized by beta-amyloid (Aβ) accumulation.
- Inhalation anesthetic isoflurane may increase Aβ accumulation and promote cytotoxic Aβ oligomer formation.
- Intravenous anesthetic propofol may possess neuroprotective effects.
Purpose of the Study:
- To compare the effects of isoflurane and propofol on caspase-3 activation and Aβ oligomerization.
- To investigate propofol's potential to mitigate isoflurane-induced neurotoxicity.
Main Methods:
- In vitro studies using H4 human neuroglioma cells expressing amyloid precursor protein.
- In vivo studies using neonatal mice.
- Treatment with isoflurane and/or propofol.
- Measurement of caspase-3 activation and Aβ oligomerization (Aβ40, Aβ42).
Main Results:
- Propofol attenuated isoflurane-induced caspase-3 activation in cells and mouse brain tissue.
- Propofol-mediated caspase inhibition occurred with elevated Aβ levels.
- Isoflurane induced Aβ42 oligomerization, which propofol inhibited.
- Propofol inhibited isoflurane-induced Aβ42 oligomerization.
Conclusions:
- Propofol may mitigate isoflurane-induced neurotoxicity by inhibiting caspase-3 activation.
- Propofol's neuroprotection may involve attenuating isoflurane-induced Aβ42 oligomerization.
- Findings offer insights into anesthetic-related neurotoxicity and potential mitigation strategies.
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