The axon initial segment (AIS) is a specialized neuronal compartment involved in the maintenance of axo-dendritic polarity and in the generation of action potentials. It is also a site of significant structural plasticity-manipulations of neuronal activity and can produce changes in AIS position and/or size that are associated with alterations in intrinsic excitability. However, to date all activity-dependent AIS changes have been observed in experiments carried out on fixed samples, offering only a snapshot, population-wide view of this form of plasticity. To extend these findings by following morphological changes at the AIS of individual neurons requires reliable means of labeling the structure in live preparations. Here, we assessed five different immunofluorescence-based and genetically-encoded tools for live-labeling the AIS of dentate granule cells (DGCs) in dissociated hippocampal cultures. We found that an antibody targeting the extracellular domain of neurofascin provided accurate live label of AIS structure at baseline, but could not follow rapid activity-dependent changes in AIS length. Three different fusion constructs of GFP with full-length AIS proteins also proved unsuitable: while neurofascin-186-GFP and Naβ4-GFP did not localize to the AIS in our experimental conditions, overexpressing 270kDa-AnkyrinG-GFP produced abnormally elongated AISs in mature neurons. In contrast, a genetically-encoded construct consisting of a voltage-gated sodium channel intracellular domain fused to yellow fluorescent protein (YFP-NaII-III) fulfilled all of our criteria for successful live AIS label: this construct specifically localized to the AIS, accurately revealed plastic changes at the structure within hours, and, crucially, did not alter normal cell firing properties. We therefore recommend this probe for future studies of live AIS plasticity and .
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http://dx.doi.org/10.3389/fncel.2016.00268 | DOI Listing |
J Med Internet Res
January 2025
ETH Zurich, Zurich, Switzerland.
Background: The escalating global scarcity of skilled health care professionals is a critical concern, further exacerbated by rising stress levels and clinician burnout rates. Artificial intelligence (AI) has surfaced as a potential resource to alleviate these challenges. Nevertheless, it is not taken for granted that AI will inevitably augment human performance, as ill-designed systems may inadvertently impose new burdens on health care workers, and implementation may be challenging.
View Article and Find Full Text PDFNeurology
February 2025
Department of Neurology, John Hunter Hospital, Newcastle, Australia.
Background And Objectives: Hyperacute cardiac CT has shown greater yield for intracardiac thrombus identification compared with transthoracic echocardiography. However, routine use comes with higher cost and additional contrast and radiation exposure. Pretest identification of patients with low probability of thrombus would enable rationalization of its use.
View Article and Find Full Text PDFAdv Sci (Weinh)
January 2025
State Key Laboratory of Membrane Biology, School of Life Sciences, Peking University, Beijing, 100871, China.
The primary cilia serve as pivotal mediators of environmental signals and play crucial roles in neuronal responses. Disruption of ciliary function has been implicated in neuronal circuit disorders and aberrant neuronal excitability. However, the precise mechanisms remain elusive.
View Article and Find Full Text PDFSleep Breath
January 2025
Department of Neurology, 940th Hospital of Chinese People's Liberation Army Joint Logistic Support Force, Lanzhou, 730050, China.
Purpose: This study aimed to investigate the alterations in sleep quality and sleep patterns among military personnel at altitudes ranging from 1500 to 4500 m, as well as the associated factors influencing their sleep.
Methods: This study employed a longitudinal prospective survey conducted over a period of six months, from November 2023 to June 2024. A total of 90 soldiers were recruited for participation.
Monoclon Antib Immunodiagn Immunother
January 2025
Department of Immunology, Institute of Medicine, University of Tsukuba, Tsukuba, Japan.
CD300a and CD300A, among the CD300 immunoglobulin (Ig)-like receptor family members in mice and humans, respectively, are expressed on myeloid cell lineage. The interaction of CD300a and CD300A with their ligands phosphatidylserine and phosphatidylethanolamine, respectively, exposed on the plasma membrane of dead cells mediate an inhibitory signal in myeloid cells. We previously reported that a neutralizing antimouse CD300a monoclonal antibody (mAb) enhanced efferocytosis by macrophages and ameliorated acute ischemic stroke (AIS) in mice.
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