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Gomperts, S. N.

Publications and source records attributed to Gomperts, S. N..

3 recordsLinked to original sources

Impaired Hippocampal Reactivation Preceding Robust Aβ Deposition in a Model of Alzheimer's Disease

Current therapeutic strategies for Alzheimers disease (AD) target amyloid-beta (A{beta}) fibrils and high molecular weight protofibrils associated with plaques, but molecular cascades associated with AD may drive neural systems failure before A{beta} plaque deposition in AD. Employing hippocampal electrophysiological recordings and dynamic calcium imaging across the sleep-wake cycle in a freely behaving mouse model of AD before A{beta} plaques accumulated, we detected marked impairments of hippocampal systems function: In a spatial behavioral task, phase-amplitude coupling (PAC) of the hippocampal theta and gamma oscillations was impaired and place cell calcium fluctuations were hyper-synchronized with the theta oscillation. These changes were not observed in REM sleep. In subsequent slow wave sleep (SWS), place cell reactivation was reduced. These degraded neural functions underlying memory encoding and consolidation support targeting pathological processes of the pre-plaque phase of AD to treat and prevent hippocampal impairments.

neuroscience↗

Low-dose carbon monoxide therapy is neuroprotective in rodent models of Parkinson's disease

Paradoxically, cigarette smoking is associated with a reduced risk of Parkinsons disease (PD). This led us to hypothesize that carbon monoxide (CO) levels, which are constitutively but modestly elevated in smokers, might contribute to neuroprotection. Using rodent models of PD based on -synuclein (Syn) accumulation and oxidative stress, we show that low-dose CO mitigates neurodegeneration and reduces Syn pathology. Oral CO administration activated signaling cascades mediated by heme oxygenase-1 (HO-1), which have been implicated in limiting oxidative stress, and in promoting Syn degradation, thereby conferring neuroprotection. Consistent with a neuroprotective effect of smoking, HO-1 levels in cerebrospinal fluid were higher in human smokers compared to nonsmokers. Moreover, in PD brain samples, HO-1 levels were higher in neurons without Syn pathology. Thus, CO in rodent PD models reduces pathology and increases oxidative stress responses, phenocopying possible protective effects of smoking evident in PD patients. These data highlight the potential for low-dose CO modulated pathways to slow symptom onset and limit pathology in PD patients.

neuroscience↗

Cellular contributions to ictal population signals

ObjectiveThe amplitude of ictal activity is a defining feature of epileptic seizures, but the determinants of this amplitude have not been identified. Clinically, ictal amplitudes are measured electrographically (using e.g. EEG, ECoG, and depth electrodes), but these methods do not enable the assessment of the activity of individual neurons. To identify the cellular determinants of the ictal signal, we measured single cell and population electrical activity and neuronal calcium levels via optical imaging of the genetically encoded calcium indicator (GECI) GCaMP. MethodsSpontaneous seizure activity was assessed in an awake, behaving mouse model of focal cortical injury and in organotypic hippocampal slice cultures (OHSC), an in vitro preparation from which recurrent seizures can be readily captured. Single cell calcium signals were linked to a range of electrical activities by performing simultaneous GECI-based calcium imaging and whole-cell patch-clamp recordings in spontaneously seizing OHSCs. Neuronal resolution calcium imaging was then performed during spontaneous seizures in vivo and in vitro to quantify the cellular contributions to the population-level calcium signal. ResultsPopulation signal may increase from three potential sources: 1) increased synchrony, i.e. more co-active neurons, 2) altered active state, from bursts of action potentials and/or paroxysmal depolarizing shifts in membrane potential, and 3) altered subthreshold state, which includes all lower levels of activity. The largest contributor to the signal recorded at seizure onset was increased subthreshold activity, consistent with either barrages of excitatory postsynaptic potentials or sustained membrane depolarization. The relative contribution of synchrony increased as seizures progressed, but cell intrinsic alterations in both the subthreshold and active states remained the largest driver of the ictal signal. SignificanceWe introduce here a novel method for the quantification of the relative contributions of inter-versus intra-cellular changes to provide a critical link between single neuron activity and population measures of seizure activity. Key PointsO_LINeuronal calcium as measured by GCaMP reports a range of membrane depolarizations, from EPSPs to action potential firing and paroxysmal depolarizing shifts C_LIO_LIThe mean population calcium signal is highly correlated with the electrographic local field potential C_LIO_LIIncreased calcium signal during seizure onset is largely driven by increased subthreshold calcium within individual neurons C_LIO_LIRecruitment of newly active neurons is a minor contributor to the increasing population-level signal during the transition to frank seizure C_LI

neuroscience↗